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Air flow distribution in and around a single-sided naturally ventilated room

机译:单侧自然通风房间内和周围的气流分布

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The objective of this research is to compare calculated and measured air flow distributions inside a test room which is naturally ventilated. The test room is situated in a relatively sheltered location and to visualise the resultant local wind pattern around the room for all prevailing wind directions wind tunnel trials were carried out. Both the wind tunnel and full-scale measurements show that the wind direction at the test cell was generally restricted to either a westerly or an easterly direction. To investigate air flow inside the room, the air pressures and velocities across the openings together with indoor air temperature and velocity at four locations and six different levels are measured. The experimental results demonstrate that for both winter and summer the air was entering the test room at bottom and leaving at the top louvre. Separate air flow and thermal modelling programs are used to predict the spatial distribution of the air flow and thermal comfort. The air flow distribution was predicted using a network air flow program. The predicted flow showed similar trends and the simulation results were in an agreement with the measured data. An explicit finite-difference thermal modelling simulation package was used to predict the thermal comfort indices.
机译:这项研究的目的是比较自然通风的测试室内的计算气流和测量气流分布。测试室位于相对庇护的位置,以可视化方式对所有主要风向进行的风洞试验进行测试后,房间周围的局部风型。风洞和满量程测量都表明,测试单元的风向通常被限制为西风或东风。为了调查室内的空气流动,测量了开口处的气压和速度,以及四个位置和六个不同水平的室内空气温度和速度。实验结果表明,在冬季和夏季,空气都是从底部进入测试室并从顶部百叶窗离开。独立的气流和热建模程序用于预测气流的空间分布和热舒适度。使用网络气流程序预测气流分布。预测流量显示出相似的趋势,模拟结果与实测数据一致。一个显式的有限差分热模型仿真程序包用于预测热舒适指数。

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