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A review on thermal comfort assessment factors for industrialised building system (IBS) residences

机译:工业化建筑系统(IBS)住宅热舒适评估因子综述

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A field study has been carried out in non-air-conditioned residences for Industrial Building System (IBS). The objectives of this study are to analyze and evaluate the effect of the indoor thermal environment on occupants' thermal comfort, to know the material of thermal insulation for foam and block system in IBS construction and to compare the value of thermal comfort between IBS and conventional construction. The field study focus in IBS building in northern city (Kedah and Perlis) of Malaysia. The hot-humid indoor climates of the surveyed buildings have been described and analyzed in terms of air temperature, globe temperature, relative humidity and wind velocity. The clothing insulation ensemble and metabolic rate of the occupants were also characterized. The purpose is to assess the comfort temperature in residential IBS buildings in the hot-humid tropics. Multiple and stepwise regressions were applied for the selection of the independent variable for neutral temperature prediction. Air temperature was chosen as an index for the indoor thermal comfort. The comfort temperature was determined using various approaches. The predicted temperature was found to be nearly 30°C regardless of the adopted approach. The negligence of climatic design approach in residential building design could lead to uncomfortable indoor thermal conditions and affect the residents productivity, health and quality of life. A theoretical adaptive model based on the thermal comfort is adaptive Predicted Mean Vote (aPMV) using the "black box" theory will be used. The results of this study provide a comparison between subjective assessments and objective measurements that demonstrate the high tolerance of local respondents to the environmental temperature of the environment. Individuals with climate and environment are required to produce a quality in daily life and the thermal comfort level assessment from previous researchers also discussed. This study outcomes can also be used as an enhancement to thermal comforts to those involved in the construction of houses or IBS concepts "foam" and blocks. The government and non-governmental bodies involved are Public Work Department (PWD), State Government, Local Authorities, Construction Industry Development Board (CIDB) and contractor parties.
机译:在工业建筑系统(IBS)的非空调住宅中进行了一个田间研究。本研究的目的是分析和评估室内热环境对乘员热舒适的影响,了解IBS施工中泡沫和阻挡系统的保温材料,并比较IBS与常规的热舒适度建造。现场研究在北部城市(Kedah和Perlis)的IBS大厦的焦点。已经在空气温度,相对湿度和风速方面描述和分析了调查建筑物的热潮湿室内气候。还表征了乘客的服装绝缘合奏和代谢率。目的是评估热潮湿的热带地区住宅IBS建筑物的舒适温度。应用多个和逐步回归用于选择中性温度预测的独立变量。选择空气温度作为室内热舒适度的指标。使用各种方法测定舒适温度。无论采用的方法如何,都发现预测温度近30°C。住宅建筑设计中气候设计方法的疏忽可能导致室内热情不舒服,影响居民的生产力,健康和生活质量。将使用基于热舒适性的理论自适应模型是使用“黑匣子”理论的自适应预测平均投票(APMV)。本研究的结果提供了主观评估和客观测量之间的比较,其证明了局部受访者对环境温度的高耐受性。有气候和环境的个人必须在日常生活中产生质量,并讨论了以前研究人员的热舒适程度评估。本研究结果也可以用作与参与房屋或IBS概念“泡沫”建造的人的热舒适性的增强。涉及的政府和非政府机构是公共工作部(PWD),州政府,地方当局,建筑业发展局(CIDB)和承包方。

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