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Investigation of thermal comfort and airflow in a naturally ventilated lightweight house in a bush fire prone area

机译:对丛林火灾易发地区自然通风轻型房屋的热舒适性和气流的研究

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摘要

Building performance simulation has been utilised for the investigation of thermal comfort and airflow within a naturally ventilated, self-sufficient house in a bushfire prone area. Lightweight construction with Phase Change Materials (PCM) was proposed as an appropriate solution to respond to the brief. The simulations modelled the effects with and without PCM, to demonstrate the reduction in temperature swings throughout design days. Computational Fluid Dynamics (CFD) was used to graphically model the air velocity and temperature gradients and produced results to highlight design parameters that can assist airflow. Limitations of the software are discussed particularly in relation to assisted ventilation from ceiling fans, and miscellaneous heat gains of a fire stove, which could not be simulated effectively.
机译:建筑性能模拟已被用于调查森林大火易发地区自然通风,自给自足的房屋内的热舒适性和气流。提出了使用相变材料(PCM)进行轻量级构造的适当解决方案,以回应该简要说明。该仿真对使用和不使用PCM的效果进行了建模,以证明在整个设计日中温度波动的减小。计算流体动力学(CFD)用于以图形方式对空气速度和温度梯度进行建模,并产生结果以突出可帮助气流的设计参数。特别讨论了软件的局限性,涉及吊扇的辅助通风以及火炉的其他热量获取,这些不能有效模拟。

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