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A Simplified Turbulence Model for Describing Airflow in Ceiling Slot-ventilated Enclosures

机译:描述顶槽通风机柜中气流的简化湍流模型

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摘要

A numerical model was developed to predict flow occurring with opposing plane-wall ceiling jets representative of slot-ventilated livestock facilities. This model, termed the BETA model, was evaluated by comparing predicted axial and animal occupied zone (AOZ) velocity distributions with a low Reynold’s Number turbulence model (LBLR) and a laminar model (LAM). In addition, the BETA model results were compared with experimental results from a laboratory-scale test chamber. For opposing plane-wall ceiling jets, the predominant gradient in turbulent viscosity was predicted to occur in the vertical direction. An effective viscosity was defined as a function of the inlet Reynold’s Number (ReH) and normalized vertical height from the floor. The effective viscosity was used to selectively augment the laminar viscosity in the Navier-Stoke’s equation. Predicted comparisons between BETA and the LBLR models showed negligible differences for ventilating conditions between ReH of 35,032 and 11,752. Comparison with experimentally measured axial velocity decay indicated that the BETA model reproduced ceiling jet development as well as the LBLR model.
机译:建立了一个数值模型来预测代表槽通风牲畜设施的相对的平面壁天花板射流所发生的流量。该模型称为BETA模型,是通过比较预测的轴向和动物占据区(AOZ)速度分布与低雷诺数湍流模型(LBLR)和层流模型(LAM)进行评估的。此外,将BETA模型的结果与实验室规模的测试室的实验结果进行了比较。对于相对的平面壁天花板射流,湍流粘度的主要梯度被预测为在垂直方向上发生。有效粘度定义为入口雷诺数(ReH)和距地面的标准化垂直高度的函数。有效粘度用于根据Navier-Stoke方程选择性地提高层流粘度。 BETA和LBLR模型之间的预测比较显示,ReH在35,032和11,752之间的通风条件差异可忽略不计。与实验测得的轴向速度衰减的比较表明,BETA模型与LBLR模型一样,再现了天花板射流的发展。

著录项

  • 作者

    Hoff Steven J.;

  • 作者单位
  • 年度 1995
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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