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A Simplified Cooling Load Calculation Method and Air Conditioning Systems for well-Insulated Buildings

机译:用于储井储楼的简化冷却负荷计算方法和空调系统

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Thick insulation in buildings offers great potential not only for decreasing cooling load but also for changing its calculation method, and for changing system design, operation or control of the system and the thermal environment of the room. The research results of room air temeprature change in well-insulated buildings, show the effects fo the daily swing of outdoor temperature and solar radiation are quite small. A simple calculation method for cooling load based on steady state theories is available for such buildings. Cooling loads can also be minimized by using the thermal mass and small swings of room air temperature. As the cooling load decreases, floor cooling becomes an efective system with no risk of vapor condensation. It is also effectiveto remove a portion of the radiant heat gain on the floor from lighting and from sun coming through the windows before it turn to the cooling load of a room. A water system is very suitable for continuous cooling and thus the roles of the air circulation system are simplified to supply fresh air and to control humidity. A simple air conditioning system without recirculation of air can also be realized by decreasing the cooling load.
机译:建筑物的厚绝缘性不仅能够降低冷却负荷,而且还可用于改变其计算方法,以及改变系统的系统设计,操作或控制和房间的热环境。房间空气时间变化在绝缘建筑物中的研究结果,显示了户外温度和太阳辐射的日常摆动的影响很小。基于稳态理论的冷却负载的简单计算方法可用于此类建筑物。通过使用热质量和室内空气温度的小摇摆,还可以最小化冷却载荷。随着冷却负荷降低,地板冷却成为一种没有蒸汽冷凝风险的电动系统。它也有效地去除地板上的一部分辐射热量,并从遮光通过窗户之前转向房间的冷却负荷。水系统非常适合于连续冷却,因此简化了空气循环系统的作用以供应新鲜空气并控制湿度。通过降低冷却载荷,也可以实现无需再循环空气的简单空调系统。

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