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Numerical simulation of a comprehensive 1-D building energy model and conjugate heat transfer analysis on the internal flow field at the Harran houses in southern Turkey for a brick corbelled internal surface

机译:全面的一维建筑能量模型的数值模拟和共轭传热分析,在土耳其南部哈兰房屋中,内部为砖形内陷

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摘要

Adaptation of vernacular building strategies, such as those encountered in Harran, Turkey could provide agreeable comfortable levels under high ambient temperatures. As widely known, buildings are accounted for consuming approximately 40% primary energy. This research aims to sustain the underlying premise that comfortable temperatures can be reached through natural ventilation. This thesis proposes: [1] the development of a comprehensive 1D building energy model for the Harran house during summer month of July and [2] a flow field analysis to ascertain the impacts of a brick and smooth domed internal surface during the winter month of March.The motivation of this project lies in understanding how buoyancy and wind-driven natural ventilation coupled with the effects of thermal mass provide agreeable thermal indoor conditions under diverse outside climate conditions of high solar radiation, high wind speeds and low precipitation levels. We develop a building energy model specifically oriented for the Harran houses that take into account the effects of several physical phenomena including: buoyancy and wind driven natural ventilation, thermal mass, short-wave and long-wave radiation, conduction, convection, wind thermal energy, and geometry in a uniform temperature zone. The developed building model, serves as a tool to project how external and internal surface temperatures oscillate based on measured outside air temperature and uniform house temperature. Results show that numerical results reveal proximity to experimental measurements and through sensitivity analysis optimized values for wall thickness and surface roughness are computed based on heat flux.Along these lines, this thesis assesses the influence of building design parameters in order to optimize comfortable temperatures within the Harran domed houses. Precisely, temperature and velocity fields are studied for a layered open-faced brick dome. The numerical stability and high accuracy of the SST k-omega turbulence model suits well this case study due to the high incoming velocity jets through the dome openings. A computational fluid dynamics (CFD) conjugate-heat transfer case was designed in OpenFOAM based on boundary conditions measured on site. For the purposes of this research, experiments were conducted in a section of a Harran domed house and validated with numerical simulations. Simulations show very close similarities between the numerical and experimental data.
机译:适应本土建筑策略,例如在土耳其哈兰遇到的那些,可以在高环境温度下提供令人满意的舒适水平。众所周知,建筑物消耗了约40%的一次能源。这项研究旨在维持通过自然通风可以达到舒适温度的基本前提。本文提出以下建议:[1]在7月夏季为Harran房屋开发一维综合建筑能量模型,[2]对流域分析确定在冬季冬季月份砖和光滑圆顶室内表面的影响。 3月。该项目的动机在于了解浮力和风力驱动的自然通风以及热质量的影响如何在高太阳辐射,高风速和低降水水平的各种外部气候条件下提供令人满意的室内热条件。我们开发了一种专门针对哈兰房屋的建筑能耗模型,其中考虑了以下几种物理现象的影响:浮力和风驱动的自然通风,热质量,短波和长波辐射,传导,对流,风热能,以及在均匀温度区域中的几何形状。开发的建筑模型可作为一种工具,根据测得的外部空气温度和均匀的房屋温度来预测外部和内部表面温度的波动。结果表明,数值结果表明与实验测量值接近,并且通过敏感性分析,根据热通量计算了壁厚和表面粗糙度的最佳值。沿着这些线,本文评估了建筑设计参数的影响,以优化室内的舒适温度。哈兰半球形的房子。精确地研究了层状开放式砖穹顶的温度和速度场。 SSTk-ω湍流模型的数值稳定性和高精度非常适合此案例研究,因为通过圆顶开口的高射流速度非常高。基于现场测量的边界条件,在OpenFOAM中设计了计算流体动力学(CFD)共轭传热工况。为了本研究的目的,在哈兰半球形房屋的一部分中进行了实验,并通过数值模拟进行了验证。仿真显示数值和实验数据之间非常相似。

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    Mutti, Lucas;

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  • 年度 2014
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