REG NASA-LLIS-0806-2000 Lessons Learned Rocket Engine Technology Test Bed Practice.pdf
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1、Best Practices Entry: Best Practice Info:a71 Committee Approval Date: 2000-04-17a71 Center Point of Contact: MSFCa71 Submitted by: Wil HarkinsSubject: Rocket Engine Technology Test Bed Practice Practice: Conduct highly instrumented tests of O2/H2rocket engine systems to: (1) evaluate and verify new
2、propulsion technologies; (2) validate or modify analytical models; (3) more fully understand the operation of rocket engine systems under varying performance conditions, and (4) ensure engine reliability and operability.Programs that Certify Usage: This practice has been used on Space Shuttle Main E
3、ngine (SSME), and Technology Test Bed (TTB) Program.Center to Contact for Information: MSFCImplementation Method: This Lesson Learned is based on Reliability Practice number PT-TE-1427 from NASA Technical Memorandum 4322A, NASA Reliability Preferred Practices for Design and Test.Benefit:Highly instr
4、umented engine system tests of varying configurations under varying conditions provides engine system level validation of advanced propulsion technology concepts prior to incorporation of these concepts into development or production units; provides an opportunity for greater understanding and fine-
5、tuning of analytical tools that characterize engine performance; results in the Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-development and improvement of diagnostic methods; and increases the depth of available knowledge about the inner workings
6、, sensitivities, and detailed performance characteristics of liquid rocket engine systems. The overall benefit are the validation of technology, improved system performance, high system reliability, and mission safety.Implementation Method:Experience in the planning and conduct of propulsion technol
7、ogy tests using the Space Shuttle Main Engine (SSME) has resulted in a systematic and methodical procedure for planning, testing, data analysis, and reporting the results of test bed activities. As seen in Table 1, the testing has ranged from evaluation of new engine components and features, to adva
8、nced diagnostic and sensor techniques, to the development of systems for anomaly and failure detection. A key to the continued success of this program has been a technology integration process that places emphasis on integration requirements and costs at an early point in the process. Figure 1 is a
9、flow diagram that depicts the technology integration process. Once an engine technology item has proceeded through the concept evaluation process to a point where a decision is made to pursue test bed evaluation, it is presented by the principal investigator to the Test Bed project manager for presc
10、reening review and then a technology item screening review.refer to D descriptionD Table 1. Typical Types of Technology Test Bed Testing Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-refer to D descriptionD Fig. 1. Technology Test Bed Technology In
11、tegration ProcessIn the screening review, an engine technology candidate is judged by its technical merit and potential benefit, the risk of testing the item on the Technology Test Bed engine, and the cost of integrating the item into the engine or facility. Key milestones in the process are Technol
12、ogy Item Screening, the Technology Item Final Design Review, the Integration Design Review, and Hot Fire Testing.Technology Item Final Design Review:Once the technology item is accepted as an output of Technology Item Screening, technology item development proceeds with the conduct of analytical stu
13、dies, component testing, and the incorporation of design revisions, if required. Then a Technology Item Final Design Review is conducted in which four subject areas are presented and discussed: (1) Technology Item Design Description; (2) Technology Item Design Verification; (3) System Issues; and (4
14、) Safety/Quality Issues. The Technology Item Design Description includes the design configuration and characteristics; the design intent or function; the design requirements; materials and processes, drawings and an integrated design configuration. The Technology Item Design Verification consists of
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