REG NASA-LLIS-0665-2000 Lessons Learned Oil-Free Vacuum Pumps in the LOX LH2 Transfer System.pdf
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1、Best Practices Entry: Best Practice Info:a71 Committee Approval Date: 2000-03-06a71 Center Point of Contact: KSCa71 Submitted by: Wil HarkinsSubject: Oil-Free Vacuum Pumps in the LOX/LH2 Transfer System Practice: Oil-free pumping is the latest state of art in vacuum pump technology. At Kennedy Space
2、 Center, this technology is used to maintain approximate 650 sections of the LOX/LH2 vacuum jacketed transfer lines, at a pressure between 0-1000 Torr. This insures the capability to deliver cryogenic propellants on time and at a pre-defined temperature and pressure to the Shuttle vehicle.The use of
3、 oil-free pumps eliminates the risk of contaminating the LOX/LH2 transfer system (vacuum jacketed lines). It enhances the reliability of the vacuum pumping system.Programs that Certify Usage: This practice has been used on the Space Shuttle Program, Shuttle Main Propulsion System (LOX/LH2),Ground Su
4、pport Equipment.Center to Contact for Information: KSCImplementation Method: This Lesson Learned is based on Reliability Practice number GSE-3010 from NASA Technical Memorandum 4322A, NASA Reliability Preferred Practices for Design and Test.Benefit:The major benefits for the use of oil-free vacuum p
5、umps in the LOX/LH2 transfer system is that Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-these pumps eliminate the danger of oil or oil molecule contamination and can be safely operated unmanned. This results in both cost saving and a reliability
6、improvement in the pumping process.Implementation Method:The implementation of oil-free vacuum pumps has resulted in eliminating the danger of oil contaminants, increased reliability and has resulted in a reduced support costs.Technical Rationale:Oil-free pumps offer many advantages over the oil sea
7、led pumps. The oil-free pumps are light-weight, truly portable, highly versatile, and the absence of fluids means the pump can be operated in any orientation - sideways or upside down.There are a number of considerations that affect the decision of whether to use an oil-free or an oil-sealed pump. F
8、irst, and most important, is the determination of whether the application is sensitive to oil contamination. If it is determined that the application is oil sensitive, the next consideration is whether or not a foreline trap is sufficient to prevent the backstreaming oil from entering the process ch
9、amber in quantities that will cause contamination problems, if not then consideration should be given to use of oil-free pump.Oil-Sealed Type Pumps:The foreline traps (oil-sealed mechanical pump) is one type of pumping system that the LOX/LH2 system engineers considered for use in the LOX/LH2 transf
10、er system vacuum jacketed lines. The following paragraphs discuss some of the characteristics of the foreline trap pump and figures 1, 2, and 3 show the creeping surface that can cause oil contamination.Foreline or roughing traps have been used for a number of years in an attempt to stop or reduce t
11、he oil backstreaming from oil-sealed mechanical pumps. Although they have had great commercial success in terms of number of units used, they have a number of problems that need be weighed carefully if they are to be considered as a method of stopping the pump oil from entering the chamber.Three typ
12、es of foreline traps are commercially available:1. Condensation traps, Cryogenic2. Absorption traps, absorbent trapping medium3. Absorption traps, active surface trapping mediumProvided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-All have a potential prob
13、lem that needs constant consideration. They have room temperature walls which will allow liquid oil to coat the inner surfaces and once the oil has passed through into the system side of the trap, it becomes a vapor source that can no longer be prevented from entering the system. The amount of time
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