Investigation of a Solar Thermal Driven Refrigerated Warehouse in Tripoli-Libya using TRNSYS

M. BenAbeid
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Abstract

This paper, illustrates a design and simulation of a solar powered absorption refrigeration system preserves food above freezing point. The main system is modified from a commercial conventional system located at Tajoura, Libya. The target is to design and operate the system at high solar fraction and efficiency. The simulation is performed by TRNSYS to evaluate the annual thermal performance of the solar system that consists of 50-kW absorption chiller producing cold for three refrigerated rooms. The model could be classified into two main parts; refrigeration load model and solar powered refrigeration system model. The results demonstrated that the optimum system achieves 51% solar fraction consists of 48 m2 of high performance evacuated tubes solar collectors and 5000-litre thermal storage tank, in order to power a 50-kW absorption chiller that offers cold for three refrigerated rooms of vegetables.
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利用TRNSYS对利比亚的黎波里某太阳能热驱动冷藏库进行了调查
本文介绍了一种太阳能吸收式制冷系统的设计与仿真,该系统可将食品保存在冰点以上。主要系统是由位于利比亚Tajoura的商业常规系统改造而来。目标是设计和运行系统在高太阳能比例和效率。由TRNSYS进行模拟,以评估由50 kw吸收式制冷机组成的太阳能系统的年热性能,该系统为三个冷藏室提供冷量。该模型可分为两个主要部分;制冷负荷模型和太阳能制冷系统模型。结果表明,最佳系统实现了51%的太阳能比例,包括48平方米的高性能真空管太阳能集热器和5000升的储热罐,为一个50千瓦的吸收式制冷机提供动力,为三个蔬菜冷藏室提供冷量。
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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