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Modelling, simulation and warming impact assessment of a domestic-size absorption solar cooling system

机译:家用吸收式太阳能冷却系统的建模,模拟和变暖影响评估

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摘要

In this paper the modelling, simulation and total equivalent warming impact (TEWI) of a domestic-size absorption solar cooling system is presented. The system consists of a solar collector, storage tank, a boiler and a LiBr-water absorption refrigerator. Experimentally determined heat and mass transfer coefficients were employed in the design and costing of an 11 kW cooling capacity solar driven absorption cooling machine which, from simulations, was found to have sufficient capacity to satisfy the cooling needs of a well insulated domestic dwelling. The system is modelled with the TRNSYS simulation program using appropriate equations predicting the performance of the unit. The final optimum system consists of 15 m~2 compound parabolic collector tilted at 30° from horizontal and 600 1 hot water storage tank. The total life cycle cost of a complete system, comprising the collector and the absorption unit, for a lifetime of 20 years will be of the order of C£ 13,380. The cost of the absorption system alone was determined to be C£ 4800. Economic analysis has shown that for such a system to be economically competitive compared to conventional cooling systems its capital cost should be below C£ 2000. The system however has a lower TEWI being 1.2 tims smaller compared to conventional cooling systems.
机译:本文介绍了一个家用尺寸的吸收式太阳能冷却系统的建模,仿真和总当量暖化影响(TEWI)。该系统由一个太阳能收集器,储水箱,一个锅炉和一个溴化锂吸水制冷机组成。实验确定的传热系数和传热系数被用于11 kW制冷量太阳能驱动吸收式冷却机的设计和成本估算中,该机通过模拟发现具有足够的能力来满足隔热良好的住宅的冷却需求。使用TRNSYS仿真程序对系统进行建模,并使用适当的方程式预测设备的性能。最终的最佳系统是由15 m〜2的复合抛物线收集器(与水平方向倾斜30°)和600 1的热水储罐组成。包括收集器和吸收单元在内的整个系统在20年的使用寿命中的总生命周期成本约为13380 C £。仅吸收系统的成本确定为C £ 4800。经济分析表明,与常规冷却系统相比,这种系统在经济上具有竞争力,其资本成本应低于C £ 2000。但是,该系统的TEWI较低。与传统的冷却系统相比要小1.2 tims。

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