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An evaluation of turbulence models for the numerical study of forced and natural convective flow in atria.

机译:对湍流模型的评估,用于对心房中强迫和自然对流进行数值研究。

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摘要

A demand for methods that can be used in the numerical analysis of three dimensional air flow in large buildings has developed as more buildings are being designed with large atriums using a solar loading that leads to complex flow. The flow in such buildings is almost always turbulent which means that turbulence models that are accurate but which do not require undue computer resources have to be selected. As a result, a numerical study of natural convective heat transfer and turbulent flows in large atria, specifically part of the Atria in the EV building at Concordia University, has been completed. Experimental work on turbulence modeling and atria design has been studied and compared with the numerical results obtained here to gain confidence in the modeling techniques used in the study. The flow has been assumed to be steady, and the Boussinesq approximation has been used. The governing equations have been numerically solved using the CFD solver FLUENT.;In addition, experimental results were available and this situation was modeled using similar parameters to the work explained above. Comparing these results supported the accuracy of the work done on the Concordia Atrium. Experimental work on the Annex 26 Atrium in Yokohama Japan was also compared to numerical results to gain confidence in techniques used in the present study and results were obtained that were in good agreement.;The three-dimensional air flow in the Concordia-like atria used the following parameters: forced flow vent inlet angle; forced flow vent velocity; date and time (for solar radiation purposes). The case with adiabatic floor and ceiling conditions was examined and compared to the case with isothermal floor and ceiling conditions. Several models were studied to compare the effect of turbulent modeling in the atria, including the following: (1) K-Epsilon; (2) K-Omega; (3) Detached Eddy Simulation (DES) model; (4) Large Eddy Simulation (LES) model. Further study was completed after it was noted the flow was completely based on natural convection when the velocity of the inlet flow was set to zero.
机译:随着越来越多的建筑物正在使用带有导致复杂流向的太阳能负载的大中庭进行设计,对可用于大型建筑物的三维气流数值分析的方法的需求也不断增长。在这样的建筑物中,流动几乎总是湍流的,这意味着必须选择精确的湍流模型,但是不需要过多的计算机资源。结果,完成了对大心房中自然对流传热和湍流的数值研究,特别是康科迪亚大学电动汽车大楼中心房的一部分。对湍流建模和心房设计的实验工作进行了研究,并将其与此处获得的数值结果进行了比较,从而获得了对该研究中使用的建模技术的信心。假定流动稳定,并已使用Boussinesq逼近。控制方程已使用CFD求解器FLUENT进行了数值求解;此外,可获得实验结果,并且使用与上述工作类似的参数对这种情况进行了建模。比较这些结果可支持Concordia中庭所做工作的准确性。还对日本横滨Annex 26中庭的实验工作与数值结果进行了比较,以使人们对本研究中使用的技术充满信心,并且获得的结果吻合良好。;使用了Concordia样心房中的三维气流以下参数:强制流出口入口角度;强制流出口速度日期和时间(用于太阳辐射)。检查了具有绝热地板和天花板条件的情况,并将其与具有等温地板和天花板条件的情况进行了比较。研究了几种模型以比较湍流模型在心房中的作用,包括:(1)K-Epsilon; (2)欧米茄; (3)分离涡模拟(DES)模型; (4)大涡模拟(LES)模型。在注意到入口流的速度设置为零时,流动完全基于自然对流之后,完成了进一步的研究。

著录项

  • 作者

    Cable, Matt.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Engineering Mechanical.
  • 学位 M.Sc.Eng.
  • 年度 2009
  • 页码 148 p.
  • 总页数 148
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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