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首页> 外文期刊>American journal of engineering and applied sciences >USE OF COMPUTATIONAL FLUID DYNAMIC TO PREDICT AIRFLOW AND TEMPERATURE DISTRIBUTION IN A RESIDENTIAL BUILDING WITH AN UNDER FLOOR AIR DISTRIBUTION SYSTEM | Science Publications
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USE OF COMPUTATIONAL FLUID DYNAMIC TO PREDICT AIRFLOW AND TEMPERATURE DISTRIBUTION IN A RESIDENTIAL BUILDING WITH AN UNDER FLOOR AIR DISTRIBUTION SYSTEM | Science Publications

机译:地面空气分配系统的住宅建筑中计算流体动力学的预测气流和温度分布科学出版物

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> Our objective is to demonstrate the use of Computational Fluid Dynamic (CFD) in building applications. In particular, CFD has been used for temperature and airflow predictions of building spaces conditioned using Under Floor Air Distribution (UFAD) System. The space used is an instrumented laboratory room (old daycare center) located at the University of Wyoming. The use of the CFD simulation results provides insightful analyses of the UFAD design and diffuser locations. The k-? turbulent model was employed to simulate the environment above an Under-Floor Air Distribution (UFAD) system, where the air is supplied using different configurations of several diffuser locations. Mesh generation was conducted using a pre-processor program, called GAMBIT. The CFD results were obtained using the program FLUENT and show flow and thermal patterns, using temperature and heat flux boundary conditions obtained experimentally. These boundary conditions have been used to predict the nature of convection heat transfer through studying velocity and temperature patterns. A realistic three dimensional model of the UFAD system is used for the simulation.
机译: >我们的目标是演示在建筑应用中使用计算流体动力学(CFD)。特别是,CFD已用于使用地下空气分配(UFAD)系统调节的建筑空间的温度和气流预测。使用的空间是位于怀俄明大学的仪器实验室(旧日托中心)。 CFD仿真结果的使用为UFAD设计和扩散器位置提供了深入的分析。 k-?湍流模型用于模拟地板下空气分配(UFAD)系统上方的环境,在该系统中,使用多个扩散器位置的不同配置来供应空气。使用称为GAMBIT的预处理程序进行网格生成。使用程序FLUENT获得CFD结果,并使用实验获得的温度和热通量边界条件显示流动和热模式。这些边界条件已用于通过研究速度和温度模式来预测对流传热的性质。 UFAD系统的逼真的三维模型用于仿真。

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