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Nanocoating: An Energy Efficient Solution Towards Reducing Buildings Electrical Consumption In The State Of Kuwait

机译:纳米涂料:科威特州降低建筑物电耗的节能解决方案

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Energy consumption evaluation was performed on buildings, owned by Kuwait's ministry of public housing, before and after modifying the thermo-optical properties of the existing glazing. The investigated building for this study is located in the State of Kuwait and was selected to highlight the effect of glaze coating on the overall energy efficiency using the country geographical conditions. A simulation software, called DesignBuilder, was used to construct and model the selected building and estimate its electricity consumption after applying different types of glazing modifications. This includes employing commercial coatings and films on the original building double-glaze glass in the form of a single layer nanocoating, multi-layer nanocoating, nanoceramic film, and 30% tented film. Furthermore, the parameters of the original and modified glazes, such as Solar heat gain coefficient, light transmission, and solar transmission value, were obtained experimentally then used in DesignBuilder to simulate the building annual energy consumption. The results indicated that, the original building designed had an annual consumption of about 62.2 MWh, while the multi-layer nanocoating case showed a total consumption of 56.3 MWh. Comparing the two cases, the overall energy saving achieved by the multi-layer nanocoating scenario was roughly 9.5%. The present study confirms that using nanocoatings can be beneficial toward reducing building overall energy consumption, and thus can be considered as an economical solution for the State of Kuwait.
机译:在修改现有玻璃的热光学特性之前和之后,对科威特公共住房部拥有的建筑物进行了能耗评估。这项研究的受调查建筑物位于科威特州,被选中以突出使用国家地理条件的釉料涂层对整体能源效率的影响。使用名为DesignBuilder的仿真软件对选定的建筑物进行构建和建模,并在应用不同类型的玻璃修改后估算其用电量。这包括以单层纳米涂层,多层纳米涂层,纳米陶瓷膜和30%倾斜膜的形式在原始建筑双层釉玻璃上使用商业涂料和膜。此外,还通过实验获得了原始釉料和改性釉料的参数,例如太阳热增益系数,光透射率和太阳透射率值,然后将其用于DesignBuilder中以模拟建筑物的年能耗。结果表明,原始建筑物的设计年耗电量约为62.2兆瓦时,而多层纳米涂层案例显示的总耗电量为56.3兆瓦时。比较这两种情况,多层纳米涂层方案可实现的总体节能量约为9.5%。本研究证实,使用纳米涂料可以降低建筑物的整体能耗,因此可以认为是科威特国的一种经济解决方案。

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