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首页> 外文期刊>International Journal of Ventilation >Natural vs. Mechanical Ventilation -- A Tool to Help Making a Choice
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Natural vs. Mechanical Ventilation -- A Tool to Help Making a Choice

机译:自然通风与机械通风-帮助做出选择的工具

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摘要

This paper describes the development of a simplified tool which should be used at the early design stage for predicting air ventilation rates in a building. The method is based on the assumption that the air flow rate may be calculated as a function of two independent parameters. The first, called "effective pressure difference", takes into account the local weather data, surrounding terrain, and building typology. The second is the overall "building permeability", and accounts for permeable components (geometry and permeability), including vents. The model has been built using a multi-zone code (COMIS) as a reference. Four building typologies (single family house, row house, terrace house and high rise building) have been analysed. The effective pressure difference is assumed to be a linear two-parameter function of indoor - outdoor temperature difference, and wind speed. The two parameters depend on building typology and plan area density of surrounding terrain. Stability and uncertainty of the model have been checked for different building orientations, envelope permeability, and weather data representative of the heating season. Once the typology, location, and surrounding terrain of the building are known, the designer may find the fraction of time for which natural ventilation is sufficient to provide the desired air flow rate, given the overall permeability. Or, vice versa, he may find the optimal permeability given the fraction of time. This information will be a useful tool to orient the designer in choosing between natural, mechanical or hybrid ventilation systems.
机译:本文介绍了一种简化工具的开发,该工具应在设计的早期阶段用于预测建筑物的通风速率。该方法基于这样的假设,即可以根据两个独立参数来计算空气流速。第一个称为“有效压差”,它考虑了本地天气数据,周围地形和建筑物类型。第二个是整体的“建筑物渗透性”,并考虑了包括通气孔在内的渗透性成分(几何形状和渗透性)。该模型是使用多区域代码(COMIS)作为参考构建的。分析了四种建筑类型(单户住宅,联排别墅,排屋和高层建筑)。假设有效压力差是室内-室外温度差和风速的线性两参数函数。这两个参数取决于建筑物的类型和周围地形的平面区域密度。已针对不同的建筑物方向,围护结构的渗透性和代表供暖季节的天气数据检查了模型的稳定性和不确定性。一旦知道了建筑物的类型,位置和周围地形,设计人员就可以在给定整体透气性的情况下找到自然通风足以提供所需空气流量的时间比例。反之亦然,在一定的时间间隔内,他可能会找到最佳的渗透率。这些信息将成为指导设计人员在自然,机械或混合通风系统之间进行选择的有用工具。

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