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Solar Energy to Drive Absorption Cooling Systems Suitable for Small Building Applications

机译:太阳能驱动适合小型建筑应用的吸收式冷却系统

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摘要

Air conditioning systems have a major impact on energy demand. With fossil fuels fast depleting, it is imperative to look for cooling systems that require less high-grade energy for their operation. In this context, absorption cooling systems have become increasingly popular in recent years from the viewpoints of energy and environment. Two types of the absorption chillers, the single effect and the half-effect systems, can operate using low temperature hot water. This paper presents the simulation results and an overview of the performance of low capacity single stage and half-effect absorption cooling systems, suitable for residential and small building applications. The primary heat source is solar energy supplied from flat plate collectors. The complete systems (solar collectors and absorption cooling system) were simulated using a developed software program. The energy and exergy analysis is carried out for each component of the two systems. When evaporator temperature is maintained constant at 5 C and the condenser temperature is fixed at 28 C, 32 C and 36 C respectively the percentage of the used energy covered by solar collectors and the percentage of auxiliary heating load were calculated versus time of day.
机译:空调系统对能源需求有重大影响。随着化石燃料的快速消耗,必须寻找冷却系统,这些冷却系统的运行所需的高级能源较少。在这种情况下,从能源和环境的角度来看,近年来吸收式冷却系统变得越来越流行。两种吸收式制冷机(单效和半效系统)可以使用低温热水运行。本文介绍了模拟结果,并概述了适用于住宅和小型建筑的低容量单级和半效应吸收式制冷系统的性能。主要热源是从平板集热器提供的太阳能。使用开发的软件程序对整个系统(太阳能收集器和吸收式冷却系统)进行了仿真。对两个系统的每个组件都进行了能量和火用分析。当蒸发器温度保持恒定在5°C,冷凝器温度固定在28°C,32°C和36°C时,分别计算一天中太阳能收集器覆盖的用能百分比和辅助加热负荷的百分比。

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    Gomri R.;

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  • 年度 2010
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