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An approach of calculation and analysis of pulsating flow rate of single-sided ventilation due to unsteady wind pressure

机译:单面通风引起的脉动流量计算的计算与分析,由不稳定风压

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Natural ventilation of buildings has received considerable attention aiming to reduce the energy consumption and CO2 emissions. The flow rate of a single-sided ventilation building due to unsteady wind pressure consists of two elements: mean ventilation rate and fluctuating ventilation rate. To design an efficient ventilation system, an accurate model that is capable of considering the variation of fluctuating flow needs to be developed. In this paper, a novel and simple model was developed that can predict the fluctuating ventilation rate due to the pulsating flow of single-sided, wind-driven natural ventilation in buildings. The model of the pulsating ventilation rate is derived based on the theory of wind engineering, the air compressibility, and inertia of air at the opening. The indoor and outdoor fluctuating wind pressure was constructed using a transfer function. It is found that there was an acceptable relative error of 13.9% compared with Haghighat's model, which proved that the calculation method is reasonable. Finally, the model had also been used to analyze the effect of influencing parameters such as opening area, room volume, mean wind speed, turbulence intensity of the wind, and power spectrum density analysis on the pulsating ventilation rate.
机译:建筑物的自然通风受到了极大的关注,旨在减少能源消耗和二氧化碳排放。由于不稳定的风压导致的单面通风建筑的流量由两个元素组成:均值通风率和波动通风率。为了设计高效的通风系统,需要开发一种能够考虑波动流动变化的准确模型。在本文中,开发了一种新颖和简单的模型,其可以预测由于单侧,风力驱动的自然通风中的脉动流动的波动通风率。基于风工程理论,开口处的空气的空气惯性来源的脉动通风率模型。使用转移功能构建室内和室外波动风压。发现与Haghhighat的模型相比,有可接受的相对误差为13.9%,这证明了计算方法是合理的。最后,该模型还被用于分析影响场开口区域,室内体积,平均风速,风湍流强度的参数的效果,以及对脉动通风率的功率谱密度分析。

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