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Numerical Simulation of condenser throat combining with low-pressure exhaust hood for 600MW thermal power unit

机译:低压排气罩与600MW火动力单元相结合的电容式仿真

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In order to obtain the more real condition of the flow field at condenser throat the flow field of condenser throat is numerical simulated by the FLUENT commercial software, alone or coupling with the low-pressure exhaust hood. The results show that the flow field of condenser throat is strongly influenced by low-pressure exhaust hood, the frustum's diffuse-angle, the low-pressure heater and the injection of the exhaust steam from the small turbine. The velocity distribution at the outlet of the throat isn't uniform. The calculation result of combined model is also different from the single calculation result of condenser throat. Combined numerical simulation obtains more reasonable result.
机译:为了获得冷凝器喉部的流场的更真实条件,冷凝器喉部的流场是通过流畅的商业软件的数值模拟,单独或与低压排气罩耦合。结果表明,冷凝器喉部的流场受低压排气罩,截头漫射角,低压加热器和来自小型涡轮机的排气蒸汽的喷射的强烈影响。喉部出口的速度分布并不均匀。组合模型的计算结果与冷凝器喉部的单个计算结果不同。组合数值模拟获得了更合理的结果。

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