MIL-STD-1548H_with_Change_1.pdf
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- OVERSEAS INTO-PLANE PROGRAM 1. 2 P (PACOM) Federal contract opportunity
- Solicitation number
- SPE600-17-R-0215
- Issued by
- Defense Logistics Agency Energy
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MIL-STD-1548H with Change 1
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NOT
MEASUREMENT
SENSITIVE
MIL-STD-1548H
w/ CHANGE 1 19 May 2016
SUPERSEDING
MIL-STD-1548H
13 November 2014
DEPARTMENT OF DEFENSE
STANDARD PRACTICE
INTO - PLANE SERVICING OF FUELS
AT COMMERCIAL AIRPORTS
AMSC N/A FSC 91GP
DISTRIBUTION STATEMENT A. Approved for public release; distribution is unlimited.
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ii
FOREWORD
1. This standard is approved for use by all Departments and Agencies of the Department of Defense (DoD).
2. Comments, suggestions, or questions on this document should be addressed to AFPET/PTMT, 2430 C Street, Building 70, Area B, Wright-Patterson AFB, OH 45433-7631 or e-mailed to AFPA/PTMT@us.af.mil. Since contact information can change, you may want to verify the currency of this address information using the ASSIST Online database at https://assist.dla.mil.
Source: https://assist.dla.mil -- Downloaded: 2016-06-06T19:48Z Check the source to verify that this is the current version before use.
mailto:AFPET.AFTH@wpafb.af.mil https://assist.dla.mil/ iii
CONTENTS
PARAGRAPH PAGE
FOREWORD ii
1 SCOPE ……………………………………………………………………………………………… 1
1.1 Scope ……………………………………………………………………………………………….. 1
1.2 Classification ……………………………………………………………………………………….. 1
2 APPLICABLE DOCUMENTS …………………………………………………………………….. 1
2.1 General ……………………………………………………………………………………………… 1
2.2 Government documents …………………………………………………………………………... 1
2.2.1 Specifications, standards, and handbooks ……………………………………………………… 1
2.3 Non-Government publications ……………………………………………………………………. 1
2.4 Order of precedence ………………………………………………………………………………. 3
3 DEFINITIONS ……………………………………………………………………………………… 3
3.1 Definitions applicable in this standard …………………………………………………………… 3
3.2 Full flow monitor cartridges ……………………………………………………………………….. 3
4 GENERAL REQUIREMENTS ……………………………………………………………………. 3
4.1 Type I and Type II …………………………………………………………………………………. 3
4.1.1 Defueled product …………………………………………………………………………………... 3
4.1.1.1 Defueled JP8+100 product ……………………………………………………………………….. 4
4.1.2 Safety ……………………………………………………………………………………………….. 4
5 DETAILED REQUIREMENTS ……………………………………………………………………. 4
5.1 Type I ……………………………………………………………………………………………….. 4
5.1.1 Jet fuel specification and purity standards ……………………………………………………… 4
5.1.1.1 Additive injection …………………………………………………………………………………… 4
5.1.2 Hydrant system checks …………………………………………………………………………… 4
5.1.3 Aircraft fueling equipment requirements ………………………………………………………… 4
5.1.3.1 Electrostatic bonding ………………………………………………………………………………. 4
5.1.3.1.1 Grounding plug …………………………………………………………………………………….. 4
5.1.3.1.2 Grounding clamp …………………………………………………………………………………... 5
5.1.3.2 Aircraft pressure refueling nozzle ………………………………………………………………... 5
5.2 Type II ………………………………………………………………………………………………. 5
5.2.1 Jet fuel specifications ……………………………………………………………………………… 5
5.2.1.1 Additive injection …………………………………………………………………………………… 5
5.2.2 Fueling operations …………………………………………………………………………………. 5
5.2.2.1 Electrostatic bonding ……………………….……………………………………………………… 5
5.2.2.1.1 Grounding plug …………………………………………………………………………………….. 5
5.2.2.1.2 Grounding clamp ………………………………………………………………………………….. 5
5.2.2.2 Aircraft pressure refueling nozzle ………………………………………………………………... 5
5.2.3 Filtration equipment ……………………………………………………………………………….. 5
5.2.3.1 Filtration requirements …………………………………………………………………………….. 5 iv
CONTENTS
PARAGRAPH PAGE
6 NOTES ……………………………………………………………………………………………… 5
6.1 Intended use ……………………………………………………………………………………….. 5
6.2 Acquisition requirements ………………………………………………………………………….. 5
6.3 Publications ………………………………………………………………………………………… 6
6.4 Subject term (key word) listing …………………………………………………………………… 6
6.5 Quality assurance requirements …………………………………………………………………. 6
6.6 Changes from previous issue …………………………………………………………………….. 7
TABLE PAGE
I Defueled product quality criteria …………………………………………………………………. 3 II Laboratories within the continental United States ……………………………………………… 6 III Laboratories outside the continental United States ……………………………………………. 7
CONCLUDING MATERIAL ……………………………………………………………………………………... 8
1. SCOPE
1.1 Scope. This standard establishes two types of standard practices for into-plane servicing of fuels at commercial airports.
1.2 Classification. Classification of into-plane servicing is as follows:
Type I (see 5.1) Into-Plane refueling guidance per ATA Specification 103, Standard for Jet Fuel Quality Control at Airports
Type II (see 5.2) Aviation Fuel Quality Control and Operating Standard for Into-Plane Fueling Services (JIG 1)
2. APPLICABLE DOCUMENTS
2.1 General. The documents listed in this section are specified in sections 3, 4, or 5 of this standard. This section does not include documents cited in other sections of this standard or recommended for additional information or as examples. While every effort has been made to ensure the completeness of this list, document users are cautioned that they must meet all specified requirements of documents cited in sections 3, 4, or 5 of this standard, whether or not they are listed.
2.2 Government documents.
2.2.1 Specifications, standards, and handbooks. The following specifications, standards, and handbooks form a part of this document to the extent specified herein. Unless otherwise specified, the issues of these documents are those cited in the solicitation or contract.
DEPARTMENT OF DEFENSE SPECIFICATIONS
MIL-DTL-83413/4 Connectors and Assemblies, Electrical, Aircraft Grounding, Plugs, for Types I and II Grounding Assemblies
MIL-DTL-83413/7 Connectors and Assemblies, Electrical, Aircraft Grounding:
Grounding Clamp Connector for Types I and III Grounding Assemblies, Clip, Electrical
MIL-PRF-52308 Filter-Coalescer Element, Fluid Pressure
(Copies of these documents are available online at http://quicksearch.dla.mil/.)
2.3 Non-Government publications. The following documents form a part of this document to the extent specified herein. Unless otherwise specified, the issues of these documents are those cited in the solicitation or contract.
AIRLINES FOR AMERICA (A4A)
ATA SPEC 103 Standard for Jet Fuel Quality Control at Airports
(Copies of this document are available from http://www.airlines.org/.)
ASTM INTERNATIONAL
ASTM D56 Standard Test Method for Flash Point by Tag Closed Cup Tester (DoD Adopted)
ASTM D93 Standard Test Methods for Flash Point by Pensky-Martens Closed Cup Tester (DoD Adopted)
Source: https://assist.dla.mil -- Downloaded: 2016-06-06T19:48Z Check the source to verify that this is the current version before use.
http://quicksearch.dla.mil/ http://www.airlines.org/
ASTM D1298 Standard Test Method for Density, Relative Density, or API Gravity of Crude Petroleum and Liquid Petroleum Products by Hydrometer Method (DoD Adopted)
ASTM D1655 Standard Specification for Aviation Turbine Fuels (DoD Adopted)
ASTM D2276 Standard Test Method for Particulate Contaminant in Aviation Fuel by Line Sampling (DoD Adopted)
ASTM D2624 Standard Test Methods for Electrical Conductivity of Aviation and Distillate Fuels (DoD Adopted)
ASTM D3828 Standard Test Methods for Flash Point by Small Scale Closed Cup Tester (DoD Adopted)
ASTM D4052 Standard Test Method for Density, Relative Density, and API Gravity of Liquids by Digital Density Meter (DoD Adopted)
ASTM D5452 Standard Test Method for Particulate Contamination in Aviation Fuels by Laboratory Filtration (DoD Adopted)
(Copies of these documents are available from http://www.astm.org/.)
ENERGY INSTITUTE (EI)
EI Specification 1581 Specifications and Qualification Procedures for Aviation Jet Fuel Filter/Separators
EI Specification 1583 Laboratory Tests and Minimum Performance Levels for Aviation Fuel Monitors
EI Specification 1590 Specifications and Qualification Procedures for Aviation Fuel Microfilters
(Copies of these documents are available from http://www.energyinst.org/.)
JOINT INSPECTION GROUP (JIG)
JIG 1 Aviation Fuel Quality Control and Operating Standards for Into-Plane Fueling Services
(Copies of this document are available from http://www.jigonline.com.)
NATIONAL FIRE PROTECTION ASSOCIATION
NFPA 407 Standard for Aircraft Fuel Servicing (DoD Adopted)
(Copies of this document are available from http://www.nfpa.org.)
SAE INTERNATIONAL
SAE AS5877 Detailed Specification for Aircraft Pressure Refueling Nozzle (DoD Adopted)
(Copies of this document are available from http://www.sae.org.)
http://www.astm.org/ http://www.energyinst.org/ http://www.jigonline.com/ http://www.nfpa.org/ http://www.sae.org/
UNITED KINGDOM MINISTRY OF DEFENCE (UK MOD)
STANDARD 91-91 Turbine Fuel, Kerosine Type, Jet A-1, NATO Code: F-35, Joint Service Designation: AVTUR
(Copies of this document are available from https://www.dstan.mod.uk/.)
2.4 Order of precedence. Unless otherwise noted herein or in the contract, in the event of a conflict between the text of this document and the references cited herein, the text of this document takes precedence. Nothing in this document, however, supersedes applicable laws and regulations unless a specific exemption has been obtained.
3. DEFINITIONS
3.1 Definitions applicable in this standard. The definitions for terms used in this standard are in accordance with ATA Specification 103 and the JIG 1, with the following additional terms noted herein.
3.2 Full flow monitor cartridges. Fuse-type or fuel monitor elements, which remove free water and solid contaminants in the fuel. As the elements retain solids and water through absorption, fuel flow is restricted or shutoff.
4. GENERAL REQUIREMENTS
4.1 Type I and Type II. Receipt, storage, and issue of aviation products shall comply with ATA Specification 103 or the JIG 1, respectively, except as noted herein.
4.1.1 Defueled product. Defueled product from other than U.S. Government aircraft shall not be used to refuel U.S. Government aircraft. Product defueled from U.S. Government aircraft may be returned to an authorized user and shall meet the defueled product quality criteria in Table I.
TABLE I. Defueled product quality criteria.
Property Requirement Test Method Density at 15 °C (or API Gravity) 0.775-0.840 kg/L (37-51) ASTM D1298 or D4052
Particulate contamination
(1) Particulate content before filtration, or:
(2) Particulate content after filtration into plane,
1.0 mg/L, max
0.5 mg/L, max
ASTM D5452
ASTM D5452
or:
(3) Color rating A1, A2, B1, B2, G1, or G2 ASTM D2276
Conductivity Without conductivity additive With conductivity additive
10 pS/m, max 50-700 pS/m
ASTM D2624
ASTM D2624
Water content (into plane) 15 ppmv, max See JIG 1 or ATA 103
Appearance Clear and Bright Visual
Flash point 38 °C (100 °F), min ASTM D56, D93, or D3828 http://www.dstan.mod.uk/
4.1.1.1 Defueled JP8+100 product. Deleted.
4.1.2 Safety. Safety requirements as specified in NFPA 407 shall apply to Type I.
5. DETAILED REQUIREMENTS
5.1 Type I. Type I refueling at commercial airports shall be performed as specified in ATA Specification 103 (latest edition), except as noted herein.
5.1.1 Jet fuel specification and purity standards. The requirements of ATA Specification 103 shall apply except for the following.
5.1.1.1 Additive injection. There may be a requirement to add additives to the fuel. The additives are Fuel System Icing Inhibitor (FSII) or Static Dissipater Additive (SDA). The only authorized FSII for Department of Defense aircraft is diethylene glycol monomethyl ether. The following additive blending guidance is provided in order to assure proportional injection of the additives. The two basic methods for adding additives into fuel are manual blending and use of an injector.
a. The preferred method is proportional injection using a fuel driven design injector. This type injects additives proportionately at various flow rates. Fuel additives should not be mixed together in neat form, as a cocktail blend, prior to injection.
b. Manually blending additives at various points in the system can be accomplished by several techniques, some of which are described below. When manual blending is performed, additive should first be diluted with the fuel. The greater the dilution, the easier it is for the additive to mix properly.
Fuel additives should not be mixed together in neat form as a cocktail blend for injecting into fuel.
1. Blending additives into bulk airfield tanks can be done by pouring the required quantity of additive into the tank heel prior to a receipt. Care should be taken when manually introducing additive to tank heels to avoid over/under additizing resulting from variations in anticipated
vs. actual quantities received. The required quantity of additive may also be added to the delivery tank trucks just prior to offloading into bulk tanks.
2. Blending into refueling units can be performed by introducing the required amount through the top hatch using a funnel and a length of hose with one end submerged below the surface of the fuel. This can best be accomplished by pouring the additive into the refueler, filled to not more than one-third of its capacity and then filling the unit with fuel. Wait approximately 10 minutes and then circulate fuel for at least three minutes before servicing to aircraft. If additives are put into a full refueler, circulate at least 150 percent of the refueler capacity prior to issue.
c. When required, fuel system icing inhibitor (FSII) may be added using the 590 mL (20 ounce) aerosol can during over-wing refueling. Determine the fuel load and calculate the amount of additive required. It should be added gradually during filling to permit proper blending in the fuel. One can of aerosol additive will inhibit 680 liters (180 gallons) of fuel to 0.087% by volume.
d. When FSII and/or SDA is injected into fuel, the following limits apply: FSII content shall be
0.04 – 0.15 volume % and electrical conductivity shall be 50 – 700 pS/m.
5.1.2 Hydrant system checks. The requirements of ATA Specification 103 shall apply, except that for any modifications, changes, or construction work to hydrant systems, the contractor shall also notify the contracting officer.
5.1.3 Aircraft fueling equipment requirements. The requirements of ATA Specification 103 shall apply, except for electrostatic bonding, the following specific equipment shall be required.
5.1.3.1 Electrostatic Bonding.
5.1.3.1.1. Grounding plug. When the aircraft being serviced is equipped with grounding receptacles, a grounding plug conforming to or equivalent in design to MIL-DTL-83413/4 shall be used.
5.1.3.1.2. Grounding clamp. When the aircraft being serviced is not equipped with grounding receptacles or a plug is not available, a grounding clamp conforming to or equivalent in design to MIL-DTL-83413/7 shall be used on the bonding cables of the refueling equipment. When a grounding clamp is used, it shall be connected to a bare metal surface of the aircraft. Do not secure/attach to external doors, latches or hinges.
5.1.3.2 Aircraft pressure refueling nozzle. Aircraft pressure refueling nozzles shall meet the requirements of SAE AS5877.
5.2 Type II. Type II Refueling at Commercial Airports shall be performed as specified in the JIG 1, except as noted herein.
5.2.1 Jet fuel specifications. Defence Standard 91-91, ASTM D1655, or applicable specification cited in the contract, shall be used with the following additional requirements.
5.2.1.1 Additive injection. When additives are required, see paragraph 5.1.1.1.
5.2.2 Fueling operations. The requirements of the JIG 1 apply in their entirety with exceptions noted herein.
5.2.2.1 Electrostatic Bonding.
5.2.2.1.1. Grounding plug. When the aircraft being serviced is equipped with a grounding receptacle, a grounding plug conforming to or equivalent in design to MIL-DTL-83413/4 shall be used.
5.2.2.1.2. Grounding clamp. When the aircraft being serviced is not equipped with grounding receptacles or a plug is not available, a grounding clamp conforming to or equivalent in design to MIL-DTL-83413/7 shall be used on the bonding cables of the refueling equipment. When a grounding clamp is used, it shall be connected to a bare metal surface of the aircraft. Do not secure/attach to external doors, latches or hinges.
5.2.2.2 Aircraft pressure refueling nozzle. Aircraft pressure refueling nozzles shall meet the requirements of SAE AS5877.
5.2.3 Filtration equipment. The filtration equipment requirements in the JIG 1 apply in their entirety with exceptions noted.
5.2.3.1 Filtration requirements. All aviation fuel shall pass through two filters. One filter shall be on the refueler loading rack or hydrant delivery line. The initial filter must be a filter separator. The final filtration of jet fuel shall be through a filter separator or a full flow monitor. The filter separator referred to for both products shall meet the requirement of EI 1581 or MIL-PRF-52308. The full-flow monitor shall meet the requirements of EI 1583. The micronic filter shall meet the requirement of EI 1590. Filtration equipment shall be designed so that fuel bypass is not possible. EI 1583 full-flow monitors shall not be used when fuel contains FSII.
6. NOTES
(This section contains information of a general or explanatory nature that may be helpful, but is not mandatory.)
6.1 Intended use. The purpose of this standard is to ensure government aircraft are provided specification fuel at commercial facilities where a US Government Into-Plane Servicing Contract is in force. Additive injection procedures mentioned in this standard are military unique as the additive package required in fuel used by DoD aircraft is not used in commercial fuels - the additive package required in fuel destined for DoD aircraft is required as it provides additional safeguards against fuel system icing and fuel system static charges.
6.2 Acquisition requirements. Acquisition documents should specify the title, number, and date of this standard.
6.3 Publications. The JIG 1 publication referred to in Type II of the detailed requirements is prepared by and for members of the Joint Inspection Group. Participants of the JIG can obtain the document through corporate channels or http://www.jigonline.com.
6.4 Subject term (key word) listing.
Aircraft pressure refueling nozzle Defueled product
6.5 Quality assurance requirements. Quality assurance requirements imposed as part of any contract may include sample submission to one of the laboratories listed in Table II or Table III of this standard.
TABLE II. Laboratories within the continental United States.
Mailing Address Shipping Address Telephone Numbers
FAX Numbers Area of Responsibility
Aerospace Fuels Laboratory
AFPET/PTPLA
2430 C St, Bldg. 70, Area B Wright-Patterson AFB, OH 45433-7631
Aerospace Fuels Laboratory (FP2070)
AFPET/PTPLA
2430 C St, Bldg. 70, Area B Wright-Patterson AFB, OH 45433-7631
DSN
785-0739
COM
(937) 255-0739
DSN
986-7744
COM
(937) 656-7744
AL, AR, CT, DC,
DE, FL, GA, IA,
IL, IN, KS, KY,
LA, MA, MD, ME,
MI, MN, MO, MS,
NC, NE, NH, NJ,
NY, OH, OK, PA,
RI, SC, SD, TN,
TX, VA, VT, WI,
WV
Aerospace Fuels Laboratory
AFPET/PTPLE
1747 Utah Ave, Bldg Vandenberg AFB, CA 93437-5220
Aerospace Fuels Laboratory (FP2075)
AFPET/PTPLE
1747 Utah Ave, Bldg Vandenberg AFB, CA 93437-5220
DSN
276- 5873/5039/2149
COM
(805) 606- 5873/2149
DSN
276-2756
COM
(805) 606-2756
AZ, CA, CO, ID,
MT, ND, NM, NV,
OR, UT, WA, &
WY
http://www.jigonline.com/
TABLE III. Laboratories outside the continental United States.
Mailing Address Local Shipping Address
Telephone Numbers Fax Numbers
Aerospace Fuels Laboratory
AFPET/PTPLF
Unit 5025 Box 495
APO AE 09459-5025
Aerospace Fuels Laboratory (FP2080)
AFPET/PTPLF
Bldg. 1546 West Row Gate #6 RAF Mildenhall Suffolk, UK IP28 8NF
DSN
314-238- 2043/5960/5961
COM
011-44-163-854-5960
DSN
314-238-3626
COM
011-44-163-854-3626
Aerospace Fuels Laboratory
AFPET/PTPLG
Unit 5161 Bldg. 854
APO AP 96368-5161
Aerospace Fuels Laboratory (FP2083)
AFPET/PTPLG
Unit 5161 Bldg. 854 Kadena AB Okinawa, Japan
APO AP 96368-5161
DSN
315-634- 1602/3394/0322/9560
COM
011-81-611-734-1602
DSN
315-634-0584
COM 011-81-611-
734-0584
DLA Energy Pacific Okinawa Laboratory Attention: Laboratory Manager Unit 5110
APO AP 96368-5110
DLA Energy Pacific Okinawa Laboratory Chibana Compound
RTE #74
BLDG 53145 Chibana Okinawa City, Okinawa, Japan 904-2143
DSN 315-632-4728
FISC Pearl Harbor POL Lab Code 704 1942 Gaffney St, Suite Pearl Harbor HI 96860-
FISC Pearl Harbor POL Laboratory 300 Neches Avenue Bldg 1685, Code 704 Pearl Harbor, HI 96860
DSN
315-473-7989
COM
(808) 473-7989
DSN
315-473-7981
COM
(808) 473-7981
DLA Energy Alaska Attn: Laboratory 10480 Sijan Street, Suite 300
JBER, AK 99506-2507
DLA Energy Alaska Petroleum Laboratory Bldg. 986 Warehouse St.
JBER, AK 99505
DSN
317-384-7180
COM
(907) 384-7180
DSN
317-384-2447
COM
(907) 384-2447
DLA Energy Europe/Africa Petroleum Laboratory
CMR 422
APO AE 09067
DLA Energy Europe/Africa Petroleum Laboratory Rhein Ordnance Barracks Bldg 320 AM Opelkreisel 67663 Kaiserslautern, Germany
DSN
314-493-2286/4/8
COM
49-631-3406-2286/4/8
DSN
314-493-2349
COM
49-631-3406-2349
6.6 Changes from previous issue. The margins of this standard are marked with vertical lines to indicate where changes from the previous issue were made. This was done as a convenience only and the Government assumes no liability whatsoever for any inaccuracies in these notations. Bidders and contractors are cautioned to evaluate the requirements of this document based on the entire content irrespective of the marginal notations and relationship to the previous issue.
CONCLUDING MATERIAL
Custodians:
Army – AV Navy – AS Air Force – 68
DLA – PS
Preparing activity:
Air Force – 68 (Project 91GP-2016-001)
Review activities:
Army – CD Navy – SA
DLA – CC
NOTE: The activities listed above were interested in this document as of the date of this document.
Since organizations and responsibilities can change, you should verify the currency of the information above using the ASSIST Online database at https://assist.dla.mil.
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https://assist.dla.mil/
| NOT MEASUREMENT SENSITIVE |
| TABLE II. Laboratories within the continental United States. |
| TABLE III. Laboratories outside the continental United States. |
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