首页> 外文期刊>International journal of low carbon technologies >Investigating thermal conditions in a tropic atrium employing CFD and DTM techniques
【24h】

Investigating thermal conditions in a tropic atrium employing CFD and DTM techniques

机译:使用CFD和DTM技术研究热带中庭的热状况

获取原文
获取原文并翻译 | 示例
           

摘要

Focusing on the 'worst-case scenario', a modelling study was carried out to examine whether a low cost ventilation solution could provide basic comfort in a specific atrium-building design. This study combined dynamic thermal modelling (DTM) and computational fluid dynamics (CFD) in investigating how thermal conditions, namely the air movement and temperature distribution within an atrium responded to the side-lit form and other changes of design variables such as inlet to outlet opening area ratios and also the outlet's arrangement. The predicted temperature distribution, airflow patterns and comfort indices would provide a better understanding how the design variables affect thermal condition and comfort within the atrium, particularly at the occupied areas under a low cost ventilation solution—pressurized ventilation. The simulation results revealed that sufficiently higher inlet to outlet opening area ratio (i.e. n > 1) could improve the thermal condition on the open corridors, the occupied areas, even on high levels; while with an equal inlet to outlet opening area ratio (i.e. n = 1), changing the outlet's arrangement (i.e. location and configuration) did not significantly affect thermal condition. The practical aspect of this study is 2-fold. First, the low cost ventilation solution using exhaust air from surrounding fully air-conditioned rooms could provide acceptable thermal comfort at the open corridors/walkways surrounding the atrium. Secondly, combining a DTM and CFD can be an effective tool to test various design options to achieve an optimal solution. The parametric presented here could be used in similar studies aiming at optimize environmental engineering solutions that balance comfort and cost.
机译:针对“最坏情况”,进行了建模研究,以检查低成本通风解决方案是否可以在特定的中庭建筑设计中提供基本的舒适感。这项研究结合了动态热模型(DTM)和计算流体动力学(CFD),以研究热条件(即中庭内的空气运动和温度分布)如何响应侧向照明形式以及设计变量(如入口到出口)的其他变化开口面积比率以及出口的布置。预测的温度分布,气流模式和舒适度指数将更好地理解设计变量如何影响心房内的热状况和舒适度,尤其是在低成本通风解决方案(加压通风)下的居住区域。模拟结果表明,足够大的进,出口开口面积比(即n> 1)可以改善开放走廊,被占区域甚至高空的热状况。而在入口与出口的开口面积比相等(即n = 1)的情况下,更改出口的布置(即位置和配置)不会显着影响热状况。这项研究的实际方面是2倍。首先,使用周围全空调房间的废气的低成本通风解决方案可以在中庭周围的开放走廊/人行道上提供可接受的热舒适性。其次,将DTM和CFD相结合可以成为测试各种设计方案以实现最佳解决方案的有效工具。此处介绍的参数可用于类似的研究中,旨在优化平衡舒适度和成本的环境工程解决方案。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号