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Hybrid heating systems optimization of residential environment to have thermal comfort conditions by numerical simulation

机译:数值模拟优化住宅环境中具有热舒适条件的混合供暖系统

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摘要

The aim of this study is to determine optimum hybrid heating systems parameters, such as temperature, surface area of a radiant heater and vent area to have thermal comfort conditions. DOE, Factorial design method is used to determine the optimum values for input parameters. A 3D model of a virtual standing thermal manikin with real dimensions is considered in this study. Continuity, momentum, energy, species equations for turbulent flow and physiological equation for thermal comfort are numerically solved to study heat, moisture and flow field. K − ɛRNG Model is used for turbulence modeling and DO method is used for radiation effects. Numerical results have a good agreement with the experimental data reported in the literature. The effect of various combinations of inlet parameters on thermal comfort is considered. According to Pareto graph, some of these combinations that have significant effect on the thermal comfort require no more energy can be used as useful tools. A better symmetrical velocity distribution around the manikin is also presented in the hybrid system.
机译:这项研究的目的是确定最佳的混合供暖系统参数,例如温度,辐射加热器的表面积和具有热舒适条件的通风口面积。 DOE,阶乘设计方法用于确定输入参数的最佳值。本研究考虑了具有实际尺寸的虚拟站立式热人体模型的3D模型。通过数值求解求解连续性,动量,能量,湍流物种方程和热舒适性生理方程,以研究热量,湿度和流场。 K −ɛRNG模型用于湍流建模,DO方法用于辐射效应。数值结果与文献报道的实验数据吻合良好。考虑了进气参数的各种组合对热舒适性的影响。根据帕累托图,其中一些对热舒适性有显着影响的组合不需要更多的能量就可以用作有用的工具。混合动力系统中还显示了围绕人体模型更好的对称速度分布。

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