Optimization Study of Parametric Thermal Bimetal Material Module for Green Building in Tropical Humid Climate

Syarifah Ismailiyah Al Athas
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引用次数: 2

Abstract

The largest energy consumption that we use is the consumption of electrical energy in terms of meeting the lighting needs and building air conditioning requirements (World Energy Consumption, 2016). According to the Ministry of Energy and Mineral Resources (2017), Indonesia’s largest energy use in commercial buildings is for flight systems (63%), lighting systems (20%), vertical transportation (7%) electronic devices (10%). The use of energy in the fulfillment of excessive needs result in worsening conditions on earth. Data can be a reflection of how the condition of the earth that we live at this time. Energy savings should be made to reduce the damage already occurring on this earth such as electricity usage savings, optimization of use of materials, the use of motor vehicles that cause air pollution, and others. The way that can be used to reduce artificial energy use is to utilize the existing passive building design such as the use of solar energy that can be maximized during the day, so that the use of electrical energy for lamps and artificial air conditioning. reduced. In addition, it can also be considered the optimal use of wind direction and speed that can suppress the use of Air Conditioner (AC) in excess. Building envelope with bimetal thermal material module application is part of kinetic architecture via biomimicry approach. Kinetic architecture is a concept where buildings are designed to allow parts of buildings to move without compromising the unity of the structural system. Approaches that can be applied in green building design is by optimizing bimetal material module that utilizes the thermal coefficient of a material. With this approach, building envelopes are improvised so that they can adapt to the existing environment. This research take location of case study in Kampung Juminahan, Yogyakarta, Indonesia which has characters of comunal housing.
热带湿润气候下绿色建筑参数化热双金属材料模块优化研究
就满足照明需求和建筑空调要求而言,我们使用的最大能源消耗是电能消耗(世界能源消耗,2016)。根据能源和矿产资源部(2017年)的数据,印尼商业建筑中最大的能源使用是飞行系统(63%)、照明系统(20%)、垂直运输(7%)电子设备(10%)。为了满足过度需求而使用能源会导致地球状况恶化。数据可以反映我们此时的地球状况。应该节约能源,以减少地球上已经发生的损害,如节约用电、优化材料使用、使用造成空气污染的机动车辆等。减少人工能源使用的方法是利用现有的被动式建筑设计,例如在白天最大限度地使用太阳能,从而将电能用于灯具和人工空调。减少。此外,还可以认为是对风向和风速的最佳利用,可以抑制空调(AC)的过度使用。双金属热材料模块应用的建筑围护结构是通过仿生学方法实现的动力学建筑的一部分。动力建筑是一个概念,在这个概念中,建筑物的设计允许建筑物的部分移动,而不影响结构系统的统一性。可应用于绿色建筑设计的方法是通过优化利用材料热系数的双金属材料模块。采用这种方法,建筑围护结构是临时搭建的,以便它们能够适应现有环境。本研究以印尼日惹的Kampung Juminahan为个案研究地点,该地区具有社区住房的特点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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