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SIMULATION OF A LiBr ABSORPTION SOLAR COOLING SYSTEM AND GLOBAL WARMING IMPACT ESTIMATION

机译:仿真LIMB吸收太阳能冷却系统和全球变暖冲击估计

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The objective of this paper is to present the modelling of a complete lithium bromide (LiBr)-water absorption system and perform a global warming impact assessment. The system is modelled with the TRNSYS simulation program and the typical meteorological year file containing the weather parameters for a hot climate (Nicosia, Cyprus). Initially the LiBr cooler is modelled in order to derive the polynomial equations to be used in the TRNSYS deck file. These equations relate the unit capacity with the solution heat exchanger exit temperature, the coefficient of performance and the generator heat. The system considered employs a compound parabolic type collector 15 m{sup}2 in area, sloped at 30° and a storage tank size of 600 lt. Subsequently the global warming impact of the system is evaluated by estimating the total equivalent warming impact (TEWI) of the system in comparison to a system utilising a conventional R-22 air conditioner. The TEWI of the solar assisted system is about 107,200 kg CO{sub}2 and is lower than that of a conventional R-22 air conditioner system, which is 132,800 kg of CO{sub}2.
机译:本文的目的是介绍完整的溴化锂(LIBR) - 水吸收系统的建模,并进行全球变暖的影响评估。该系统采用TRNSYS仿真程序和包含热气候(尼科西亚,塞浦路斯)的天气参数的典型气象年度文件。最初,Libr冷却器被建模,以便导出在Trnsys Deck文件中使用的多项式方程。这些等式涉及溶液热交换器出口温度,性能系数和发电机热量的单元容量。所考虑的系统在面积中使用化合物抛物线型收集器15m {sup} 2,在30°倾斜,储存罐尺寸为600°。随后通过估计系统的总等效变暖冲击(TEWI)与利用传统的R-22空调的系统进行评估,评估系统的全球变暖影响。太阳能辅助系统的TEWI约为107,200 kg CO {SUB} 2,低于传统的R-22空调系统,其是132,800kg CO {} 2。

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