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Optimizing Design Layout of a Riverside Residential Settlement in terms of the Thermal Comfort

机译:优化热舒适性河边住宅定居点的设计布局

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The thermal comfort of a riverside residential settlement differs from a non-riverside residential one, which might be caused by a microclimatic difference. Inducing wind from a river to cross the whole riverside residential settlement could improve the outdoor thermal comfort significantly. Such knowledge triggers a study of utilizing river wind to enhance thermal comfort to a riverside residential settlement in southern China. The study explores various possible layouts of a riverside residential settlement using Computational Fluid Dynamic (CFD) simulations. The thermal comfort index OUT_SET~* (the Standard Effective Temperature) that combines effects of air temperature, radiation, wind velocity, and the water evaporation, has been used to evaluate thermal comfort of various riverside residential settlements due to different design layouts. The result showed that the loose enclosed layout is the best one for the thermal comfort whereas the back and front aligned determinant layout is the worst. In order to apply the results into a real world, a case study has been made to the Shenzhen Nan Hua Cun. The thermal environment of this Chinese southern riverside residential settlement has been researched. According to thermal problems revealed by CFD simulation, an optimization design layout was proposed by applying the study results. Eventually, the thermal comfort between the current situation and the optimization design has been compared.
机译:河沿住宅沉降的热舒适性与非河滨住宅的舒适性不同,这可能是由微跨电质差异引起的。从河流中诱导风,整个河边住宅沉降可以显着提高室外热舒适度。这些知识触发了利用河流加强河流住宅沉降的热舒适度的研究。该研究探讨了使用计算流体动态(CFD)模拟的河滨住宅沉降的各种可能的布局。结合空气温度,辐射,风速和水蒸发效果的热舒适度〜*(标准有效温度)已被用于评估由于不同的设计布局,评估各种河边住宅沉降的热舒适度。结果表明,松动的封闭布局是热舒适的最佳选择,而后退和前对齐的决定因子布局是最糟糕的。为了将结果应用于一个现实世界,对深圳南华村进行了一个案例研究。该中国南方河畔住宅区的热环境已经研究。根据CFD仿真显示的热问题,通过应用研究结果提出了优化设计布局。最终,已经比较了当前情况和优化设计之间的热舒适度。

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