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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Validation of a 3D RANS Solver With a State Equation of Thermally Perfect and Calorically Imperfect Gas on a Multi-Stage Low-Pressure Steam Turbine Flow
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Validation of a 3D RANS Solver With a State Equation of Thermally Perfect and Calorically Imperfect Gas on a Multi-Stage Low-Pressure Steam Turbine Flow

机译:多级低压蒸汽轮机流上具有热完美和热量不完美气体的状态方程的3D RANS解算器的验证

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摘要

A state equation of thermally perfect and calorically imperfect gas is implemented in a 3D RANS solver for turbomachinery flow applications. The specific heats are assumed as linear functions of temperature. The model is validated on a five-stage low-pressure steam turbine. The computational results exhibit the process of expansion in the turbine. The computed and measured distributions of flow parameters in axial gaps downstream of subsequent turbine stages are found to agree reasonably well. It is also shown that the obtained numerical solution gives considerable improvement over the solution based on the thermally and calorically perfect gas model.
机译:在涡轮机械流量应用的3D RANS求解器中实现了热完美且热量不完美的气体的状态方程。比热被假定为温度的线性函数。该模型在五级低压蒸汽轮机上进行了验证。计算结果显示了涡轮机的膨胀过程。发现在随后的涡轮级下游的轴向间隙中流动参数的计算和测量分布合理地吻合。还表明,相对于基于热和热量完美气体模型的解,所获得的数值解具有显着改进。

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