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Design and performance of a novel innovative roofing system for tropical landed houses

机译:一种新颖的热带有屋顶房屋创新屋面系统的设计和性能

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An innovative roofing system (IRS) is designed to deliver an abundant and uniform amount of cool natural light from the roof with reduced heat gain effect for tropical residential buildings (3 m height) in Malaysia. Studies revealed that several passive and active solar techniques can be integrated to form a roofing system to separate solar heat from useful natural light at the attic zone before heat reaches the occupied space. The IRS design is specified and proposed by using glazing technology (polycarbonate), pigment technique (reflective and radiative), as well as ventilation process (hybrid turbine ventilator) applied at the attic zone to represent a new model of sustainable roofing design. The aim of this research is to demonstrate the effectiveness of the design concept without the need for any chemical, complex, or expensive solar design techniques. The methodology was conducted on a series of field studies in a standard room model at Universiti Sains Malaysia. Three different roofing systems are investigated to identify the IRS performance in both dark and daylight conditions to determine the effect of natural light on the indoor environment. The outcomes of the design show that the IRS was able to reduce the indoor air temperature compared with conventional roofing system by approximately 2.1 degrees C under daylight condition. Results showed that the difference in the IRS (daylight-dark) condition was 0.31 degrees C compared to that in the conventional roofing system at 0.8 degrees C. Furthermore, the level of mean radiant temperature compared with indoor temperature under daylight condition was 2.61 degrees C for the IRS, whereas 4.05 degrees C for conventional roof. Moreover, the IRS successfully delivered an acceptable range of natural light below 2000 lux (Green Building Index) at daytime with a minimum level of 86% compared with 78% for conventional roofing design. As a result, these findings indicated that the IRS with light materials and without any insulation can separate solar heat from useful natural light under the climatic conditions in Malaysia. The system provides a new design paradigm based on the requirements of the Malaysian Green Building Index. (C) 2014 Elsevier Ltd. All rights reserved.
机译:创新的屋面系统(IRS)旨在为屋顶提供充足且均匀的凉爽自然光,同时降低了马来西亚热带住宅建筑(3 m高)的吸热效果。研究表明,可以将几种被动和主动太阳能技术集成在一起,以形成屋顶系统,从而在热量到达占用空间之前,将阁楼区的太阳能与有用的自然光分开。通过使用玻璃技术(聚碳酸酯),颜料技术(反射和辐射)以及阁楼区的通风工艺(混合涡轮通风机)来指定和提出IRS设计,以代表可持续屋顶设计的新模型。这项研究的目的是证明设计概念的有效性,而无需任何化学,复杂或昂贵的太阳能设计技术。该方法是在马来西亚大学的标准房间模型中进行的一系列现场研究中进行的。对三种不同的屋面系统进行了研究,以确定IRS在黑暗和日光条件下的性能,以确定自然光对室内环境的影响。设计结果表明,IRS在日光条件下能够将室内空气温度与传统屋顶系统相比降低约2.1摄氏度。结果表明,IRS(日光暗)条件与传统屋顶系统在0.8摄氏度下的差异为0.31摄氏度。此外,日照条件下平均辐射温度与室内温度的差异为2.61摄氏度对于IRS,则为4.05摄氏度。此外,美国国税局在白天成功提供了低于2000 lux(绿色建筑指数)的可接受自然光范围,最低水平为86%,而传统屋顶设计为78%。结果,这些发现表明,在马来西亚的气候条件下,具有轻质材料且没有任何绝缘的IRS可以将太阳热与有用的自然光分开。该系统根据马来西亚绿色建筑指数的要求提供了一种新的设计范例。 (C)2014 Elsevier Ltd.保留所有权利。

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