The fully implicit difference method was employed, and the latent heat release was handled with the increment of frozen water fraction.
数值模拟计算采用全隐格式差分方法,用水分冻结量的增量处理相变潜热。
The simulation results demonstrated flow velocity, turbulence kinetic energy and wall temperature increased with increment of heat flux.
计算结果表明:随着热通量的增加,流场的速度、湍流强度和壁温均升高。
Also discussed is the effect of parameters such as in tube fluid Reynolds number (in the absence of fouling) and dimensionless heat flux density on the above mentioned increment number.
讨论了管内流体雷诺数(无污垢时)和无因次热流密度等参数对无因次熵产相对增加数的影响。
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