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首页> 外文期刊>Energy and Buildings >A study of air flow and heat transfer in building-wind tower passive cooling systems applied to arid and semi-arid regions of Mexico
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A study of air flow and heat transfer in building-wind tower passive cooling systems applied to arid and semi-arid regions of Mexico

机译:墨西哥干旱和半干旱地区建筑-风塔被动冷却系统中的空气流动和传热研究

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摘要

Wind towers have been traditionally used as passive climate solution in Middle East countries. They are massive structures that capture local wind mainstream in order to force fresh air to circulate inside the building promoting thermal comfort to occupants. This work analyzes air flow distribution in five different configurations of coupled systems building-wind tower. The objective is demonstrating this concept is technically feasible for producing thermal comfort in popular houses built in arid and semi-arid climate conditions in Northern Mexico. The study is based on numerical simulations, conducted with RANS method on a commercial program Fluent. Simulations of conjugate coupled solutions between air flow and heat conduction through ceiling, floor and walls were carried out in steady state and turbulent regime with appropriate boundary conditions. Analysis of results focused on air flow circulation inside the building lead to selecting the best configuration, which was tested by conjugated flow distribution and heat transfer in buildings located in Monterrey, Nuevo Leon. Contours of velocity and temperature for the selected configuration demonstrate an environment of comfort for the specific site climate conditions. The remainder is devoted to emphasize that wind-tower as passive cooling method enables electricity savings, otherwise spent in conventional air conditioned systems in Monterrey.
机译:传统上,风塔已在中东国家用作被动气候解决方案。它们是巨大的结构,可以捕获当地的主流风,以迫使新鲜空气在建筑物内循环,从而为居住者提供热舒适感。这项工作分析了建筑物风塔耦合系统的五种不同配置中的气流分布。目的是证明该概念在墨西哥北部干旱和半干旱气候条件下建造的流行房屋中提供热舒适性在技术上是可行的。该研究基于数值模拟,该数值模拟是在商业程序Fluent上使用RANS方法进行的。在稳态和湍流状态下,在适当的边界条件下,对通过天花板,地板和墙壁的空气流动与热传导之间的共轭耦合解进行了模拟。针对建筑物内部气流循环的结果分析导致选择最佳配置,并通过位于新莱昂州蒙特雷的建筑物中的共流分布和热传递进行了测试。所选配置的速度和温度轮廓显示了针对特定现场气候条件的舒适环境。其余部分专门强调风塔作为被动冷却方法可以节省电力,否则可用于蒙特雷的传统空调系统。

著录项

  • 来源
    《Energy and Buildings》 |2013年第11期|211-221|共11页
  • 作者单位

    Centro National de Investigacion y Desarrollo Tecnologico, CENIDET-DGEST, Prol. Av. Palmira s. Palmira, Cuernavaca, 62490 Morelos, Mexico;

    Centro National de Investigacion y Desarrollo Tecnologico, CENIDET-DGEST, Prol. Av. Palmira s. Palmira, Cuernavaca, 62490 Morelos, Mexico;

    Centro National de Investigacion y Desarrollo Tecnologico, CENIDET-DGEST, Prol. Av. Palmira s. Palmira, Cuernavaca, 62490 Morelos, Mexico;

    Centra de Investigacion en Ingenieria y Cientias Aplicadas, CIICAP, UniversidadAutonoma del Estado de Morelos, Av. Universidad 1001, Chamilpa,Cuernavaca, 62209 Morelos, Mexico;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Wind tower; Passive cooling; Thermal comfort; Conjugate CFD solution; Heat transfer;

    机译:风塔被动冷却热舒适性;共轭CFD解决方案;传播热量;

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