Prediction of Thermal Comfort from Operating Temperature and the Predicted Mean Vote / Predicted Percentage Dissatisfied (PMV/PPD) Indices in a Nubian Vault

IF 1.5 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Advances in Materials Science Pub Date : 2023-03-28 DOI:10.11648/j.am.20231201.12
Karim Toussakoe, E. Ouédraogo, Bouto Kossi Imbga, G. Nana, A. Compaoré, Florent Pelega Kieno, S. Kam
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Abstract

: The building and construction sector has a significant impact on the environment due to its high consumption of energy resources and increasing levels of emissions, and pollution. According to the United Nations Human Settlements Program (UN-HABITAT), the energy used by buildings and construction accounts for more than a third of the final energy consumed in the world and a quarter of greenhouse gas emissions. African countries such as Burkina Faso are concerned in this reality in the field of building. This is why the major issue in the tropic today is the construction of new buildings with high environmental quality and high energy performance. Today's construction choices will have an impact on future generations. The technique and materials of a building contribute to the health, safety and comfort of people. In the present work, the operating temperature and the PMV/PPD indices in a Nubian vault were determined. The operating temperature and the PMV/PPD indices are indicators of thermal comfort. Thus, the knowledge of these indicators allows to appreciate the state of comfort in the Nubian vault. It is in this perspective that the operating temperature will be determined by the adaptive method. The Fanger model is used for the determination of the PMV/PPD indexes. From the state of sensation obtained, acceptable ambient conditions can be defined for an individual in a tropical zone. As an alternative, the most suitable construction type and building materials could be recommended for each type of climate.
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努比亚保险库工作温度和预测平均投票/预测不满意百分比(PMV/PPD)指数对热舒适的预测
:建筑行业对环境的影响很大,因为它消耗大量的能源,排放和污染水平不断上升。根据联合国人类住区规划署(UN-HABITAT)的数据,建筑物和建筑使用的能源占世界最终能源消耗的三分之一以上,占温室气体排放的四分之一。象布基纳法索这样的非洲国家在建筑领域对这一现实感到关切。这就是为什么今天热带地区的主要问题是建造具有高环境质量和高能效的新建筑。今天的建筑选择将对子孙后代产生影响。建筑的技术和材料有助于人们的健康、安全和舒适。在本工作中,测定了努比亚拱顶的工作温度和PMV/PPD指数。工作温度和PMV/PPD指标是热舒适的指标。因此,这些指标的知识可以让我们了解努比亚保险库的舒适状态。正是从这个角度来看,操作温度将由自适应方法确定。PMV/PPD指标采用Fanger模型确定。根据所获得的感觉状态,可以为热带地区的个人定义可接受的环境条件。作为替代方案,可以针对每种气候类型推荐最合适的建筑类型和建筑材料。
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Advances in Materials Science
Advances in Materials Science MATERIALS SCIENCE, MULTIDISCIPLINARY-
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