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A Probabilistic Assessment of NASA Ultra-Efficient Engine Technologies for a Large Subsonic Transport

机译:大型亚音速运输的NASA超高效发动机技术的概率评估

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摘要

NASA's Ultra Efficient Engine Technology (UEET) program features advanced aeropropulsion technologies that include highly loaded turbomachinery, an advanced low-NOx combustor, high-temperature materials, intelligent propulsion controls, aspirated seal technology, and an advanced computational fluid dynamics (CFD) design tool to help reduce airplane drag. A probabilistic system assessment is performed to evaluate the impact of these technologies on aircraft fuel burn and NOx reductions. A 300-passenger aircraft, with two 396-kN thrust (85,000-pound) engines is chosen for the study. The results show that a large subsonic aircraft equipped with the UEET technologies has a very high probability of meeting the UEET Program goals for fuel-burn (or equivalent CO2) reduction (15% from the baseline) and LTO (landing and takeoff) NOx reductions (70% relative to the 1996 International Civil Aviation Organization rule). These results are used to provide guidance for developing a robust UEET technology portfolio, and to prioritize the most promising technologies required to achieve UEET program goals for the fuel-burn and NOx reductions.
机译:NASA的超高效发动机技术(UEET)计划采用先进的航空推进技术,其中包括高负荷涡轮机械,先进的低NOx燃烧室,高温材料,智能推进控制,吸气密封技术以及先进的计算流体力学(CFD)设计工具帮助减少飞机阻力。进行概率系统评估以评估这些技术对飞机燃油消耗和NOx减少的影响。这项研究选择了300座客机,带有两个396kN推力(85,000磅)发动机。结果表明,配备UEET技术的大型亚音速飞机极有可能达到UEET计划的目标,即减少燃油消耗(或等同的CO2)(比基线低15%)和降低LTO(着陆和起飞)NOx (相对于1996年国际民用航空组织的规定,为70%)。这些结果可用于为开发强大的UEET技术产品组合提供指导,并为实现UEET计划目标所需的最有前景的技术确定优先次序,以实现燃油节省和NOx减排。

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