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Boiling heat transfer on machined porous surfaces with structural optimization

机译:通过结构优化在机械加工的多孔表面上进行沸腾传热

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Boiling heat transfer on porous surfaces needs further research for augmentation. Analysis of the microfilm evaporation and two-phase flow inside the microstructure was used to develop new microscale heat transfer model for boiling heat transfer on porous surfaces. Simulation results were used to study in detail the effects of fluid parameter and microstructure dimensions on the heat transfer performance during the bubble formation period. For boiling on porous surfaces with such working fluids as Rl l, R22, Rl34a and water, optimum microstructure dimensions were determined for the given conditions. The calculated results fit previous experimental data well. An experimental rig was developed to measure the pool boiling heat transfer to test the predictions of the optimization. The experimental data verified the optimization results.
机译:多孔表面上的沸腾传热需要进一步研究以增强。通过分析微结构内部的微膜蒸发和两相流动来建立新的微尺度传热模型,用于在多孔表面上进行沸腾传热。仿真结果用于详细研究流体参数和微结构尺寸对气泡形成期间传热性能的影响。对于用诸如R11,R22,R134a和水之类的工作流体在多孔表面上沸腾,对于给定条件确定了最佳的微观结构尺寸。计算结果完全符合先前的实验数据。开发了一个实验装置来测量池沸腾传热,以测试优化的预测。实验数据验证了优化结果。

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