mt-a0300461_plans.pdf
PDF 10 MB Posted
- Attached to
- MT BIGHORN 46(1) WARMAN LOOP ROAD Federal contract opportunity
- Solicitation number
- 69056721B000003
About this file
This file describes a federal contract opportunity for road construction. The solicitation is number 69056721B000003 from the Department of Transportation Federal Highway Administration for the MT BIGHORN 46(1) WARMAN LOOP ROAD project. The 10MB plans file provides specifications for road construction work, which includes building a new section of roadway and performing any necessary repairs or upgrades to existing infrastructure. Responses are due on an unspecified date, with the contract to be awarded by the FHWA. Pricing will be fixed for the duration of the contract. No set-asides or incumbent were identified.
View the file
Other files for this federal contract opportunity
| File | Type | Posted |
|---|---|---|
| Physical Data MT BIGHORN 46(1).zip | ZIP file | |
| mt-a0300461_control-points.xlsx | XLSX spreadsheet | |
| mt-a0300461_Geotechnical Pavement Recon Report.pdf | ||
| MDT Structure Inspection Report v1.2_02247_01-31-2022_RFS.pdf | ||
| mt-a0300461_proposedalignment.pdf | ||
| mt-a0300461_WarmanLoopRoad_HydraulicsReport.pdf | ||
| FLH Bridge oversized or overload vehicle permit request form Oct 2018.pdf | ||
| mt-a0300461_WarmanLoopRoad_RevisedFinalGeotechnicalReport.pdf | ||
| IFB 69056721B000003.pdf |
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Text version
BRENT L COE Digitally signed by BRENT L COE Date: 2023.09.08 14:18:55 -07'00'
BH TP
CUYD
culv.
CUFT
cubic yard(s) culvert cubic foot (feet) mon.
min.
MGAL
max.
matl.
M.P.
M.L.
monument minimum thousand gallon maximum material mile post main line
W
RIP
DI
G W G WV
CP GPS
36 31
36 31
N
E
N 1000EL. 1234.56
TP
TP
SEC.
SEC.
NO SCALE
θs Ø ∆c spiral central angle diameter curve central angle total central angle approach ahead average daily traffic abutment appr.
AH
ADT
abut.
between bearing bridge balance point bench mark back face back btwn brg.
br.
BP
BM
b.f.
BK
ctrs.
CS
cont.
constr. jt.
conn.
conc.
col.
CMP
clr.
cc or c. to c.
centers point of curve to spiral continuous construction joint connection concrete column corrugated metal pipe clear centerline center to center
NOTE:
1.
on the appropriate plan sheet.
Other symbols used in the plans will be shown in a legend
W west drwg(s).
dist.
diaph.
dia.
DHV
D exp. jt.
exc.
EW
EQ or eq.
EOP
emb.
elev.
El. 94.16 e.f.
e E expansion joint excavation edge of water equation edge of pavement embankment elevation elevation in feet each face superelevation rate east drawing(s) distance diaphragm diameter design hourly volume diameter galv.
ga.
galvanized gage (gauge) jt.
IE
ID
joint invert elevation inside diameter ftg.
flg.
fin.
f.f.
footing flange finish front face
LW
lt. or LT Ls
LPSM
long.
LNFT
lat.
L low water left length of spiral lump sum longitudinal linear foot (feet) latitude length of curve rte.
rt. or RT reqd.
reinf.
rdwy.
R/W R.
R route right required reinforcement roadway right-of-way range radius typ.
Ts
TS
thd.
TBM
T.
T typical tangent distance (spiraled curve) point of tangent to spiral thread temporary bench mark township tangent distance
VPI
vph V vertical point of intersection vehicles per hour design speed (velocity)
STS
struc.
stiff.
stgr.
std.
STA, Sta.
ST
SS
SRS
SQYD
SQFT
spa.
SLRY
shldr.
sect.
SC
SADT
S point of spiral to tangent spiral structural stiffener stringer standard station point of spiral to tangent point of spiral to spiral (no curve) point of spiral to reverse spiral square yard square foot spacing, spaces or spaced slurry unit shoulder section point of spiral to curve seasonal average daily traffic south
KSI
square inch thousand pounds per pvmt.
PT
PST
PSC
PSI
PSF
PS
POT
POS
POC
pl.
PI
PCS
PCC
PC
pavement point of tangent point of spiral to tangent point of spiral to curve pounds per square inch pounds per square foot point of tangent to spiral point on tangent point on spiral point on curve plate point of intersection point of curve to spiral point of compound curve point of curve
OHWM
OG
OD
o. to o.
o.c.
ordinary high water mark original ground outside diameter out to out on center
NC
N normal crown north
A A
DI
National Boundary
State Boundary
County Boundary
City Boundary
Township or Range Line
Section Line
Section Corner (Found, Projected)
Control Point (Terrestrial and GPS)
Gas & Water Meter; Gas & Water Valve
Flagpole; Fire Hydrant
Cooking Grate; Garbage Can; Picnic Table
Boulder; Well; Antenna; Grave
Above Ground Tank; Underground Tank
Spot Elevation; Coordinate Grid Tick
Material Source; Bore Hole; Test Pit
Treeline; Individual Trees
Spring or Seep
Section Line 4
Section Corner (Found, Projected) 4
Section Line 16
Section Corner (Found, Projected)16
Property Line
Parcel Number
National Park Boundary
National Forest Boundary
National Wildlife Refuge Boundary
BLM Lands Boundary
Indian Reservation Boundary
Existing Roadway (Paved, Gravel)
Railroad
Trail
Fiber Roll
Silt Fence
Sandbag
Intermittent Drainage or Small Creek
Large Creek or River
Lake, Pond or Reservior; Marshland
North Arrow
Slope Stake Limits Top of Cut
Toe of Fill
Construction Limits
Bottom of Ditch
Fence
Gate with Fence
Cattleguard
Guardrail
Concrete Barrier and Guard Wall
Retaining Wall wall face
Signs (single, double post; portable)
Delineators
Pipe Culvert (arrow shows flow)
Pipe Culvert with End Section
Pipe Culvert with Headwall
Pipe Culvert with Drop Inlet
Box Culvert
Underdrain
Overhead/Above Ground Utilities
Underground Utilities
Light, Support w/Anchor) Poles (Power, Telephone, Joint Use, Miscellaneous Utility Features
Building
Right-of-Way Line
Permanent Easement
Construction Easement
Riprap
- no symbol -
Section A-A
EXISTING PROPOSED
STEAM = steam, T = telephone, TV = CATV, W = water P = power, SA = sanitary sewer, SD = storm drain, SS = storm sewer, FM = force main, FO = fiber optic, G = gas, IRR = irrigation, O = oil, UP = transformer or junction box, WF = water fountain EM = electric meter, TP = telephone pedestal, TV = CATV pedestal,
- no symbol -
11/2001 DETAIL APPROVED FOR USE
6/2022
10/2014 10/2009 1/2007 9/2005 REVISED: 101-1W
ABBREVIATIONS
PLAN SYMBOLS AND
:5
A
M
J u ly
D e t W
-1 rp a -h ln -0
\s h a re d \h ig h w a y s \F
H W
A \2 m t-a W a rm a n L o o p R o a d \D
G N
\G e n e ra l In fo rm a ti o n \m t-a W
-1
.d g n
:5
J u ly
D e t W rp a -h ln -0
\s h a re d \h ig h w a y s \F
H W
A \2 m t-a W a rm a n L o o p R o a d \D
G N
\G e n e ra l In fo rm a ti o n \m t-a W
-1
.d g n
DETAIL
OFFICE OF FEDERAL LANDS HIGHWAY
FEDERAL HIGHWAY ADMINISTRATION
U.S. DEPARTMENT OF TRANSPORTATION
PROJECT
NUMBER
SHEET
A.2
MT BIGHORN 46(1)
PROJECT
A.2
Scale in miles
0 1 2 30.5
VICINITY MAP
SMITH
FORT
W a r
C r e e k
C r e e k
Cana l
B ig h o r n
M a n
Dam Yellowtail
B
IG
H O R
N
R
IV
E R
BIGHORN
CANYON
NATIONAL
RECREATION
AREA
C reek
C r e e k
S o a p
Soap
B ig ho rn
C an al
C an al
T. 5 S., R. 31 E.
S
S
221+00.00
END PROJECT
10+31.55
BEGIN PROJECT
Warman Loop Road
T. 5 S., R. 32 E.
T. 6 S., R. 31 E.
T. 6 S., R. 32 E.
S -3
Three Mile Fishing Access
184+24 m il e s
T o H a r d in
:2
S e p te m b e r
B a s e .B
.U S
C
U s e rs
\S te p h e n
.C h a p m a n
\O n e D ri v e
D O
T O
S T
\C A
D D
\c e ll s \F
L H
-C e ll s .c e l
PROJECT
NUMBER
MT BIGHORN 46(1) A.3
Sheet and Description
SECTION C SECTION D SECTION E SECTION F SECTION G SECTION H SECTION I -
TYPICAL
SECTIONS
PLAN-
PROFILE
APPROACH
ROADS
SOIL EROSION
AND SEDIMENT
CONTROL
DRAINAGE
TEMPORARY
TRAFFIC
CONTROL
PERMANENT
TRAFFIC
CONTROL
ALLOWANCE Bid Schedule
A0020 15101-0000 MOBILIZATION LPSM ALL
A0040 15201-0000 CONSTRUCTION SURVEY AND STAKING LPSM ALL
A0060 15301-0010 CONTRACTOR QUALITY CONTROL AND ASSURANCE LPSM ALL
A0080 15401-0000 CONTRACTOR TESTING LPSM ALL
A0100 15501-0000 CONSTRUCTION SCHEDULE LPSM ALL
A0120 15702-6000 SOIL EROSION CONTROL, TEMPORARY STREAM DIVERSION (WAR MAN
CREEK) LPSM All ALL
A0140 15705-1400 SOIL EROSION CONTROL, FIBER ROLL LNFT 6,160 90 6,250
A0160 15802-0000 WATERING FOR DUST CONTROL LPSM ALL
A0180 20301-2400 REMOVAL OF SIGN EACH 21 21
A0200 20405-3000 SUBEXCAVATION, 18-INCH DEPTH SQYD 3,237 263 3,500
A0220 25101-0400 PLACED RIPRAP, METHOD A, CLASS 4 CUYD 180 5 185
A0240 30202-2000 ROADWAY AGGREGATE, METHOD 2 TON 167 8 175
A0260 30205-0500 ROADWAY AGGREGATE, SHOULDER FINISHING MILE 3.990 3.990
A0280 30402-5600 FULL DEPTH RECLAMATION, METHOD 2, 9-INCH DEPTH SQYD 46,818 682 47,500
A0300 40101-5500 ASPHALT CONCRETE PAVEMENT, GYRATORY MIX, 1/2-INCH OR
3/4-INCH NOMINAL MAXIMUM SIZE AGGREGATE, <0.3 MILLION ESAL
(TYPE III ROUGHNESS) TON 7,569 181 7,750
A0340 40105-3000 ANTISTRIP ADDITIVE, TYPE 3 TON 76 2 78
A0380 41102-1000 PRIME COAT, METHOD 1 SQYD 46,818 682 47,500
A0400 57501-0000 MINOR BRIDGE WORK LPSM ALL
A0420 60201-0400 12-INCH PIPE CULVERT LNFT 32 2 34
A0440 60201-0800 24-INCH PIPE CULVERT LNFT 80 4 84
A0460 60220-2400 9 FEET SPAN, 5 FEET RISE PRECAST REINFORCED CONCRETE BOX
CULVERT LNFT 53 53
A0480 60704-0000 CLEANING CULVERT IN PLACE EACH 7 7
A0500 62201-0300 DUMP TRUCK, 12 CUBIC YARD MINIMUM CAPACITY HOUR 10
A0520 62201-0550 BACKHOE LOADER, 6 CUBIC FOOT MINIMUM RATED CAPACITY BUCKET,
24-INCH WIDTH HOUR 10
A0540 62201-2850 MOTOR GRADER, 12 FOOT MINIMUM BLADE HOUR 10
A0560 62301-0000 GENERAL LABOR HOUR 20
A0580 62405-0300 PLACING CONSERVED TOPSOIL, 4-INCH DEPTH SQYD 197 13 210
A0600 62502-0000 TURF ESTABLISHMENT (DRY METHOD) SQYD 197 13 210
A0620 63302-0000 SIGN SYSTEM SQFT 112 112
A0640 63309-0000 DELINEATOR (DESIGN F) EACH 29 1 30
A0660 63401-0700 PAVEMENT MARKINGS, TYPE D, SOLID (YELLOW) LNFT 2,209 141 2,350
A0680 63401-0700 PAVEMENT MARKINGS, TYPE D, SOLID (WHITE) LNFT 48 2 50
MileStone: Signoff Report Date: 08/24/23
A M E N D
Line Item No.
Pay Item Number
SUMMARY OF QUANTITIES
-A ug
-2
2:
P
M
Remarks and/or Determination of Estimated
Quantity Pay Item Description Unit
Estimated Quantities
F:
\h ig hw ay s\
FH
W
A\
_m t-a0
_W ar m an Lo op R oa d\ Es tim at e\ Q
A R ev ie w m t-a0
_W ar m an
Lo op
R oa d_ S um m ar y.
xl sm ]S he et
PROJECT
B.1MT BIGHORN 46(1)
Sheet and Description
SECTION C SECTION D SECTION E SECTION F SECTION G SECTION H SECTION I -
TYPICAL
SECTIONS
PLAN-
PROFILE
APPROACH
ROADS
SOIL EROSION
AND SEDIMENT
CONTROL
DRAINAGE
TEMPORARY
TRAFFIC
CONTROL
PERMANENT
TRAFFIC
CONTROL
ALLOWANCE Bid Schedule
A0700 63401-0800 PAVEMENT MARKINGS, TYPE D, BROKEN (YELLOW) LNFT 20,654 146 20,800
A0720 63502-0600 TEMPORARY TRAFFIC CONTROL, BARRICADE TYPE 3 EACH 2 2
A0740 63502-1250 TEMPORARY TRAFFIC CONTROL, TUBULAR MARKER, TYPE 42-INCH EACH 100 100
A0760 63504-1000 TEMPORARY TRAFFIC CONTROL, CONSTRUCTION SIGN SQFT 247 247
A0780 63506-0500 TEMPORARY TRAFFIC CONTROL, FLAGGER HOUR 1,360 1,360
A0800 63506-0600 TEMPORARY TRAFFIC CONTROL, PILOT CAR HOUR 200 200
-A ug -2
2:
P M
MileStone: Signoff Report Date: 08/24/23
F:
\h ig hw ay s\
FH
W
A\
_m t-a0
_W ar m an Lo op R oa d\ Es tim at e\ Q
A R ev ie w m t-a0
_W ar m an
Lo op
R oa d_ S um m ar y.
xl sm ]S he et
2)
SUMMARY OF QUANTITIES
A M E N D
Line Item No.
Pay Item Number Pay Item Description Unit
Estimated Quantities
Remarks and/or Determination of Estimated
Quantity
PROJECT
B.2MT BIGHORN 46(1)
surfacing section
Match mainline Profile grade
Existing road grade line
TYPICAL CONNECTION TREATMENT AT BIG HORN CANAL BRIDGE
PROFILE AFTER BRIDGE
Bridge end
50' surfacing section
Match mainline
50' grade line
Existing road
PROFILE BEFORE BRIDGE
Bridge beginning pavement removal
Bridge deck after
Profile grade
[5]
Subexcavation
CL
10'-0"10'-0"
Travel way Travel way
Original ground Original ground
219+32.90 TO 221+00.00
10+31.55 TO 218+88.98
[3]
WARMAN LOOP ROAD
TYPICAL SECTION
FOOTNOTE:
See Sheet C.2 for details
See Section 575.
See Sheet D.2 for quantities.
Reclaim the entire width of the existing pavement.
Match existing superelevation on curves.[1]
2.00% 2.00% [1][1]
Profile grade placed in two equal lifts roughness), 3-inch compacted depth, aggregate, < 0.3 million ESAL (type III
1/2-inch or 3/4-inch nominal maximum size
Asphalt concrete pavement, gyratory mix, [2] method 2, 9-inch depth
Full depth reclamation, Top of existing asphalt
[2]
CL
218+88.98 TO 219+32.90
[4]
BIG HORN CANAL BRIDGE
TYPICAL SECTION
24' existing bridge width roughness), 2-inch compacted depth aggregate, < 0.3 million ESAL (type III
1/2-inch or 3/4-inch nominal maximum size
Asphalt concrete pavement, gyratory mix, roughness), 2-inch compacted depth aggregate, < 0.3 million ESAL (type III
1/2-inch or 3/4-inch nominal maximum size
Asphalt concrete pavement, gyratory mix, [3]
[4]
Prime coat, method 1
1:4
Edge of travel way shoulder finishing (typ.)
Roadway aggregate, [5]
:1
P
A u g u s t
T y p ic a l
S e c ti o n r p a h ln
\s h a r e d \h ig h w a y s \F
H W
A \2 m t-a W a r m a n L o o p R o a d \D
G N
\T y p ic a l
S e c ti o n s \m t-a ty p ic a l.
d g n
TYPICAL SECTION
PROJECT
C.1
NO SCALE
FOOTNOTE:
NOTE:
1:
1:2
B E
G
IN
S U
B E
X C
A V
A T
IO
N
E N
D S
U B
E X
C A
V A
T
IO
N
SUBEXCAVATION PROFILE
class 1, type C (nonwoven)
Separation-stabilization geotextile, class 1, type C (nonwoven)
Separation-stabilization geotextile, LC
[2]
SUBEXCAVATION DETAIL
1. See Sheet D.3 for quantities.
Backfill subexcavation to the top of existing pavement.
[5] subexcavation.
type C (nonwoven) 6-inches up the sides of the
Extend separation-stabilization geotextile, class 1, [4]
Adjust locations to meet field conditions as approved.
[3]
Mirror detail as appropriate.
See Sheet C.1.[1]
[5]
18-inch compacted depth
Roadway aggregate, method 2, 18-inch compacted depth
Roadway aggregate, method 2, Top of existing pavement
Top of existing pavement
Existing ground
Existing ground
[1]Surfacing structure
[1]Surfacing structure
Geogrid, stabilization
Geogrid, stabilization
18-inch Subexcavation depth
L
Profile grade
[3]
Geogrid, stabilization class 1, type C (nonwoven)
Separation-stabilization geotextile, 6"
:1
A u g u s t
T y p ic a l
S e c ti r p a h ln
\s h a r e d \h ig h w a y s \F
H W
A \2 m t-a W a r m a n L o o p R o a d \D
G N
\T y p ic a l
S e c ti o n s \m t-a s u b e x c a v a ti o n .d g n
SUBEXCAVATION DETAILS
PROJECT
C.2
WW
NOTE:
of the two points.
divide the computed distance by a mean combined factor on the ground, inverse the state plane coordinates and
1. To precisely check distances between points as measured
:0
J u ly
T y p ic a l
S e c ti r p a h ln
\s h a r e d \h ig h w a y s \F
H W
A \2 m t-a W a r m a n L o o p R o a d \D
G N
\P la n a n d P r o f il e \m t-a c o n tr o l.
d g n
SURVEY CONTROL
PROJECT
D.1
[1] For re-establishing vegetation at pipe replacements.
:1
A u g u s t
T y p ic a l
S e c ti
F h ig h w a y s \F
H W
A \2 m t-a W a r m a n L o o p R o a d \D
G N
\T y p ic a l
S e c ti o n s \m t-a ty p ic a lq u a n ti ti e s .d g n
ROADWAY QUANTITIES
PROJECT
D.2 approved by CO.
Taper width to match bridge width as centerline.
labeled "BOTH" split evenly each side of
Width measured from centerline. Locations according to Section 302.
Place and compact roadway aggregate
Based on 1.97 TON/CUYD.
Includes excavation of existing pavement.
to meet field conditions as approved.
See Sheet C.2 for details. Adjust locations [1]
[2]
[3]
[4]
[5]
[5]
:5
A u g u s t
T y p ic a l
S e c ti h ig h w a y s \F
H W
A \2 m t-a W a r m a n L o o p R o a d \D
G N
\T y p ic a l
S e c ti o n s \m t-a s u b e x c a v a ti o n q u a n ti ti e s .d g n
QUANTITIES
SUBEXCAVATION
PROJECT
D.3
SB20
SB20
SBC20
TP
TP
AC
JBJBJBJB
TP
TP
N
Line to be constructed
Existing ground + 3" = Profile grade
10+31.55
WARMAN LOOP ROAD
MT BIGHORN 46(1)
BEGIN PROJECT
EL = 3171.59
E = 2404860.237
N = 405046.339
Sawcut pavement
S-313
.5
C.1
See sheet
CONNECTION DETAIL
GPS
GPS
WL1
WL2
C le a n in g c u lv e r t in p la c e
Subexcavation, LT1
See sheet C.2
See sheet C.2
Subexcavation, Both Subexcavation, Both2
See sheet C.2
Subexcavation, LT2
See sheet C.2
Subexcavation, LT2
See sheet C.2
Subexcavation, RT3
See sheet C.2
See sheet C.2
Subexcavation, RT
A 5
A 5
A 5
Subexcavation, RT2
See sheet C.2
NOTE:
centerline.
for Warman Loop Road, 30-feet on each side of
Big Horn County holds a 60-foot wide easement
50'
S °1
'1 "W
S80 °21'
50"W N68°51'32"W
N79°05'58"We = Match Ex.
'163.39L =
'84.19T =
'275.00R =
(RT)34°02'34"Δ =
12+23.53PI
e = Match Ex.
'372.78L = '188.58T = '1,000.00R =
(RT)21°21'31"Δ =
22+58.58PI
e = Match Ex.
'295.89L = '148.28T = '1,800.00R =
(RT)09°25'07"Δ =
25+91.06PI
e = Match Ex.
'276.70L = '138.38T = '5,410.00R =
(LT)02°55'49"Δ =
31+66.45PI
e = Match Ex.
'137.19L = '68.64T = '1,500.00R =
(LT)05°14'26"Δ =
33+73.42PI
e = Match Ex.
'195.42L = '97.72T = '5,410.00R =
(LT)02°04'11"Δ =
35+39.69PI
.0
.7
C
C 3
.9
C
C 3
.3
T
PC
C
C
.6
10+00 15+00 20+00 25+00 30+00 35+00 40+00
3,130 3,130
3,140 3,140
3,150 3,150
3,160 3,160
3,170 3,170
3,180 3,180
3,190 3,190
3,200 3,200
3,210 3,210
PLAN AND PROFILE LEGEND:
Line to be constructed
:2
A u g u s t
P la n
-1 S h e e t]
R
P A
-H L N
-0 \S h a re d \h ig h w a y s \F
H W
A \2 m t-a W a rm a n L o o p R o a d \D
G N
\P la n a n d P ro fi le
\m t-a p la n p ro
.d g n
PROJECT
D.4
SB20
TP
TP
N
Line to be constructed
Existing ground + 3" = Profile grade
GPS
WL3
GPS
WL4
p ip e c u lv e r t
I n s ta ll in c h d ia m e te r
R e m o v e e x is ti n g p ip e c u lv e r t
Subexcavation, RT5
See sheet C.2
Subexcavation, RT4
See sheet C.2
Subexcavation, RT4
See sheet C.2
Subexcavation, LT5
See sheet C.2 Subexcavation, Both 6
See sheet C.2
A
A
A 5
A 5
Subexcavation, Both4
See sheet C.2
Subexcavation, LT4
See sheet C.2
S6 4°
'30
"W
S89°52'13"W
N79°47'53"W e = Match Ex.
'168.05L =
'84.22T =
'1,000.00R =
(RT)09°37'43"Δ =
53+07.29PI
e = Match Ex.
'61.83L = '30.98T = '400.00R =
(RT)08°51'24"Δ =
54+22.09PI
e = Match Ex.
'126.42L = '63.30T = '1,000.00R =
(RT)07°14'36"Δ =
55+16.24PI
e = Match Ex.
'168.71L = '84.44T = '1,500.00R =
(RT)06°26'39"Δ =
57+30.84PI
e = Match Ex.
'203.56L = '101.82T = '3,000.00R =
(RT)03°53'16"Δ =
59+16.92PI
e = Match Ex.
'183.52L = '91.87T = '1,500.00R =
(LT)07°00'36"Δ =
43+52.67PI
e = Match Ex.
'96.42L = '48.36T = '500.00R =
(LT)11°02'58"Δ =
44+92.68PI
e = Match Ex.
'208.88L = '105.38T = '640.00R =
(LT)18°41'59"Δ =
46+46.12PI
.8
C 4
C
C
C
.1
C
C
C 5
.4
C
C
45+00 50+00 55+00 60+00 65+00 70+00
3,130 3,130
3,140 3,140
3,150 3,150
3,160 3,160
3,170 3,170
3,180 3,180
3,190 3,190
3,200 3,200
3,210 3,210
40+00
:5
A u g u s t
P la n
-1 S h e
R
P A
-H L N
-0 \S h a re d \h ig h w a y s \F
H W
A \2 m t-a W a rm a n L o o p R o a d \D
G N
\P la n a n d P ro fi le
\m t-a p la n p ro
.d g n
PROJECT
D.5
SB20 7
SB20 8
SB20
TP
TPTP
TP
TP
TP
BC
N
Line to be constructed
Existing ground + 3" = Profile grade p ip e c u lv e r t
I n s ta ll in c h d ia m e te r
R e m o v e e x is ti n g p ip e c u lv e r t
C le a n in g c u lv e r t in p la c e
C le a n in g c u lv e r t in p la c e
C le a n in g c u lv e r t in p la c e
Subexcavation, RT 8
See sheet C.2
Subexcavation, LT8
See sheet C.2
Subexcavation, LT 8
See sheet C.2
Subexcavation, Both8
See sheet C.2
Subexcavation, Both9
See sheet C.2
Subexcavation, Both 9
See sheet C.2
Subexcavation, RT 9
See sheet C.2
A 5
A 5
Subexcavation, LT9
See sheet C.2
Subexcavation, Both9
See sheet C.2
Subexcavation, RT
See sheet C.2
5 9 0 9
S67°32'24"W S4
4° '49
"W
S62°43'32"W e = Match Ex.
'251.03L =
'126.55T =
'800.00R =
(RT)17°58'43"Δ =
83+70.47PI
e = Match Ex.
'76.16L = '38.10T = '1,000.00R =
(LT)04°21'50"Δ =
75+40.77PI
e = Match Ex.
'48.16L = '24.10T = '450.00R =
(LT)06°07'54"Δ =
76+02.94PI
e = Match Ex.
'270.81L = '137.12T = '700.00R =
(LT)22°09'59"Δ =
77+64.11PI
e = Match Ex.
'208.85L = '105.83T = '525.00R =
(LT)22°47'35"Δ =
80+67.76PI
e = Match Ex.
'204.81L = '102.70T = '1,100.00R =
(LT)10°40'05"Δ =
98+41.20PI
C 7
C
C 7
C 7
75+00 80+00 85+00 90+00 95+00 100+00
3,130 3,130
3,140 3,140
3,150 3,150
3,160 3,160
3,170 3,170
3,180 3,180
3,190 3,190
3,200 3,200
3,210 3,210
70+00
:5
A u g u s t
P la n
-1 S h e
R
P A
-H L N
-0 \S h a re d \h ig h w a y s \F
H W
A \2 m t-a W a rm a n L o o p R o a d \D
G N
\P la n a n d P ro fi le
\m t-a p la n p ro
.d g n
PROJECT
D.6
SB20
TP
TP
N
Line to be constructed
Existing ground + 3" = Profile grade
GPS
WL5
GPS
WL6
C le a n in g c u lv e r t in p la c e
C le a n in g c u lv e r t in p la c e
C le a n in g c u lv e r t in p la c e
A
A 5
A 5
A 5
A 5
S5 2°
'2 7"
W e = Match Ex.
'159.12L =
'82.36T =
'250.00R =
(RT)36°28'05"Δ =
109+88.59PI
.2
105+00 110+00 115+00 120+00 125+00 130+00
3,120 3,120
3,130 3,130
3,140 3,140
3,150 3,150
3,160 3,160
3,170 3,170
3,180 3,180
3,190 3,190
3,200 3,200
100+00
:5
A u g u s t
P la n
-1 S h e
R
P A
-H L N
-0 \S h a re d \h ig h w a y s \F
H W
A \2 m t-a W a rm a n L o o p R o a d \D
G N
\P la n a n d P ro fi le
\m t-a p la n p ro
.d g n
PROJECT
D.7
SB20
TP
TP
AC
TPTP
IR
N
Line to be constructed
Existing ground + 3" = Profile grade
Subexcavation, Both 1
See sheet C.2
Subexcavation, RT 1
See sheet C.2
A 5
A 5
A 5
A 5
A 5
A 5
S88°31'33"W
135+00 140+00 145+00 150+00 155+00 160+00
3,110 3,110
3,120 3,120
3,130 3,130
3,140 3,140
3,150 3,150
3,160 3,160
3,170 3,170
3,180 3,180
3,190 3,190
130+00
:5
A u g u s t
P la n
S h e
R
P A
H
L N
\S h a r e d
\h ig h w a y s \F
H W
A \2 m t-a
W a r m a n
L o o p
R o a d
\D G
N \P la n a n d P r o f il e \m t-a p la n p r o
.d g n
PROJECT
D.8
SB20
TP
POWER
BC
TPTP
TP
TP
AC
TP
IR
BC
AC
IR
R E K R A M
Y R A D N U O B
N
Line to be constructed
Existing ground + 3" = Profile grade
GPS
WL7
GPS
WL8
p ip e c u lv e r t
I n s ta ll in c h d ia m e te r
R e m o v e e x is ti n g p ip e c u lv e r t
Subexcavation, LT 1
See sheet C.2
Subexcavation, RT 1
See sheet C.2
Subexcavation, LT 1
See sheet C.2
A
A 5
A 5
A 5
A5 e = Match Ex.
'133.12L =
'84.60T =
'85.00R =
(LT)89°43'47"Δ =
184+32.74PI
PC
184+81.26 PT
165+00 170+00 175+00 180+00 185+00 190+00
3,110 3,110
3,120 3,120
3,130 3,130
3,140 3,140
3,150 3,150
3,160 3,160
3,170 3,170
3,180
3,190 3,190
160+00
:2
A u g u s t
P la n
-1 S h e
R
P A
-H L N
-0 \S h a re d \h ig h w a y s \F
H W
A \2 m t-a W a rm a n L o o p R o a d \D
G N
\P la n a n d P ro fi le
\m t-a p la n p ro
.d g n
PROJECT
D.9
SBC20
T P
B C
T P
T P
T P
J B
T P
T P T P
T P
N
Line to be constructed
Existing ground + 3" = Profile grade b o x c u lv e r t.
S e e S h e e t
G .2 p r e c a s t r e in f o r c e d c o n c r e te
I n s ta ll f e e t s p a n f e e t r is e
R e m o v e e x is ti n g p ip e c u lv e r t
Subexcavation, Both 1
See sheet C.2
Subexcavation, RT 1
See sheet C.2
Subexcavation, LT1
See sheet C.2
Subexcavation, Both 2
See sheet C.2
Subexcavation, LT 2
See sheet C.2
Subexcavation, Both 2
See sheet C.2
Subexcavation, Both 2
See sheet C.2
Subexcavation, Both 2
See sheet C.2
A 5
A 5
A 5
A 5
A 5
A 5
A 5
A 5
A 5
A 5
A 5
Minor Bridge Work 2
.9
.9
See sheet C.1
Subexcavation, LT 1
See sheet C.2
Subexcavation, RT1
See sheet C.2 Subexcavation, RT 2
See sheet C.2
S01°12'14"E
S01°10'47"E S02°34'43"E e = Match Ex.
'114.92L =
'57.46T =
'5,410.00R =
(RT)01°13'02"Δ =
214+68.22PI
e = Match Ex.
'97.35L = '48.67T = '5,410.00R =
(RT)01°01'51"Δ =
217+31.08PI
e = Match Ex.
'112.62L = '56.31T = '5,410.00R =
(LT)01°11'34"Δ =
213+54.45PI
e = Match Ex.
'229.44L = '114.74T = '5,410.00R =
(LT)02°25'48"Δ =
218+94.49PI
R
C
R
C 2
200+00 205+00 210+00 215+00 220+00
3,130 3,130
3,140 3,140
3,150 3,150
3,160 3,160
3,170 3,170
3,180 3,180
3,190
3,200
3,210 3,210
195+00190+00
:2
A u g u s t
P la n
-1 S h e
R
P A
-H L N
-0 \S h a re d \h ig h w a y s \F
H W
A \2 m t-a W a rm a n L o o p R o a d \D
G N
\P la n a n d P ro fi le
\m t-a p la n p ro
.d g n
PROJECT
D.10
SBC20
SB20
J B
T P
T P T P
T P
T P
T P
T P F P
N
Line to be constructed
Existing ground + 3" = Profile grade
221+00.00
WARMAN LOOP ROAD
MT BIGHORN 46(1)
END PROJECT
EL = 3178.96
E = 2388278.701
N = 399632.536
.0
C.1
See sheet
Sawcut pavement
CONNECTION DETAIL
GPS
WL9
GPS
WL10
Subexcavation, LT2
See sheet C.2
50'
S02° 34'43
"E S16°01'59"W S07°50'24"W e = Match Ex.
'97.35L =
'48.67T =
'5,410.00R =
(RT)01°01'51"Δ =
217+31.08PI
e = Match Ex.
'292.35L = '147.47T = '900.00R =
(RT)18°36'42"Δ =
222+34.60PI
e = Match Ex.
'229.44L = '114.74T = '5,410.00R =
(LT)02°25'48"Δ =
218+94.49PI
e = Match Ex.
'128.69L = '64.46T = '900.00R =
(LT)08°11'34"Δ =
225+90.06PI
.2
PT
.2
P O
E
3,160 3,160
3,170 3,170
3,180 3,180
3,190 3,190
3,200 3,200
3,210 3,210
3,220
3,230 3,230
220+00 225+00 230+00 235+00 240+00 245+00 250+00
:2
A u g u s t
P la n
-1 S h e rp a -h ln -0
\s h a re d \h ig h w a y s \F
H W
A \2 m t-a W a rm a n L o o p R o a d \D
G N
\P la n a n d P ro fi le
\m t-a p la n p ro
.d g n
PROJECT
D.11
Based on 1.97 TON/CUYD.
[1]
:5
J u ly
T y p ic a l
S e c ti r p a h ln
\s h a r e d \h ig h w a y s \F
H W
A \2 m t-a W a r m a n L o o p R o a d \D
G N
\A p p r o a c h R o a d s \m t-a A p p r o a c h q u a n ti ti e s .d g n
ROAD QUANTITIES
TABULATION OF APPROACH
PROJECT
E.1
Stationing Mainline x x x x x
C of highway L x x
Length Approach Road
L C of approach
A
Type Approach
APPROACH ROAD LOCATION SYMBOL
Variable
Edge of traveled way
C of approachL
C of highwayL
W
R
TYPE A APPROACH ROAD PLAN DETAIL
[1
[1
R
L
Extents of approach work
FOOTNOTE:
to existing alignment of approach is at an angle.
Continue approach radius as required if connection [1]
NO SCALE
:2
A u g u s t
T y p ic a l
S e c ti
R
P A
H
L N
\S h a r e d
\h ig h w a y s \F
H W
A \2 m t-a
W a r m a n
L o o p
R o a d
\D G
N \A p p r o a c h
R o a d s \m t-a
A p p r o a c h d e ta il s .d g n
SHEET 1 OF 2
APPROACH ROAD DETAILS
PROJECT
E.2
1:3 1:3
APPROACH ROAD SECTION DETAIL - TYPE A APPROACHES
3-inch compacted depth
Roadway aggregate, method 2, [1]Width (W) c o n s tr u c ti o n
E n d o f a p p r o a c h
Edge of pavement approach road profile and cross slope Adjust connection to match existing
[1]Length (L)
APPROACH ROAD CONNECTION DETAIL - TYPE A APPROACHES
Match existing approach grade
3-inch compacted depth
Roadway aggregate, method 2, Top of existing approach surfacing
FOOTNOTE:
See Sheet E.2.
[1]
NO SCALE
:1
J u ly
T y p ic a l
S e c ti
R
P A
H
L N
\S h a r e d
\h ig h w a y s \F
H W
A \2 m t-a
W a r m a n
L o o p
R o a d
\D G
N \A p p r o a c h
R o a d s \m t-a
A p p r o a c h d e ta il s
.d g n
SHEET 2 OF 2
APPROACH ROAD DETAILS
PROJECT
E.3
See Sheet F.6 for details.
embankment slopes as approved by the CO.
and protect temporary soil stabilization on
Use additional fiber rolls to minimize erosion [2]
See Sheet F.7 for details.
[1]
FOOTNOTE:
:5
A u g u s t
T
A B
U L
A T
IO
N
O F
E R
O S
IO
N
N
T R
O L
Q U
A N
T
IT
IE
S
S H
E E r p a h ln
\s h a r e d
\h ig h w a y s \F
H W
A \2 m t-a
W a r m a n
L o o p
R o a d
\D G
N \E r o s io n C o n tr o l\ m t-a e r o s io n c o n tr o lq u a n ti ti e s .d g n
CONTROL QUANTITIES
TABULATION OF EROSION
PROJECT
F.1
TP
JBJBJBJB
TP
TP
N
TP
TP
N
10+31.55
WARMAN LOOP ROAD
MT BIGHORN 46(1)
BEGIN PROJECT
EROSION CONTROL LEGEND*:
Soil erosion control, fiber roll
Delineated wetland
*See Sheet A.2 for other features not listed in legend.
18+50 to 24+50
Install soil erosion control, fiber roll
52+00 to 56+25
Install soil erosion control, fiber roll
NOTE:
2. Contour interval = 1 foot.
1. Contours shown represent existing topography, prior to construction.
40+50 to 44+75
Install soil erosion control, fiber roll
51+21
Install soil erosion control, fiber roll
51+21
Install soil erosion control, fiber roll
:4
A u g u s t
D o u b le
P la n S h e e ts
S h e
R
P A
H
L N
\S h a r e d
\h ig h w a y s \F
H W
A \2 m t-a
W a r m a n
L o o p
R o a d
\D G
N \E r o s io n C o n tr o l\ m t-a e r o s io n c o n tr o l.
d g n
10+31.55 TO 70+00
EROSION CONTROL PLANS
PROJECT
F.2
TPTP
TP
TP
N
TP
TP
N 85+50 to 87+75
Install soil erosion control, fiber roll
85+75 to 88+25
Install soil erosion control, fiber roll
83+81
Install soil erosion control, fiber roll
83+81
Install soil erosion control, fiber roll
:5
A u g u s t
D o u b le
P la n S h e e ts
S h e
R
P A
H
L N
\S h a r e d
\h ig h w a y s \F
H W
A \2 m t-a
W a r m a n
L o o p
R o a d
\D G
N \E r o s io n C o n tr o l\ m t-a e r o s io n c o n tr o l.
d g n
70+00 TO 130+00
EROSION CONTROL PLANS
PROJECT
F.3
N
POWER
N
147+25 to 149+75
Install soil erosion control, fiber roll
167+50 to 184+00
Install soil erosion control, fiber roll
144+00 to 150+00
Install soil erosion control, fiber roll
163+00 to 167+00
Install soil erosion control, fiber roll
161+25 to 167+00
Install soil erosion control, fiber roll
167+75 to 172+75
Install soil erosion control, fiber roll
167+50
Install soil erosion control, fiber roll
167+50
Install soil erosion control, fiber roll
:5
A u g u s t
D o u b le
P la n S h e e ts
S h e
R
P A
H
L N
\S h a r e d
\h ig h w a y s \F
H W
A \2 m t-a
W a r m a n
L o o p
R o a d
\D G
N \E r o s io n C o n tr o l\ m t-a e r o s io n c o n tr o l.
d g n
130+00 TO 190+00
EROSION CONTROL PLANS
PROJECT
F.4
TP
TP
JB
TP
TP
TP
N
T P T P T
P
T P
T P F P
N
221+00.00
WARMAN LOOP ROAD
MT BIGHORN 46(1)
END PROJECT
219+68 to 220+68
Install soil erosion control, fiber roll
219+68 to 220+68
Install soil erosion control, fiber roll
219+98
(War Man Creek) temporary stream diversion
Install soil erosion control, :2
A u g u s t
D o u b le
P la n S h e e ts
S h e r p a h ln
\s h a r e d
\h ig h w a y s \F
H W
A \2 m t-a
W a r m a n
L o o p
R o a d
\D G
N \E r o s io n C o n tr o l\ m t-a e r o s io n c o n tr o l.
d g n
190+00 TO 221+00.00
EROSION CONTROL PLANS
PROJECT
F.5 with plastic liner or riprap
Temporary diversion channel
NO SCALE
temporary barrier
Use sandbags to construct A
A
Flow
PLASTIC LINED DIVERSION CHANNEL
SECTION B-B
SECTION A-A
4Ø + 4'
2Ø
4Ø + 4'
2Ø
SandbagsPlastic liner
1:
11:1 Ø Ø 1:
11:1
Flow
Plastic liner when scheduled)
Silt fence (typ.
and secure with sandbags (typ.)
8.
7.
6.
5.
4.
3.
2.
1.
Flow may be used, as approved by the CO.
Alternate methods of diversions listed in Subsection 157.10 is greater.
Ø = 2' or diameter of temporary culvert, whichever
Conform to the requirements of Subsection 157.10.
Single or multiple temporary culverts may be used.
using one of the methods listed in Subsection 204.11(a).
temporary culvert. Compact temporary culvert backfill channel through the roadway embankment with
When specified replace the portion of the diversion liner. Bury the upstream edge of the liner a minimum of
Do not construct with longitudinal joints if using a plastic
Construct channel at a minimum grade of 0.5 percent.
width of the temporary diversion channel.
Use plastic liner or riprap along the entire length and
See Sheet F.1 for temporary diversion channel location.
NOTE:
Permanent culvert
Roadway centerline
BB
See Note 5 when scheduled)
Silt fence (typ.
backflow into natural channel
Use sandbags to prevent
Permanent natural channel
Earthwork limits
DIVERSION CHANNEL
PLAN
TEMPORARY CULVERT
SECTION B-B
Ø embankment
Roadway embankment
Roadway
Temporary culvert backfillSubgrade
Bedding
Natural ground
RIPRAP LINED DIVERSION CHANNEL
SECTION A-A SECTION B-B
4Ø
2Ø 2Ø
4Ø when scheduled)
Silt fence (typ.
Sandbags
Riprap lining Riprap lining
1:1 1:
Ø Ø 1:1 1:
FlowFlow
GeotextileGeotextile
6" deep and secure with riprap or sandbags.
Bury plastic liner 6" deep
2' 2'2'2'
:4
A u g u s t
S td r p a h ln
\s h a r e d \h ig h w a y s \F
H W
A \2 m t-a W a r m a n L o o p R o a d \D
G N
\E r o s io n C o n tr o l\ m t-a te m p d iv e r s io n c h a n n e l.
d g n
CHANNELS
TEMPORARY DIVERSION
PROJECT
F.6
DRAFT: 7/2016
REVISED:
DETAIL APPROVED FOR USE 10/2014
FIBER ROLL
(FT)
(FT)
W157-21
2" (min.) Excavate trench 2"
1" x 1" or 1" Ø ove rlap
12" (m in.)
t o m in m in
1" x 1" Wood stake as specified in plans
3' min. or
3' (min.)
Drive stakes at each end and at 4-foot spacing until fiber
Overlap fiber rolls 12-inch minimum. Drive stakes at
6-inches from fiber roll end angles towards the adjacent fiber roll and space stakes at 4-foot max.
NO SCALE
Spacing Slope
STAKES REQUIRED
1:4 or flatter
1:3
1:2
1:1
Stakes required for each roll
FIBER ROLL SPACING
Fiber roll length
Fl ow
T o e o f fi ll s lo p e
ELEVATION
PLAN
Runoff from disturbed areas
INSTALLATION BEYOND TOE OF SLOPE
INSTALLATION ALONG SLOPES
FIBER ROLL STAKING DETAIL
PROPERLY STAKED AND ENTRENCHED FIBER ROLL
Existing ground (typ.)
Fiber roll
Flow direction
Slope
Direction of runof f from distur bed area s sp ac in g ch ar t
S ee F ib er R ol l
Fiber roll
D ire c tio n o f ru n o ff along contours
Install fiber rolls
Fiber roll
Slope
Fi ll slo pe
Direction of runoff ground
Existing soil to match ground level
Backfilled and compacted
Flow larger than fiber roll wood stakes. See Note 2.
Pay lim its
Pay lim its
ALTERNATE FIBER ROLL JOINT DETAIL
SLOPE PROTECTION INSTALLATION
FIBER ROLL LAPPING DETAIL
on uphill side of fiber roll
Place excavated material Stagger joints (typ.)
1.
2.
roll is secure to slope. Live stakes may be used for permanent installations. Do not crush fiber roll while staking.
Step 1: Excavate trench and install fiber rolls
Step 2: Backfill soil against fiber rolls
NOTE:
:0
J u ly
W F ib e r R ll r p a h ln
\s h a r e d
\h ig h w a y s \F
H W
A \2 m t-a
W a r m a n
L o o p
R o a d
\D G
N \E r o s io n C o n tr o l\ m t-a
W
.d g n
FLH STANDARD
STANDARD
OFFICE OF FEDERAL LANDS HIGHWAY
FEDERAL HIGHWAY ADMINISTRATION
U.S. DEPARTMENT OF TRANSPORTATION
PROJECT
F.7
:4
A u g u s t
D r a in a g e T a b r p a h ln
\s h a r e d \h ig h w a y s \F
H W
A \2 m t-a W a r m a n L o o p R o a d \D
G N
\D r a in a g e \m t-a g a .d g n
PROJECT
G.1
N
PT
.1
SBC20
219+98.00
-50 -40 -30 -20 -10 0 10 20 30 40 50
3,160 3,160
3,170 3,170
3,180 3,180 concrete box culvert centerline
5-feet rise precast reinforced
New 9-feet span, 48" culvert
Existing
Existing road centerline
Line to be constructed
HEADWALL: CONCRETE WINGWALLS
OUTLETHYDRAULIC INFORMATION PIPE INLET
BURIAL DEPTH: N/A BURIAL DEPTH: N/A
LENGTH: 53 FT
TYPE: RCB CULVERT SPAN: 9 FT RISE: 5 FT
PIPE SLOPE: 0.000 FT/FT FLOWLINE SLOPE: 0.000 FT/FT
INV N/E/EL: 399749.23 / 2388251.90 / 3172.53 INV N/E/EL: 399720.23 / 2388295.65 / 3172.53
Q : 648 CFS
HW : 3,177.48 FT
HW : 3,178.66 FT
Q : 333 CFS
BANKFULL CHANNEL WIDTH: 6 FT
WALL THICKNESS: 8 IN
UPPER/LOWER BEVEL HEIGHT: N/A
BEVEL: N/A BEVEL: N/A
UPPER/LOWER BEVEL HEIGHT: N/A
HEADWALL: CONCRETE WINGWALLS
Foundation fill, 2-foot compacted depth
Bedding material, 6-inch compacted depth (typ.)
class 1, type C (nonwoven)
Separation-stabilization geotextile, Q25
Q10
Existing road grade
Proposed culvert invert
Existing ground
0.0% Slope
SCALE IN FEET
5 0 5 10 152.5
WL8
CP
CP
WL10
Slope stake limits
Slope stake limits
CP
WL9
CL
Placed riprap, method A, class 4 (typ.)
Placed riprap, method A, class 4 (typ.)
FOOTNOTE:
approved by CO.
Adjust to meet field conditions as [1]
See Sheet G.3.
[2]
[1] [1]
CONTROL POINTS
NAME NORTHING EASTING ELEVATION
399141.803
398962.057
403304.663
3200.69
3196.55
3147.82
WL10
WL9
WL8
2388369.776
2388104.957
2388169.658
Slope stake limits
Slope stake limits
54°
54°
:3
A u g u s t
R
C B
O X
C U
L V
E R
T D
E T
IL
R
P A
H
L N
\S h a r e d
\h ig h w a y s \F
H W
A \2 m t-a
W a r m a n
L o o p
R o a d
\D G
N \D r a in a g e \m t-a g b
.d g n
:3
A u g u s t
R
C B
O X
C U
L V
E R
T D
E T
IL
R
P A
H
L N
\S h a r e d
\h ig h w a y s \F
H W
A \2 m t-a
W a r m a n
L o o p
R o a d
\D G
N \D r a in a g e \m t-a g b
.d g n
219+98 DETAIL
BOX CULVERT
REINFORCED CONCRETE
PROJECT
G.2
36° RT
126°
54°
54°
126°
:2
:2
:2
:2 e x is tin g s lo p e
M a tc h s lo p e
M a tc h e x is tin g e x is tin g s lo p e
M a tc lo p e
M a tc h e x is tin g
Conserve smaller riprap to fill voids below surfacing section.
[4]
Place along length of box culvert (both sides).
[3]
Mirror detail about culvert centerline.
[2]
Riprap not displayed for clarity.[1]
SKEW ANGLE DIAGRAM
c e n te r li n e
R o a d w a y
Cu lv er t ce nt er lin e
BOP
EOP
Skew angle
A
A
ELEVATION
9'-0"8'-0" 8'-0"
BOX CULVERT WINGWALL AND RIPRAP DETAILS
class 4
Placed riprap, method A, ground
Existing ground
Existing
Roadway profile
1:2.3 ty p
B
B
1:
2.3
[1] class 4 method A, Placed riprap, Wi ng wa ll Wingwall
SECTION B-B
Box culvert invert class 1, type C (nonwoven)
Separation-stabilization geotextile, class 4
Placed riprap, method A, Box culvert cutoff wall
Existing ground
12"
Existing groundapprox.
8"
E x is ti n g R
O W
E x is ti n g R
O W
SECTION A-A
Box culvert invert class 1, type C (nonwoven)
Separation-stabilization geotextile, class 4
Placed riprap, method A, Box culvert wingwall
Existing ground
12"
Existing groundapprox.
8"
24"24"
4'-6"36" class 4
Placed riprap, method A, ground
Existing
6"
1:1.5
DETAILS
FOUNDATION AND RIPRAP
BOX CULVERT
Foundation fill material
Bedding
See Sheet C.1
Surfacing section class 1, type C (nonwoven)
Separation-stabilization geotextile, [3]
:5
A u g u s t
U n ti tl e d
R
P A
H
L N
\S h a r e d \h ig h w a y s \F
H W
A \2 m t-a W a r m a n L o o p R o a d \D
G N
\D r a in a g e \m t-a g c .d g n
STABILIZATION DETAILS
WINGWALL AND RIPRAP
PROJECT
G.3
4.
3.
2.
1.
METAL ROUND PIPE CULVERT
METAL PIPE ARCH CULVERT
FILL HEIGHT AND METAL THICKNESS TABLE FOR HELICAL LOCKSEAM AND WELDED SEAM PIPE CULVERT
FILL HEIGHT AND METAL THICKNESS TABLE FOR HELICAL LOCKSEAM AND WELDED SEAM PIPE CULVERT
STEEL ALUMINUM
DIAMETER
VALENT
EQUI-
RADIUS
CORNER
MINIMUM
COVER
MINIMUM
SPAN x RISE
SIZE
PIPE ARCH
SIZE
PIPE ARCH
SPAN x RISE DIAMETER
VALENT
EQUI-
RADIUS
CORNER
MINIMUM
COVER
MINIMUM
COVER
MINIMUM
DIAMETER
SIZE
PIPE
SIZE
PIPE
DIAMETER COVER
MINIMUM
ALUMINUMSTEEL
of camber or increase the pipe culvert gradient.
elevation of the inlet invert, reduce the amount parabolic curve as designed exceeds the curve. If the midpoint elevation on the pipe length. Develop camber on a parabolic inverts an ordinate amount equal to 1% of the from a chord through the inlet and outlet
When directed, camber pipe culverts upward pavement for both flexible and rigid pavement.
from the top of the pipe to the top of the rigid pavements. Measure maximum fill height pavements, and to the top of the pavement for pipe culvert to the subgrade for flexible
Measure minimum cover from the top of the corrugation pipe.
Obtain approval before furnishing annular of helical lockseam and welded seam pipe.
corrugations are more restrictive than those
Fill heights for culvert pipe with annular lockseam and welded seam pipe only.
The fill heights in the table are for helical special analysis by the CO.
602-1
STANDARD APPROVED FOR USE 12/1993
REVISED: 4/1994 6/2005
METAL PIPE CULVERT
Fill heights exceeding 100 feet require
" CORRUGATIONS2
1" x 3
22 3" x 1" CORRUGATIONS
METAL THICKNESS (INCH/GAGE)
0.060/160.075/140.105/120.135/10 0.164/8 0.060/160.075/140.105/120.135/10 0.164/8
MAXIMUM FILL HEIGHT ABOVE TOP OF PIPE (FEET)INCHES INCHES
" CORRUGATIONS2
1" x 3
22 3" x 1" CORRUGATIONS 5" x 1" CORRUGATIONS
METAL THICKNESS (INCH/GAGE)
0.064/160.079/140.109/120.138/10 0.168/8 0.064/160.079/140.109/120.138/10 0.168/8 0.064/160.079/140.109/120.138/10 0.168/8
MAXIMUM FILL HEIGHT ABOVE TOP OF PIPE (FEET)INCHES
INCHES
INCHES
142 x 91
137 x 87
128 x 83
117 x 79
112 x 75
103 x 71
95 x 67
87 x 63
83 x 57
81 x 59
77 x 52
73 x 55
71 x 47
66 x 51
64 x 43
60 x 46
57 x 38
49 x 33
42 x 29
35 x 24
28 x 20
24 x 18
21 x 15
17 x 13
INCHES
INCHES
3.5
INCHES
" CORRUGATIONS2
1" x 3
22 3" x 1" CORRUGATIONS
METAL THICKNESS (INCH/GAGE)
5" x 1" CORRUGATIONS
0.064/160.079/140.109/120.138/10 0.168/8 0.079/140.109/120.138/10 0.168/8 0.079/14
MAXIMUM FILL HEIGHT ABOVE TOP OF PIPE (FEET)
0.109/120.138/10 0.168/8
INCHES INCHES INCHES
103 x 71
95 x 67
87 x 63
81 x 59
73 x 55
66 x 51
64 x 43
60 x 46
57 x 38
49 x 33
42 x 29
35 x 24
28 x 20
24 x 18
21 x 15
17 x 13
INCHES
3.5
" CORRUGATIONS2
1" x 3
METAL THICKNESS (INCH/GAGE)
3" x 1" CORRUGATIONS
0.135/100.105/120.075/14
MAXIMUM FILL HEIGHT ABOVE TOP OF PIPE (FEET)
0.060/160.135/100.105/120.075/140.060/16
U.S. DEPARTMENT OF TRANSPORTATION
FEDERAL HIGHWAY ADMINISTRATION
FEDERAL LANDS HIGHWAY
U.S. CUSTOMARY STANDARD
STANDARD
NOTE:
:5
A u g u s t r p a h ln
\s h a r e d
\h ig h w a y s \F
H W
A \2 m t-a
W a r m a n
L o o p
R o a d
\D G
N \D r a in a g e \m t-a
S td
.d g n
PROJECT
G.4
2.
1.
SMOOTH SLEEVE BAND FLAT BAND
SEMI-CORRUGATED BAND
HELICAL BANDANNULAR BANDSTANDARD BAND CONNECTIONS
SLEEVE JOINT
SIDE VIEW SIDE VIEW SIDE VIEW
END VIEW
END VIEWEND VIEW
Oval Lug
Band Angle
Bar & Strap
Integral Flange Wedge and Strap
Stab type joint
Smoother sleeve with center stop.
DIAMETER
ROUND PIPE
SPAN × RISE
PIPE ARCH
CORRUGATION
W
Band Band
Band Bolts
Pipe
Band
Bolts
Angle
Pipe
BandBand
Bolts
Pipe heel and toe of angle of corrugation at fillet weld at crest
Rivet, spot weld, or
Angle
Wedge be used.
Highway Bridges, Division II Section 26 may criteria of AASHTO Standard specifications for devices that comply with the joint performance
Other types of coupling bands or fastening specified in the Special Contract Requirements.
Watertight pipe joints are not required unless of corrugation at heel and toe of angle
Rivet, spot weld, or fillet weld at crest strap connector
Bolt, bar and
Fabricate annular, helical and semi-corrugated type coupling bands from the same metal as [1]
For helically corrugated pipe with rerolled ends, the nominal corrugations size refers to the [2] dimension of the end corrugation in the pipe.
[1]COUPLING BANDS FOR METAL PIPE CULVERT
Use annular corrugated bands with pipes having annular corrugations or with helical pipe [3] the connecting pipe. Provide coupling bands not more than 3 nominal sheet thicknesses
CORRUGATED
ANNULAR
CORRUGATED
HELICALLY
[4]BANDS
CORRUGATED
SEMI-
[2]SIZE
[3]BANDS [5]BANDS
Band corrugation in pipe end with second annular around band meshes
Continuous corrugation
W
BoltsBand
WW
602-2
STANDARD APPROVED FOR USE 12/1993
REVISED: 4/1994 6/2005
MINIMUM BAND WIDTH (INCHES)
1 × 2
1 × 3
3 × 1
5 × 1 78 to 144
36 to 72
78 to 144
36 to 72
78 to 84
42 to 72
12 to 36
87 × 64 to 142 × 91
60 × 46 to 81 × 59
87 × 64 to 142 × 91
60 × 46 to 81 × 59
49 × 33 to 83 × 57
17 × 13 to 42 × 29
10.5
10.5
10.5
10.5
10.5
10.5
10.5
INCHESINCHESINCHES
rerolled with 3" × 1" pipe corrugations.
COUPLING BAND
METAL PIPE CULVERT
having rerolled end to form annular corrugations. A 10.5 inch band is acceptable on
" corrugations. A 12 inch band is acceptable on pipe ends 2 1" × 3
2pipe ends rerolled with 2 steel or 0.048 inch for aluminum. Fasten coupling bands with the following diameter of bolt:
thinner than the thickness of the pipe to be connected, and no thinner than 0.052 inch for or 0.036 inch for aluminum, or a plastic with an equivalent strength to metal.
Use a matching metal having a nominal thickness of not less than 0.040 inch for steel, Smooth sleeve-type couplers and flat bands may be used for pipe diameters of 12" or less.
"2 1" × 3
2The minimum band widths shown for 3" × 1" and 5" × 1" corrugated sizes apply to 2 corrugations on rerolled pipe ends.
diameter, required above 42" diameter
Second angle connection optional to 42" diameter, required above 42" diameter
Second angle connection optional to 42"
U.S. DEPARTMENT OF TRANSPORTATION
FEDERAL HIGHWAY ADMINISTRATION
FEDERAL LANDS HIGHWAY
U.S. CUSTOMARY STANDARD
STANDARD
NOTE:
[6]underdrain
Use helical corrugated bands with pipes having helically corrugated ends.[4]
[5]
[6]
" for 18" round culvert (21" × 15" pipe arch) or less8
" for 21" round culvert (24" × 18" pipe arch) or more2
:1
J u ly
R
P A
H
L N
\S h a r e d \h ig h w a y s \F
H W
A \2 m t-a W a r m a n L o o p R o a d \D
G N
\D r a in a g e \m t-a S td .d g n
PROJECT
G.5
See Section 704 for bedding and backfill requirements.
dimension of all pipe arch culverts.
H equals the diameter of all round pipe culverts or the rise amount of camber or increase the pipe culvert gradient.
designed exceeds the elevation of the inlet invert, reduce the curve. If the midpoint elevation on the parabolic curve as to 1% of the pipe length. Develop camber on a parabolic through the inlet and outlet inverts an ordinate amount equal
When directed, camber pipe culverts upward from a chord
3.
2.
1.
be adjusted to tie into impervious material.
granular material is used for backfill. Width may material at the pipe culvert inlet where
Construct piping plug of impermeable backfill
MULTIPLE PIPE INSTALLATION
PIPING PLUG
TRENCH EXCAVATION IN EMBANKMENT
BELOW NATURAL GROUND OR
ON UNSTABLE MATERIAL
NATURAL GROUND
ABOVE AND BELOW
ON NATURAL GROUND
ABOVE NATURAL GROUND
ON UNYIELDING MATERIAL
PIPE BEDDING
ELEVATION
SECTION A-A
LEGEND:
Bedding material (uncompacted)
Impermeable backfill material.
BEDDING DEPTH
MINIMUM SPACING
SPACING
or SPAN
DIAMETER
PIPE SIZE (H) DEPTH
Roadway embankment Roadway embankment
Natural ground
Toe plate Toe plate
Natural ground Natural ground
Roadway embankment
Roadway excavation
Natural ground
H
Width
H H
H H
H H
H H
H
H
H
H
Finished subgrade Finished subgrade
Natural ground
Finished subgrade
Pipe culvert
Embankment slope
High water elevation treatment
Culvert end
Piping plug before trench excavation embankment height
Finished subgrade or
Original natural ground surface
A
A
Finished subgrade
Roadway embankment
Roadway embankment
Finished subgrade trench excavations
Embankment material placed in layers
Compacted backfill material placed in layers not backfill in accordance with Section 614.
depth table
See bedding excavation in trench
HH
compact in layers not over compressible material. Lightly and replace with selected fine
Remove unyielding material fill material properly compacted with approved granular foundation firm bearing soil and replace
Remove unstable material to
Bedding
Bedding
Bedding
Bedding
H whichever is less
Half diameter or
(see table)
Minimum spacing or Span
Diameter or Span
Diameter section
Metal endMetal end section
602-3
STANDARD APPROVED FOR USE 12/1993
DRAFT: 10/2017
REVISED: 4/1994 6/2005
or 36" (max.) for embankment installations not exceeding 6" compacted depth.
exceeding 6" compacted depth; or lean concrete
> 54"
12" to 54"
6"
4"
18" (min.)
6" in uncompacted depth.
* Reduce to 18" for
UP to 48"
48" and UP
24" span or 36", PIPE CULVERT BEDDING
METAL AND PLASTIC
2'-0" ±
1'-0" ±
18" ±
18" ±18"±
(min.)
6"
(min.)
6"
12" (min.), 24" (max.)
"/foot of cover,2 minimum
1'-0"
U.S. DEPARTMENT OF TRANSPORTATION
FEDERAL HIGHWAY ADMINISTRATION
FEDERAL LANDS HIGHWAY
U.S. CUSTOMARY STANDARD
STANDARD
NOTE:
2H or 12' (max.)
2H or 12' (max.) 2H or 12' (max.) 2H or 12' (max.) 2H or 12' (max.)
2H or 12' (max.)2H or 12' (max.)
2H or 12' (max.) 2H or 12' (max.)
:1
J u ly
R
P A
H
L N
\S h a r e d \h ig h w a y s \F
H W
A \2 m t-a W a r m a n L o o p R o a d \D
G N
\D r a in a g e \m t-a S td .d g n
PROJECT
G.6
See Sheet H.2 for sign details.
Install at beginning and end of project, as approved by CO.
operations. See Subsection 156.04.
Place at each end of road closure area during reclamation
Mount on barricade type 3.
For information only.
project.
of project and on S-313 east and west of end of
Install signs on S-313 north and south of beginning [1]
[2]
[3]
[4]
[5]
:5 u g u s t
T y p ic a l
S e c ti r p a h ln
\s h a r e d \h ig h w a y s \F
H W
A \2 m t-a W a r m a n L o o p R o a d \D
G N
\T e m p o r a r y T r a f f ic
C o n tr o l\ m t-a T
T C q u a n ti ti e s .d g n
QUANTITIES
TRAFFIC CONTROL
TABULATION OF TEMPORARY
PROJECT
H.1
1.175
0.5C
0.7
0.5C
0.7
0.5C
1.175
14.25
See USDOT Pictograph spaced 0.5-inch apart
Three 0.5-inch stripes
.2
.5
.2
.5
0.4510.2
0.675
2.25
0.675
0.4510.23.6
0.510.153.6
0.52 sqftArea:
Background - Blue (retroreflective)
Legend - White (retroreflective)Colors:
USDOT PICTOGRAPH
9.7652.489.76
22.52722.5
164016
3.7664.483.76
5.660.85.6
9.76 9.76
.3
.2
E
E
C
C .3
BIL PROJECT FUNDING SOURCE SIGN
24 sqftArea:
Background - Green (retroreflective)
Legend, Border - White (retroreflective)Colors:
2.3" Radius, 1" BorderDimensions:
requirements.
Refer to Standard 635-14 for post and sign mounting 2.
Unless otherwise noted, dimensions are inches.1.
NOTES:
:5 u g u s t
N r p a h ln
\s h a r e d
\h ig h w a y s \F
H W
A \2 m t-a
W a r m a n
L o o p
R o a d
\D G
N \T e m p o r a r y
T r a f f ic
C o n tr o l\ b il s ig n .d g n
LAW SIGN
BIPARTISAN INFRASTRUCTURE
PROJECT
H.2
ROAD WORK
END
WORK
ROAD
AHEAD
ROAD NAME
WORK
ROAD
AHEAD
ROAD WORK
END
WORK
ROAD
xxxxx
WORK
ROAD
xxxxxxx
ROAD WORK
NEXT xx MILES
WORK
ROAD
AHEAD
xx
MPH
ROAD NAME
ROAD WORK
END
WORK
ROAD
xxxxxxx
ROAD WORK
END
xx
MPH
WORK
ROAD
xxxxxxx
ROAD WORK
NEXT xx MILES
13.
12.
11.
10.
9.
8.
7.
6.
5.
4.
3.
2.
1.
ROAD TYPE
DISTANCE BETWEEN
A B C
NOTE:
M in o r R o a d
M a jo r R o d
B as de ter mi ne d b y t he C
O
Wor k z on e A re a o f I nfl ue nc
(S ee S ign S pa cin g T ab le)
ADVANCE W
ARNI
NG
AREA
(S ee S ign S pa cin g T ab le)
ADVANCE W
ARNI
NG
AREA
A
B
C
A
A
A
A
Pr oje ct Lim its
See Note 8 W16-8P W20-1 over
W20-1
G20-2
See Note 9 W20-1
See Note 9 W20-1
(optional) W13-1P
See Note 10 G20-1
G20-2
See Note 8 W16-8P W20-1 over
G20-2
G20-2
See Note 9 W20-1
See Note 9 W20-1
(optional) W13-1P
See Note 10 G20-1 the distance to the work area in feet or in miles. Install an additional W20-1 The message on the W20-1 signs may be ROAD WORK AHEAD or may specify of the road on which the construction does occur (applies to major roads only).
construction work occurs, include a supplementary plaque indicating the name If W20-1 is placed on a roadway other than that on which the actual
Cover post-mounted signs when not applicable.
Do not store traffic control devices along the roadway when not in use.
the CO.
Maintain two-way traffic during all non-work hours except as approved by
NCHRP-350 or MASH for crashworthiness.
Ensure all sign supports exposed to impact by traffic meet the requirements of indicate a maximum recommended speed through the construction area.
Install advisory speed plates under the W20 series warning signs as needed to
Vary messages as required.
signs, locate the warning signs to fit field conditions as approved by the CO.
Where advance warning signs, placed as shown, interfere with permanent this traffic control plan as necessary to accommodate actual operations.
to this project. The Contractor may add or delete information and details in Not all details shown on the temporary traffic control sheets may be applicable
Erect all project advance warning signs before starting construction work.
retroreflective sheeting types.
Refer to Section 635 of the Special Contract Requirements for allowable
State standards may be used as an alternative if approved by the CO.
verify that an encroachment permit has been obtained.
If signing on a roadway under a jurisdiction other than the client agency, whole mile.
each end of the project. Show the distance on the G20-1 sign to the nearest
Ro ad N ame
SIGN SPACING TABLE
For work zones that are 2 miles or more in length, install G20-1 signs at signs "B" feet apart according to the Sign Spacing Table.
sign when approach speeds exceed 50 MPH. When used, place the two W20-1
Expressway / Freeway
SIGNS IN FEET
Rural greater than 50 MPH
Urban and Rural 35 MPH to 50 MPH
Urban and Rural 30 MPH and less
6/2005 STANDARD APPROVED FOR USE
7/2022 REVISED: 635-1
ADVANCE SIGNING
TEMPORARY TRAFFIC CONTROL
FLH STANDARD
STANDARD
OFFICE OF FEDERAL LANDS HIGHWAY
FEDERAL HIGHWAY ADMINISTRATION
U.S. DEPARTMENT OF TRANSPORTATION
:3 u g u s t
S td rp a
-h ln
-0
\s h a re d \h ig h w a y s \F
H W
A \2 m t-a
W a rm a n
L o o p
R o a d
\D G
N \T e m p o ra ry
T ra ff ic
C o n tr o l\ m t-a
S td
-1
.d g n
PROJECT
H.3 posted speed, not the advisory speed.
Approach speed based on the regulatory *
6.
5.
4.
3.
2.
1.
the buffer space.
Do not allow equipment, materials, or vehicles to be parked or stored in
For night time flagging operation, provide floodlighting at flagger stations.
WORK AHEAD (W20-1) and END ROAD WORK (G20-2) signs.
If closure is completely within the project limits, eliminate the ROAD name of the Contractor on the pilot car.
a conspicuous location on the rear of vehicle. Prominently display the
For pilot car operation, mount the PILOT CAR FOLLOW ME (G20-4) sign at as approved by the CO.
Final location and spacing of devices may be changed to fit field conditions those depicted for the opposite direction of travel.
Signs are shown for one direction of travel only. Place signs similar to
(optional)
Flagger location
ADVANCE WARNING AREA (See Sign Spacing Table)
TERMINATION AREAVARIABLEBUFFER SPACEABC
WORK
ROAD
AHEAD
See Note 4
W20-1
BE
PREPARED
TO STOP
W20-7
(optional)
W16-2Pxxx
FEET
Flagger location
A
ROAD WORK
END
See Note 4
G20-2
W3-4
Traffic flow
Traffic flow
NOTE:LENGTH AND SPACING TABLE SIGN SPACING TABLE
LENGTH
BUFFER SPACE
SPEED*
APPROACH
BUFFER SPACE
Spacing Table)
(See Length and
Spacing Table)
(See Length and WORK SPACE
ROAD TYPE
DISTANCE BETWEEN
A B C
Expressway / Freeway
SIGNS IN FEET
Rural greater than 50 MPH
Urban and Rural 35 MPH to 50 MPH
Urban and Rural 30 MPH and less
FEETMPH
7/2022 REVISED:
635-5
(WITH FLAGGERS)
ROAD CLOSURE LAYOUT
TEMPORARY TRAFFIC CONTROL
FLH STANDARD
STANDARD
OFFICE OF FEDERAL LANDS HIGHWAY
FEDERAL HIGHWAY ADMINISTRATION
U.S. DEPARTMENT OF TRANSPORTATION
:3 u g u s t
S td r p a h ln
\s h a r e d
\h ig h w a y s \F
H W
A \2 m t-a
W a r m a n
L o o p
R o a d
\D G
N \T e m p o r a r y
T r a f f ic
C o n tr o l\ m t-a
S td
.d g n
PROJECT
H.4
Traffic flow
Traffic flow not the advisory speed.
Approach speed based on the regulatory posted speed, *
Device spacing
Spacing Table)
(See Length and Channelizing devices
(optional)
BUFFER SPACE
Flagger location
(See Length and Spacing Table)ADVANCE WARNING AREA (See Sign Spacing Table)
ATAPER AREABUFFER SPACEVARIABLEBUFFER SPACETAPER AREAABC
WORK
ROAD
AHEAD
See Note 4
W20-1
ONE LANE
ROAD
AHEAD
xx
MPH
W20-4
(optional)
W13-1P xxx
FEET
W20-7
(optional)
W16-2P
Flagger location
WORK SPACE
TERMINATION AREA
ROAD WORK
END
See Note 4
G20-2 the buffer space.
Do not allow equipment, materials, or vehicles to be parked or stored in
Requirements, Section 156.
For project specific minimum width, refer to the Special Contract
For night time flagging operation, provide floodlighting at flagger stations.
WORK AHEAD (W20-1) and END ROAD WORK (G20-2) signs.
If closure is completely within the project limits, eliminate the ROAD name of the Contractor on the pilot car.
a conspicuous location on the rear of vehicle. Prominently display the
For pilot car operation, mount the PILOT CAR FOLLOW ME (G20-4) sign at as approved by the CO.
Final location and spacing of devices may be changed to fit field conditions those depicted for the opposite direction of travel.
Signs are shown for one direction of travel only. Place signs similar to
7.
6.
5.
4.
3.
2.
1.
(optional)(optional)
NOTE:SIGN SPACING TABLELENGTH AND SPACING TABLE
50' - 100' 50' - 100'
See Note 6
10' min.
ROAD TYPE
DISTANCE BETWEEN
A B C
Ex…
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