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首页> 外文期刊>International Communications in Heat and Mass Transfer >Critical heat flux prediction using genetic programming for water flow in vertical round tubes
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Critical heat flux prediction using genetic programming for water flow in vertical round tubes

机译:基于遗传程序的垂直圆管水流临界热通量预测

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The genetic programming method is used to develop critical heat flux (CHF) correlations for upward water flow in vertical round tubes under low pressure and low flow conditions. The genetic programming, as a symbolic regression tool, finds both the functional form and fitting coefficients of a correlation without any initial assumptions. Inlet and local condition type correlations are developed based on 414 and 314 CHF data from KAIST CHF data bank, respectively. The inlet condition type correlation shows the rms error of 15.2/100 and the local condition type one shows the rms errors of 32.7/100 and 13.2/100 by the direct substitution method and the heat balance method, respectively. Prediction errors are smaller than or comparable to those for other existing correlations.
机译:遗传编程方法用于为低压和低流量条件下的垂直圆管中向上的水流建立临界热通量(CHF)相关性。遗传规划作为一种符号回归工具,无需任何初始假设即可找到相关的函数形式和拟合系数。分别基于来自KAIST CHF数据库的414和314 CHF数据来开发入口和本地条件类型的相关性。入口条件类型的相关性显示均方根误差为15.2 / 100,而局部条件类型的相关性分别为直接替代法和热平衡法,均方根误差为32.7 / 100和13.2 / 100。预测误差小于或等于其他现有相关系数的误差。

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