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Assessment of thermal and energy performance of thermally efficient sustainable wall system for Malaysian low cost housing

机译:评估马来西亚低成本住房的热效率可持续墙体系统的热敏性能

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摘要

Thermal performance of building envelope has been of great Importance in determining the indoor thermal environment mainly due to the impact of existing global warming issues. Thus there is a need to provide wall system with better thermal performance than conventional wall systems. The focus of the research is to tackle the twin issues of sustainability and thermal performance of building wall systems for low-cost housing. Fiber reinforced mortar (FRM), and thermally enhanced sustainable hybrid (TESH) bricks were developed by optimizing the mix design using Glass Powder, Palm Oil Fly Ash, and Oil Palm Fibers. Both the FRM and TESH bricks, which constitute the TESH wall system, were analyzed for physical, mechanical and thermal performance and they comply with the various codes of practice for building materials. Heat transfer simulation was performed to determine the thermal performance of the newly developed TESH. The temperature distribution and rate of heat transfer through the wall system was found to be significantly lower than conventional wall systems. Also, the energy consumption analysis suggested 10.6% energy reduction for TESH wall system over conventional wall system. The total energy costing for the building was also reduced by 10.2% for TESH wall system.
机译:建筑信封的热性能在确定室内热环境方面具有重要意义,主要是由于现有全球变暖问题的影响。因此,需要提供具有比传统墙壁系统更好的热性能的壁系统。该研究的重点是解决建筑墙系统的可持续性和热性能的双重问题,以实现低成本住房。通过使用玻璃粉,棕榈油粉粉粉棕榈纤维优化混合设计,开发了纤维增强砂浆(FRM)和热增强的可持续杂交(Tesh)砖。分析了构成TESH墙系统的FRM和Tesh砖,用于物理,机械和热性能,并符合建筑材料的各种实践守则。进行传热模拟以确定新开发的Tesh的热性能。发现通过墙壁系统的温度分布和传热速率显着低于传统的壁系统。此外,通过传统墙系统的Tesh Wall系统提出了10.6%的能量降低。 TESH墙系统的建筑物总能耗也降低了10.2%。

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