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ANALYSIS OF NATURAL VENTILATION EFFECT FOR AN OFFICE BUILDING CONSIDERING MOISTURE ABSORPTION BY MATERIALS

机译:考虑材料吸收的办公楼的自然通风效果分析

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Natural ventilation of buildings is becoming one of the major design approaches for sustainable buildings all over the world; however, the control strategies of vents or windows have not been well established especially when applied to hot and humid climate such as the Asian summer. In humid weather natural ventilation accelerates the absorption of water vapor by books, papers, materials used for furniture and furnishing, etc. This effect may increase the air-conditioning load when ventilation is performed intermittently in an air-conditioned building. Therefore it is important to determine ventilation control strategies on how and when vents or windows should be open and closed. For this analysis the authors developed a simulation code that can calculate air-conditioning load and room conditions by taking both natural ventilation and moisture flow analysis into account. In the present paper how much the vent schedules and quantities of moisture absorbing materials affects air-conditioning loads and room thermal conditions is evaluated and investigated. The results show that the natural ventilation controlled by temperature plus humidity ratio during nighttime is the best scenario among the considered scenarios, but enthalpy based control is not adequate contrary to expectation. Air-conditioning load is reduced by 37% in comparison to that for the no ventilation scenario.
机译:建筑物的自然通风正在成为世界各地可持续建筑的主要设计方法之一;然而,当应用于亚洲夏天等炎热和潮湿的气候时,呼吸器或窗户的控制策略尚未得到很好的建立。在潮湿的天气自然通风中,通过书籍,纸张,用于家具和家具的材料的吸收加速了水蒸气的吸收等。这种效果可能会增加通风在空调建筑物中的通风时的空调负荷。因此,重要的是确定通风口或窗户应打开和关闭的通风控制策略。对于此分析,作者开发了一种模拟代码,可以通过将自然通风和湿度流量分析考虑到自然通风和湿度流量分析来计算空调负载和室内条件。在本文中,排气时间表和空间吸收材料的数量影响空调载荷和室温条件进行评估和研究。结果表明,在夜间温度加湿度比控制的自然通风是所考虑的情景中的最佳情景,但基于焓的控制并不能与期望相反。与没有通风情景的情况相比,空调负荷减少了37%。

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