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Numerical Simulation of Ammonia Flow Boiling in a Horizontal Circular Tube

机译:水平圆管中氨流沸腾的数值模拟

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In order to understand the variation of ammonia as a cooling refrigerant, the ammonia coolant is being used in power plant air cooling system. The subcooled boiling phase transformation of ammonia in a horizontal pipe tube was simulated through the application of the CFD fluid computational platform, the fluid state parameters in the tube were given at the same time. The speed variation along the axis of the tube was obtained, the speed is increasing, the Reynolds number corresponding substantial increase in the convective heat transfer coefficient corresponds to raise; The vapor volume fraction and boiling heat transfer coefficient along the tube were obtained. The boiling can strengthen the heat transfer significantly. The results showed that the ammonia as a cooling refrigerant by raising the Reynolds number and the use of the latent heat absorb these dual characteristics to improve the heat transfer coefficient is worth promoting.
机译:为了理解氨作为冷却制冷剂的变化,氨冷却剂用于发电厂空气冷却系统。通过施加CFD流体计算平台模拟水平管管中氨在水平管道中的沸腾沸腾相变,同时给出了管中的流体状态参数。获得沿管的轴的速度变化,速度越来越大,对流传热系数的雷诺数相应的大幅增加对应于升高;获得沿管的蒸汽体积分数和沸腾的传热系数。沸腾可以显着加强热传递。结果表明,氨作为冷却制冷剂通过升高雷诺数和使用潜热吸收这些双重特性以改善传热系数值得促进。

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