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THE PREDICTED AND MEASURED EFFECTS OF INCREASING BACK PRESSURE ON THE PERFORMANCE OF A TURBOSHAFT ENGINE

机译:背压增加对涡轮发动机性能的预测和测量效果

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This paper presents a comparison between the predicted effect of an increase in backpressure on a turboshaft helicopter engine and the actual results measured in an experimental test program.A generic engine performance program was used to perform a sensitivity study to identify the effect of increases in power turbine exit pressure (backpressure) on other engine performance parameters. The analysis showed that as the backpressure increases the engine increases fuel flow to produce a constant shaft torque (or horsepower), until the maximum power turbine entry temperature is reached. Once this occurs, fuel flow can no longer increase and thus further increases in backpressure cause a decrease in output torque.These predicted results are then compared with the actual effect as measured on a T55-GA-714A engine in a static test facility. The tests involved replacing the standard engine tail pipe with one of three shorter stub ducts which increased the backpressure by employing straight and convergent flow passages instead of the divergent passage on the standard tail pipe. The test-cell data identified that the stub ducts increase specific fuel consumption by between 0.016 and 0.039 lb/hr/hp, while the turbine inlet temperature increased by up to 108 deg F. This temperature increase means that the power output will become turbine temperature limited at a lower ambient temperature than would otherwise occur. Results showed that when temperature limiting exists the power output will be reduced by between 115 and 400 SHP depending on the choice of stub duct.
机译:本文介绍了涡轮轴直升飞机发动机背压增加的预计效果与实验测试程序中测得的实际结果之间的比较。 使用通用发动机性能程序进行敏感性研究,以确定动力涡轮出口压力(背压)增加对其他发动机性能参数的影响。分析表明,随着背压的增加,发动机会增加燃料流量,以产生恒定的轴转矩(或马力),直到达到最大功率涡轮进入温度为止。一旦发生这种情况,燃油流量将不再增加,因此反压的进一步增加会导致输出扭矩减小。 然后将这些预测结果与在静态测试设备中在T55-GA-714A发动机上测得的实际效果进行比较。这些测试包括用三个较短的短管之一替换标准的发动机尾管,该短尾管通过使用直的和会聚的流动通道而不是标准尾管上的发散通道来增加背压。测试单元数据表明,短管将比油耗提高了0.016至0.039 lb / hr / hp,而涡轮机进口温度升高了108华氏度。这种温度升高意味着功率输出将变为涡轮机温度。限制在比其他情况下更低的环境温度下。结果表明,当存在温度限制时,根据短管的选择,功率输出将降低115至400 SHP。

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