首页> 外文期刊>Journal of green building >MODELING AND FABRICATION OF A KINETIC SOLAR ENERGY-ABSORBING WINDOW AS A GREEN IDEA FOR SUSTAINABLE FUTURE BUILDINGS
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MODELING AND FABRICATION OF A KINETIC SOLAR ENERGY-ABSORBING WINDOW AS A GREEN IDEA FOR SUSTAINABLE FUTURE BUILDINGS

机译:动力学太阳能吸收窗的建模和制造作为可持续建筑的绿色理念

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INTRODUCTION ttttRenewable versus nonrenewable energy sources and their respective environmental impacts have emerged as preeminent industrial, as well as environmental concerns. Negotiation between policies that promote economic development with those promoting conservationism has yielded promising opportunities for the future. These opportunities engage frameworks focused on economic directives while simultaneously considering the need for environmental directives. Buildings present a unique opportunity for sustainability as they represent the largest proportion of consumed energy, relative to other consumers reliant on the energy grid system. The largest source of energy expenditure in a modern building is through the heating and cooling system which facilitates and maintains a comfortable living temperature. By effectively implementing innovative approaches focused on energy preservation and overall reduction of consumption, it is possible to meet emission reduction goals and mitigate other adverse environmental conditions.nttttWindows play a vital role in energy consumption and overall maintenance of a comfortable temperature. Understandably, the construction and fabrication of windows are the primary means through which optimized temperatures are achieved. This occurs not only through heat and energy transference but also by providing a protective differential between the inside of the building and the harsh weather conditions of the outdoors. As such, appropriate widow design strategies not only enhance comfort but reduce overall energy consumption. This study seeks to evaluate double-skin windows in order to offer a solution to excessive energy consumption. The windows work by generating a natural ventilation system in summer and then by producing hot air in winter for year-round comfort that is economical. Since current double-skin windows fail to effectively provide ventilation during warm seasons, a kinetic double-skin window was proposed to address this problem and optimize the heating and cooling functions of the building. The results of this research are applicable to modern construction and can be implemented into current design structures.
机译:tttt可再生能源与不可再生能源及其各自的环境影响已成为重要的工业和环境问题。促进经济发展的政策与促进保护主义的政策之间的谈判为未来带来了可喜的机遇。这些机会参与了侧重于经济指令的框架,同时考虑了对环境指令的需求。与依赖于能源网格系统的其他用户相比,建筑物代表了最大的能源消耗,因此为可持续发展提供了独特的机会。现代建筑中最大的能源支出来源是通过供暖和制冷系统,该系统有助于并保持舒适的居住温度。通过有效地实施专注于节能和总体降低能耗的创新方法,可以实现减排目标并减轻其他不利的环境条件。nttttWindows在能耗和总体维持舒适温度方面起着至关重要的作用。可以理解,窗户的构造和制造是实现最佳温度的主要手段。这不仅通过热和能量传递发生,而且还通过在建筑物内部与室外恶劣天气条件之间提供保护性差异来实现。因此,适当的寡妇设计策略不仅可以提高舒适度,而且可以降低整体能耗。这项研究旨在评估双层窗户,以便为过多的能耗提供解决方案。窗户的工作原理是在夏天产生自然通风,然后在冬天产生热空气,以实现全年经济的舒适性。由于当前的双层玻璃窗在温暖的季节无法有效地提供通风,因此提出了一种动态双层玻璃窗来解决该问题并优化建筑物的供暖和制冷功能。这项研究的结果适用于现代建筑,并可在当前的设计结构中实施。

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