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首页> 外文期刊>Journal of turbomachinery >Modeling of Surge Characteristics in Turbo Heat Pumps
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Modeling of Surge Characteristics in Turbo Heat Pumps

机译:涡轮热泵的喘振特性建模

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This paper presents a new analytical model of surge dynamics in turbo heat pumps. Turbo heat pumps use refrigerants as the working fluid and consist of a centrifugal compressor, condenser, expansion valve, and evaporator. Compared with a gas turbine engine, the turbo heat pump system introduces additional complexities. First, the turbo heat pump forms a closed-loop system. Second, the system has two plenums, condenser and evaporator, which are coupled to each other. Third, the heat pump runs on a refrigeration cycle with two phases: vapor and liquid. Fourth, heat transfer effects of evaporation and condensation have to be considered. Fifth, unlike air, a refrigerant has strong real gas effects and thus cannot be modeled as an ideal gas. The new model addresses such additional complexities on the basis of the first principles of conservation of mass, momentum, and energy. When applied to a gas turbine system, the new model's predictions become identical to those from the Greitzer's model. Furthermore, comparison with the available experimental data shows that the model can also accurately predict surge behavior in actual turbo heat pumps. Finally, the effects of Greitzer's B parameter and the ratio of evaporator and condenser volume have been examined. Parameter B influences both surge shape and frequency. Finally, surge frequency is extremely sensitive to the ratio of the two plenum volumes.
机译:本文提出了一种新的涡轮热泵喘振动力学分析模型。涡轮热泵使用制冷剂作为工作流体,并由离心压缩机,冷凝器,膨胀阀和蒸发器组成。与燃气涡轮发动机相比,涡轮热泵系统带来了更多的复杂性。首先,涡轮热泵形成一个闭环系统。其次,系统有两个增压室,冷凝器和蒸发器相互连接。第三,热泵以两个阶段的制冷循环运行:蒸汽和液体。第四,必须考虑蒸发和冷凝的传热效果。第五,与空气不同,制冷剂具有很强的真实气体效应,因此无法建模为理想气体。新模型基于质量,动量和能量守恒的首要原则解决了此类额外的复杂性。当应用于燃气轮机系统时,新模型的预测与Greitzer模型的预测相同。此外,与可用实验数据的比较表明,该模型还可以准确地预测实际涡轮热泵中的喘振行为。最后,研究了Greitzer B参数以及蒸发器和冷凝器体积比的影响。参数B影响电涌形状和频率。最后,喘振频率对两个气室容积之比极为敏感。

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