Energy efficiency and building environment

A. Omer
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Abstract

With the environmental protection posing as the number one global problem, man has no choice but reducing his energy consumption, one way to accomplish this is to resort to passive and low-energy systems to maintain thermal comfort in buildings. The conventional and modern designs of wind towers can successfully be used in the hot arid regions to maintain thermal comfort (with or without the use of ceiling fans) during all hours of the cooling season, or a fraction of it. Climatic design is one of the best approaches to reduce the energy cost in buildings. Proper design is the first step of defence against stress of climate. Buildings should be designed according to climate of the site for reducing the need of mechanical heating or cooling hence maximum natural energy can be used for creating pleasant environment inside the built envelope. Technology and industry progress of the last decade diffused electronic and informatics’ devices in many human activities and now appear also in building construction. The utilisation and operating opportunities components, increase the reduction of heat losses by varying the thermal insulation, optimise the lighting distribution with louver screens and operate mechanical ventilation for coolness in indoor spaces. In addiction to these parameters the intelligent envelope can act for security control and became an important part of the building demotic revolution. Application of simple passive cooling measure is effective in reducing the cooling load of buildings in hot and humid climates. 43% reductions can be achieved using a combination of well-established technologies such as glazing, shading, insulation, and natural ventilation. More advanced passive cooling techniques such as roof pond, dynamic insulation, and evaporative water jacket need to be considered more closely. The building sector is a major consumer of both energy and materials worldwide, and the consumption is increasing. Most industrialised countries are in addition becoming more and more dependent on external supplies of conventional energy carriers, i.e., fossil fuels. Energy for heating and cooling can be replaced by new renewable energy sources. New renewable energy sources, however, are usually not economically feasible compared with the traditional carriers. In order to achieve the major changes needed to alleviate the environmental impacts of the building sector, it is necessary to change and develop both the processes in the industry itself, and to build a favourable framework to overcome the present economic, regulatory and institutional barriers.
能源效率和建筑环境
随着环境保护成为全球头号问题,人类别无选择,只能减少能源消耗,实现这一目标的一种方法是采用被动式和低能耗系统来保持建筑物的热舒适。传统的和现代的风塔设计可以成功地用于炎热的干旱地区,在冷却季节的所有时间或一小部分时间内保持热舒适(使用或不使用吊扇)。气候设计是降低建筑能源成本的最佳方法之一。合理的设计是抵御气候压力的第一步。建筑应根据场地的气候进行设计,以减少对机械加热或冷却的需求,从而最大限度地利用自然能源在建筑围护结构内创造宜人的环境。近十年来的技术和工业进步使电子和信息设备广泛应用于人类的许多活动中,现在也出现在建筑施工中。利用和操作机会组件,通过改变隔热材料来减少热损失,通过百叶屏幕优化照明分布,并在室内空间运行机械通风以保持凉爽。凭借这些参数,智能围护结构可以起到安全控制的作用,成为建筑革命的重要组成部分。在湿热气候条件下,采用简单的被动制冷措施可以有效地降低建筑的冷负荷。通过结合玻璃、遮阳、隔热和自然通风等成熟技术,可以实现43%的减排。更先进的被动冷却技术,如屋顶池、动态保温和蒸发水套需要更密切地考虑。建筑行业是世界范围内能源和材料的主要消费者,并且消费量正在增加。此外,大多数工业化国家越来越依赖常规能源载体,即矿物燃料的外部供应。用于加热和冷却的能源可以被新的可再生能源所取代。然而,与传统载体相比,新的可再生能源通常在经济上不可行。为了实现减轻建筑部门对环境影响所需的重大变革,必须改变和发展该行业本身的进程,并建立一个有利的框架,以克服目前的经济、管制和体制障碍。
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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