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QUALITY FUNCTION DEPLOYMENT AND SENSITIVITY ANALYSIS OF REQUIREMENTS FOR FUTURE AIRCRAFT PROPULSION CRYOGENIC COOLING SYSTEMS

机译:未来飞机推进冷却系统要求的质量函数部署与敏感性分析

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A number of novel future airframe and propulsion concepts are considered in order to meet aviation targets set by various aviation regulatory bodies including NASA and the Advisory Council for Aeronautics Research in Europe (ACARE). The current NASA concept for long-range civil aircraft is the Blended-Wing Body (BWB) aircraft, coupled with turbo-electric distributed propulsion (TeDP), to enable a host of efficiency benefits over current designs. NASA has identified superconducting technology as a key enabler to deliver this airframe. Superconductors need to be cooled to cryogenic temperatures for normal operation. Using a sensitivity matrix, it was found that the Exchange Heat and Transport/Pump Cryogen functions are the most sensitive to input variation. The failure modes and effects analysis performed on the functional model show that the detection functions are critical during component failure. Quality Function Deployment (QFD) analysis shows the Exchange Heat and Transport/Pump Cryogen functions are also critical.
机译:考虑了许多新颖的未来机身和推进概念,以满足各航空监管机构设定的航空目标,包括美国宇航局和欧洲航空研究咨询委员会(ACARE)。目前的NASA概念为远程民用飞机是混纺机翼车身(BWB)飞机,与涡轮电气分布式推进(TEDP)相结合,以使许多效率优势在电流设计上。美国宇航局已将超导技术确定为递送此机身的关键推动器。需要将超导体冷却到低温温度以进行正常操作。使用灵敏度矩阵,发现交换热量和传输/泵电轭功能对输入变化最敏感。对功能模型执行的故障模式和效果分析表明,在组件故障期间检测功能是关键的。质量功能部署(QFD)分析显示交换热量和运输/泵冷冻剂功能也是至关重要的。

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