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Natural ventilation of a building with heating at multiple levels

机译:多层供暖的建筑物的自然通风

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This paper describes the theoretical and experimental modelling of a room with low and high level openings and distributed heating at multiple levels. By elevating a proportion of the heat load from the base, the temperature of the space will becomes stratified. Consequently, the height of neutral buoyancy is raised and is a function not only of the geometric areas of upper and lower openings but also of the ratio of heat fluxes and the heights over which they apply. If an intermediate opening is now introduced, air will flow outwards if the height of neutral buoyancy is below the opening and inwards if it is above. When the intermediate opening acts as an inflow vent, two regimes may occur. Firstly, if the magnitude of the elevated heat flux is sufficient to warm up the incoming cool air the space will remain stratified. However, if it is insufficient the incoming air will descend to the base and the whole space will become well mixed. Quantitative models have been developed to describe the conditions under which each regime occurs and each has been validated using small scale analogue experiments.
机译:本文描述了一个具有低层和高层开口以及多层分布供热的房间的理论和实验模型。通过增加来自基座的一部分热负荷,空间的温度将变得分层。因此,提高了中性浮力的高度,该高度不仅取决于上下开口的几何面积,而且还取决于热通量的比例和它们施加的高度。如果现在引入一个中间开口,如果中性浮力的高度低于开口,则空气将向外流动,如果高于该高度,则空气将向内流动。当中间开口用作流入孔时,可能会发生两种情况。首先,如果升高的热通量足以加热进入的冷空气,则空间将保持分层。但是,如果不足,则进入的空气将下降到底部,整个空间将变得充分混合。已经开发出定量模型来描述每种情况发生的条件,并且已经使用小规模模拟实验对其进行了验证。

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