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SOLAR ENERGY CONTRIBUTION TO THE ENERGY DEMAND FOR AIR CONDITIONING SYSTEM IN AN OFFICE BUILDING UNDER TRIPOLI CLIMATE CONDITIONS

机译:三叶草气候条件下办公建筑空调系统的能源需求的太阳能贡献。

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The feasibility of solar assisted air conditioning in an office building under Tripoli weather conditions is investigated in this paper. A single-effect lithium bromide absorption cycle powered by means of flat-plate solar collectors was modeled in order to predict the potential of the solar energy share. The cooling load profile was generated by using an detailed hourly based program and Typical meteorological year for Tripoli. System performance and solar energy fraction were calculated by varying two major parameters (collector’s slope angle and collector area). The maximum solar fraction of 48% was obtained by means of 1400 m2 of collector surface area. Analysis of results showed that, besides the collector surface area, the main factors affecting the solar fraction were the local weather conditions (intensity of incident solar radiation) and the time of day when the plant was operated.
机译:本文研究了的黎波里天气条件下办公大楼中太阳能辅助空调的可行性。为了预测太阳能份额的潜力,对通过平板太阳能收集器提供动力的单效溴化锂吸收循环进行了建模。通过使用基于小时的详细程序和的黎波里典型气象年来生成制冷负荷曲线。通过改变两个主要参数(收集器的倾斜角和收集器面积)来计算系统性能和太阳能分数。借助1400平方米的集热器表面积可得到48%的最大太阳光份额。结果分析表明,除集热器表面积外,影响太阳能百分率的主要因素是当地的天气状况(入射太阳辐射的强度)和工厂运行的时间。

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