FA460824QS022 Attachment 1- Perfromance Work Statement.pdf
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- Cathodic Protection Maintenance Barksdale AFB Federal contract opportunity
- Solicitation number
- FA460824QS022
About this file
This document is a Performance Work Statement (PWS) for a federal contract opportunity related to cathodic protection system surveys and repairs for nine water storage tanks located at Barksdale Air Force Base.
The PWS provides details on the scope of services required, which includes furnishing labor, equipment, and materials to perform water tank calibration surveys on four elevated potable water storage tanks and five ground-level fire protection water tanks. The surveys must be conducted in accordance with MIL-HDBK-1136 and include inspections of the rectifiers, cathodic protection components, and obtaining potential measurements. The PWS outlines the test procedures, criteria, and reporting requirements. The contract requires the use of a NACE certified Cathodic Protection Specialist with a minimum of 10 years of relevant experience. The related federal contract opportunity, Solicitation Number FA460824QS022, is for the cathodic protection maintenance on these nine water tanks at Barksdale Air Force Base.
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Other files for this federal contract opportunity
| File | Type | Posted |
|---|---|---|
| Amendment 01 - 24QS022 Cathodic Protection Maintenance.pdf | ||
| FA460824QS022 Atachment 2 Wage Determination.pdf | ||
| FA460824QS022- Attachment 3 Photos of the Tanks.pdf | ||
| FA460824QS22-Combined Synopsis.pdf |
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SCOPE OF SERVICES
CATHODIC PROTECTION SURVEYS AND
REPAIRS NINE (9) WATER STORAGE TANKS
BARKSDALE AIR FORCE BASE
INTRODUCTION
These services relate to the assessment of cathodic protection systems afforded nine (9) water storage tanks within Barksdale Air Force Base. There are five (5) Ground Storage Fire Protection Water Tanks and four (4) Elevated Potable Water Storage Tanks.
FA460824QS022
Attachment 1- Performance Work Statement
Ground Storage Fire Protection Water Tanks
Tank No. 7562 – This is a ground storage tank, with a diameter of 32 feet, a height of 45 feet and a capacity of 250,000 gallons. The tank is used to store fire protection water and was built in 1997. The tank is afforded an impressed current cathodic protection system consisting of an automatically controlled 30 volt – 18 amp rectifier in conjunction with five (5) TA-FW cast iron anodes. The exterior bottom of the tank sets on compacted sand and is not afforded cathodic protection.
Tank No. 5857 – This is a ground storage tank, with a diameter of 64 feet, a height of 21 feet and a capacity of 500,000 gallons. The tank is used to store fire protection water and was built in 1955. The tank is afforded an impressed current cathodic protection system consisting of an automatically controlled 15 volt – 60 ampere rectifier in conjunction with twenty-four (24) type FW cast iron anodes. The bottom of the tank sets on compacted sand and is afforded a separate impressed current cathodic protection. This external system consists of a manually controlled 40-volt – 60-ampere rectifier in conjunction with four (4) 1½-inch diameter by 60-inch long cast iron anodes in 8-inch diameter by 84-inch long canisters.
Tank No. 6800 – This is a ground storage tank, with a diameter of 70 feet, a height of 20 feet and a capacity of 500,000 gallons. The tank is used to store fire protection water and was built in 1986. The tank is afforded an impressed current cathodic protection system consisting of an automatically controlled 24 volt – 12 ampere rectifier in conjunction with nine (9) type FW cast iron anodes. This tank sets on compacted sand pad and is not afforded external cathodic protection.
Tank No. 7722 – This is a ground storage tank, with a diameter of 35 feet, a height of 22 feet and a capacity of 500,000 gallons. The tank is used to store fire protection water and was built in 1986. The tank is afforded an impressed current cathodic protection system consisting of manual controlled 40 volt – 10 ampere rectifier in conjunction with twenty-one (21) type TA-FW cast anodes. The bottom of the tank sets on compacted soil and is afforded a separate impressed current cathodic protection. This system consists of a manually controlled 40-volt – 10-ampere rectifier in conjunction with eight (8) 1½-inch diameter by 60-inch long cast iron anodes in 8-inch diameter by 84-inch long canisters. Both rectifiers were replaced in 2012.
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Attachment 1- Performance Work
Statement Page 2 of 7
Tank No. 6209 - This is a ground storage tank, with a diameter of 26 feet, a height of 11 feet, a capacity of 40,000 gallons and was constructed in 2007. The tank is used to store fire protection water. The tank is afforded an impressed current cathodic protection system consisting of an automatically controlled 24-volt – 12-ampere rectifier in conjunction with three (3) type FW cast iron anodes. This tank sets on compacted sand pad and is not afforded external cathodic protection.
Elevated Potable Water Storage Tanks
Tank No. 7298 – This is an elevated spheroid potable water storage tank, with a bowl diameter of 28 feet, a bowl height of 28 feet. The 200,000-gallon tank was built in 2015. The cathodic protection system is of the impressed current type, with a 30 volt – 8 ampere automatic potential control rectifier and five (5) mixed metal ribbon anodes in the bowl.
Tank No. 7417 – This is an elevated potable water storage tank, with a bowl diameter of 34 feet, a bowl height of 18 feet, and a riser pipe height of 104 feet. The 100,000-gallon tank was built in 1955. The tank is afforded an automatically controlled impressed current cathodic protection system to protect the bowl and riser pipe. There are thirty (30) type FW cast iron anodes in the bowl and fourteen (14) type FW cast iron anodes in the riser pipe.
Tank No. 1358 – This tank is an elevated potable water storage reservoir with a capacity of 500,000 gallons. The tank was built in 1942. The tank is afforded an automatically controlled impressed current cathodic protection system to protect the bowl and riser pipe. The anodes were replaced in 2016. There are five MMO anode assemblies in the bowl and one MMO anode within the wet riser..
Tank No. 4490 – This is an elevated potable water storage tank, with a bowl diameter of 50 feet, a bowl height of 50 feet, and a riser pipe height of 100 feet. The 500,000-gallon tank was built in 1994. The tank is afforded an automatically controlled impressed current cathodic protection system to protect the bowl and riser pipe. The anodes were replaced in 2016. There are five MMO anode assemblies in the bowl and one MMO anode within the wet riser.
Since all of the metal tanks contain water, the submerged surfaces will be subject to corrosion. The rate of corrosion is dependent on the water conductivity and chemical make-up.
The potable water within Barksdale Air Force Base is considered moderately aggressive to carbon steel. The water tanks would be expected to experience an undesirable degree of long-term metal loss due to corrosion. As a primary means of corrosion control, the tanks were coated inside and out when constructed. The coating acts as a barrier between the steel and water or condensation.
As long as the coating remains in place, no corrosion will occur. However, no coating is perfect when applied. Additional long-term coating loss is also expected due to leaching and abrasion.
Corrosion will occur to areas of coating loss. Typically, the rate of corrosion above the water line and on the outside of the tank is relatively low. These areas can also be accessed to repair the coatings. The rate of corrosion under the water can be aggressive, and it is often not practical to repair the coatings.
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To control corrosion on the submerged steel, cathodic protection has been installed.
Cathodic protection is an electro-chemical method by which a DC current is applied to the metal surface. Through a series of electro-chemical reactions, the metal surface is passivated. However, it is important to ensure that sufficient cathodic protection is being applied to achieve corrosion control. This is a function of design and maintenance. Each of the subject water storage tanks utilizes impressed current type cathodic protection systems. A rectifier is mounted at each tank and converts AC power to DC output. The DC current is fed via cables to anodes suspended in the water within each tank. All of the elevated water tanks have anodes suspended down the wet riser pipes. The current returns to the rectifier via a cable connected to each tank. To monitor protection levels, permanent reference cells are suspended in the water within each tank. These cells monitor the electro-chemical potential of the metal, which determines its passivity.
The underside of the floor plates of the on-grade water storage tanks are in contact with the soil. Therefore, the exterior floors are subject to corrosion losses. Tanks No. 5857 and 7722 are afforded external cathodic protection systems to control this corrosion. The systems consist of 1½-inch diameter by 60-inch long cast iron anodes furnished in 8-inch diameter by 84-inch long coke breeze filled canisters drilled vertically into the soil around the tanks. The anodes are energized by manually controlled rectifier units.
In accordance with Air Force Policy and Industry Standards, cathodic protection systems within water storage tanks are to be monitored annually by a corrosion professional. The assessments are to include inspections of the rectifiers and components and obtaining electro-chemical potential profiles. This project was initiated to conduct the recommended assessment of the water tank cathodic protection systems, and the general condition of the coatings.
Tanks No. 8119, 8077, and 7291 have been permanently taken out of service and demolished. Tank No. 6209 was added in 2007. Tank No. 7298 was constructed in 2015.
Scope for Survey, Calibration and Report
1. Scope: Work shall consist of furnishing all labor, tools, equipment, materials, and transportation necessary to perform a water tank calibration survey of the cathodic protection (CP) systems in four elevated water tanks and five ground level water tanks located on Barksdale AFB, LA. All tanks are in service and have sufficient water for the operation of the CP systems.
Surveys shall be performed IAW MIL-HDBK-1136.
2. Background: Within Barksdale AFB, water is stored within nine (9) tanks for potable and fire protection service. The tanks are constructed of welded or riveted carbon steel. Since the tanks are exposed to the water, they are subject to corrosion. As a primary means of corrosion control, the tanks are internally coated. To supplement the coatings, each tank has been provided with an impressed current cathodic protection system. The cathodic protection systems consist of rectifier units mounted at ground level, suspended anodes and two (2) or more permanent reference cells. A listing of the tanks is as follows:
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Statement Page 4 of 7
Elevated No. 1358 130' High 50' Wet Riser Potable Elevated No. 4490 137' High 50' Wet Riser Potable Elevated No. 7298 100' High 40' Wet Riser Potable Elevated No. 7417 125' High 34' Wet Riser Potable Ground No. 5857 20' High 64' Ground No. 6800 Ground No. 7562
20' High 40' High
40' 32'
Ground No. 7722 25' High 34' Ground No. 6208 15' High 20'
**Ground storage tanks No. 5857 and 7722 also have impressed current cathodic protection systems on the underside of the floors. These systems protect the external floor plates from soil side corrosion, so an internal and external test will be required.
a. As part of base operations, the impressed current cathodic protection system rectifiers are monitored monthly by base personnel. Annually, the cathodic protection systems are to be inspected and tested IAW MIL-HDBK 1136 to ensure they comply with NACE standards. The survey and associated reports are to be completed before the end of October 2024.
Normal Hours of Operation: Monday through Friday from 0730- 1630
Base POC: Allen L. Spillers, phone: 318-456-2094, email: allen.spillers.1@us.af.mil
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3. Inspection of Water Tanks:
a. Rectifiers - Record model, make, serial number, tap settings, mode of operation, set potential, current output, voltage output and On/Off potential of each permanent reference cell. If a rectifier unit is inoperable or malfunctioning, conduct troubleshooting to determine the cause. Make minor repairs and adjustments to ensure proper operation where possible. Record any changes in settings, output and operation mode.
b. Condition - Visually observe the condition of the cathodic protection components including the rectifier, conduits, cables, hand hole covers, hangers, reference cells and anodes. Remove at least one (I) anode assembly of each type of array and inspect for cable condition and consumption.
Note general condition of exterior and interior coatings on tank. Obtain photographs documenting coating and cathodic protection system conditions.
c. Potential Measurements - Insert a current interrupter in the rectifier negative circuit. Set the interrupter on a cycle of 30 seconds "On" and 2 seconds "Off". Open manholes, hand holes and/or vents to provide at least three (3) points of access to obtain potentials in tank/bowl, and another opening for access to the riser pipe on elevated tanks. The access points on the tank/bowl should be out toward the shell. Using a sealed test cable connection, lower a portable copper/copper-sulfate reference cell to the floor of the tank or bottom of the riser pipe. Use care to judge the bottom of the riser. The portable reference cell must be freshly charged, immediately before starting the survey.
Obtain potential measurements utilizing an M. C. Miller Model LC-4 voltmeter or equal. Record "On" and "Instant Off" potentials on 5-foot centers up the shell/riser at each access point. From the manhole, also obtain a profile on 5-foot centers across the floor starting at the center and ending at the shell. The "On" potential to be recorded is the highest negative value observed during the current applied cycle. The "Instant Off" potential to be recorded is the lowest or least negative value displayed during the "Instant Off" cycle. Once the potentials have been obtained secure all covers, remove the interrupters, and return the rectifier to operation. Adjust the control settings as required based on the test results.
d. Safety - The Specialist must use an OSHA approved climbing harness. The base will provide mechanisms to connect to the ladder climbing slide devices. The Specialist must be securely tied off at all times when climbing and testing on the roof. The tie off must include a shock reduction devise. An assistant must provide ground support and safety watch. On the elevated tanks, an approved radio must be used to provide communications between the Specialist and ground support.
Elevated tanks shall not be climbed in heavy rain, high winds, or when lightning is near by. When materials are transported to/from the roof, they must be secured so they do not fall.
4. Criteria: The internal & external criteria is an "Instant Off" potential of -850 millivolts or more negative.
5. Reports: A report shall be prepared for the Water Tank System inspections. The report shall be of executive summary format, with sections addressing objectives, conclusions, recommendations, descriptions of structures and cathodic protection systems, test procedures and results narrative.
Appendices shall include tabulated field data, photographs, material lists, and drawings (drawings should detail tank dimensions and cathodic protection system installed). Any recommendations for
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Statement Page 6 of 7 repairs and additions must be supported in the report through a described analysis of the field data.
If repairs/additions are recommended, the report must include a scope of work, cost estimates for implementation and material lists.
6. Qualifications: All field tests and reports are to be conducted by a NACE certified Cathodic Protection Specialist. The Specialist must have at least ten (10) years of direct responsibility for the evaluation of water storage tanks on DoD facilities. This experience must include design, troubleshooting and repair of cathodic protection systems, and coating assessments. The Specialist must be supported by at least one (1) person capable of assisting with the field evaluation.
TEST PROCEDURES
The test procedures used in evaluating the water storage tank cathodic protection systems shall be conducted in accordance with the National Association of Corrosion Engineers (NACE) Recommended Practice RP0388-95. All of the equipment shall be inspected and calibrated immediately before the survey. Personnel must be certified to perform tests in accordance with NACE standards.
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Statement Page 7 of 7
| SCOPE OF SERVICES |
| TEST PROCEDURES |
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