首页> 外文会议>8th Biennial Conference on Engineering Systems Design and Analysis 2006 vol.1 >REDESIGN OF A CENTRIFUGAL COMPRESSOR'S VANED DIFFUSER TO IMPROVE CORE ENGINE PERFORMANCES
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REDESIGN OF A CENTRIFUGAL COMPRESSOR'S VANED DIFFUSER TO IMPROVE CORE ENGINE PERFORMANCES

机译:重新设计离心式压缩机的扩散器,以提高核心发动机的性能

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Present paper is devoted to numerical optimization of a 8:1 total pressure ratio centrifugal compressor to improve performances of core engine belonging to a turbo-shaft engine. Main subject of optimization is vaned diffuser with following impeller's pressure ratio increase.rnThis compressor designed by CIAM and tested as a part of core engine gave satisfactory performances even under the first test run. Further development requires new concepts one of which is reduction of core engine's turbine inlet temperature.rnRedesign of vaned diffuser through elimination of reverse flow zone gives 5% increase of mass flow-rate and 0.7% increase of efficiency. Further 6% increase of impeller's total pressure ratio (at the same rpm) modifies Brayton cycle of core engine reducing turbine inlet temperature by 32° and turbine exhaust temperature by 43°. To maintain the same power output, this drop of turbine exhaust temperature is compensated by 4% increase of the operational flow-rate.
机译:本文致力于8:1总压比离心压缩机的数值优化,以改善属于涡轮轴发动机的核心发动机的性能。优化的主要对象是随叶轮压力比增加的叶片式扩压器。该由CIAM设计并作为核心发动机的一部分进行测试的压缩机即使在首次试验时也具有令人满意的性能。进一步的发展需要新的概念,其中之一是降低核心发动机的涡轮进口温度。rn通过消除逆流区重新设计叶片式扩压器可以使质量流量增加5%,效率增加0.7%。叶轮总压力比进一步增加6%(在相同的rpm下),从而改变了核心发动机的布雷顿循环,从而使涡轮进口温度降低了32°,涡轮排气温度降低了43°。为了保持相同的功率输出,涡轮机排气温度的下降可通过运行流量增加4%来补偿。

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