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Performance of ventilator components for natural ventilation applications

机译:自然通风应用中呼吸机部件的性能

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This paper describes a series of laboratory experiments that investigated the airflow interactions that take place between components in louvered ventilators. The context of the work was to improve the design and performance of ventilators used in natural ventilation systems in buildings. The study sort to analyse the measured results, identify any trends and ultimately to derive simple mathematical equations that could be used to describe the airflow behaviour of a given ventilator configuration. Multiple regression analysis was utilised in obtaining relationships between airflow rates, pressure differentials applied across ventilator components, mesh-screen free area, louver blade inclination angles and, where applicable, gaps between louver blades and mesh-screens. The paper introduces some simple generic equations that relate the airflow rate through a ventilator to the prevailing driving force and the constituent components/ configuration of the ventilator.
机译:本文介绍了一系列实验室实验,研究了百叶窗式通风机中组件之间发生的气流相互作用。工作的背景是改善建筑物自然通风系统中使用的通风机的设计和性能。该研究旨在分析测量结果,确定任何趋势并最终得出可用于描述给定呼吸机配置的气流行为的简单数学方程式。利用多元回归分析获得气流速率,通气机部件之间施加的压差,筛网的自由区域,百叶窗板的倾斜角度,以及在适用的情况下,百叶窗板与网孔之间的间隙之间的关系。本文介绍了一些简单的通用公式,这些公式将通过通风机的气流速率与主要驱动力以及通风机的组成部件/配置相关联。

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