林阿强, 赵义祯, 王俊凇, 吴衡, 刘高文. 燃气涡轮发动机预旋系统温降和功耗的作用机制与理论分析[J]. 中国电机工程学报, 2022, 42(11): 4090-4101. DOI: 10.13334/j.0258-8013.pcsee.210966
引用本文: 林阿强, 赵义祯, 王俊凇, 吴衡, 刘高文. 燃气涡轮发动机预旋系统温降和功耗的作用机制与理论分析[J]. 中国电机工程学报, 2022, 42(11): 4090-4101. DOI: 10.13334/j.0258-8013.pcsee.210966
LIN Aqiang, ZHAO Yizhen, WANG Junsong, WU Heng, LIU Gaowen. Mechanism and Theoretical Analysis of Temperature Drop and Power Consumption in a Pre-swirl System of Gas Turbine Engine[J]. Proceedings of the CSEE, 2022, 42(11): 4090-4101. DOI: 10.13334/j.0258-8013.pcsee.210966
Citation: LIN Aqiang, ZHAO Yizhen, WANG Junsong, WU Heng, LIU Gaowen. Mechanism and Theoretical Analysis of Temperature Drop and Power Consumption in a Pre-swirl System of Gas Turbine Engine[J]. Proceedings of the CSEE, 2022, 42(11): 4090-4101. DOI: 10.13334/j.0258-8013.pcsee.210966

燃气涡轮发动机预旋系统温降和功耗的作用机制与理论分析

Mechanism and Theoretical Analysis of Temperature Drop and Power Consumption in a Pre-swirl System of Gas Turbine Engine

  • 摘要: 涡轮预旋供气系统内转-静盘腔和转-转盘腔的功热转换性能直接影响涡轮旋转动叶的高温热防护。文中重点开展理论分析,揭示预旋供气系统温降和功耗二者性能指标的关联机制。理论推导结果发现,系统无量纲温降和无量纲功耗特性与旋流恢复系数、预旋半径比、预旋喷嘴出口速度系数及转子马赫数变量的函数关系呈现强关联。基于能量守恒定律,系统无量纲功耗随无量纲温降增大而线性减小;当系统温降越高时,则系统功耗越低。绝热条件下,随着预旋喷嘴出口速度系数增大、转子马赫数减小,系统无量纲温降和无量纲功耗分别呈现增大和减小的趋势。因此,温降和功耗的关联机制可以有效评估预旋供气系统性能设计的优劣。

     

    Abstract: The power-heat conversion performance of turbine pre-swirl system with the rotor-stator cavity and the rotor-rotor cavity will directly affect the high-temperature thermal protection of the turbine rotor blade. This study focused on theoretical analysis to reveal the correlation mechanism between temperature drop and power consumption. Results indicated that the dimensionless temperature drop and power consumption of the system were strongly correlated with the swirl velocity coefficient, pre-swirl radius ratio, pre-swirl nozzle outlet velocity coefficient, and rotor Mach number. Based on energy conservation, the dimensionless power consumption of the system decreased linearly with the increase of dimensionless temperature drop. Moreover, the higher the temperature drop was, the lower the power consumption was. Under the adiabatic condition, the dimensionless temperature drop and the dimensionless power consumption of the system increased and decreased with the increase of pre-swirl nozzle outlet velocity coefficient and the decrease of the rotor Mach number, respectively. Therefore, the correlation mechanism of temperature drop and power consumption could be applied to effectively evaluate the pre-swirl system performance design for air supply into the turbine rotor blade.

     

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