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Absorption Chiller Air-conditioning System Utilizing Solar Energy

机译:吸收冷却器空调系统利用太阳能

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Since further energy saving for global environmental protection becomes a matter of urgency, promotion of introduction of renewable energy sources is required for realization of low-carbon society. Especially, in Southeast Asia countries, according to the economic growth, the measure for the reduction of the greenhouse gas and energy consumption is requested. We manufactured a single-double effect combined absorption chiller for "Solar air-conditioning system". And we construct the model plant at University of Indonesia and estimate its performance. We report the simulation and the evaluation of the effects of solar absorption chillers on the reduction of energy (=fuel gas) consumption in condition of the climate in Indonesia. To estimate the fuel gas reduction rate to the absorption chiller, the mathematical models of the system with solution flow we constructed and the insolation and ambient temperature in Indonesia were used in this simulation. By controlling the heat input to the high-temperature generator, the system is always operated at a constant cooling capacity. Based on the result, because the amount of insolation was comparatively stable, the fuel gas reduction rate remained high during daytime. Therefore, we confirmed the effect of the system that we suggested on the climate condition in Indonesia.
机译:由于全球环保的进一步节能成为紧迫性问题,因此实现了低碳社会所需的引入可再生能源。特别是,在东南亚国家,根据经济增长,要求减少温室气体和能源消耗的措施。我们为“太阳能空调系统”制造了一款单双效果组合吸收冷水机。我们在印度尼西亚大学建造了模型工厂,并估计其表现。我们报告了太阳能吸收冷水机构对印度尼西亚气候条件下减少能量(=燃气)消耗的仿真和评价。为了估算吸收冷却器的燃料减少率,在该模拟中使用了我们构建的溶液流量的系统的数学模型以及印度尼西亚的缺失和环境温度。通过控制高温发生器的热量,系统始终以恒定的冷却能力操作。基于结果,由于呈现量相对稳定,白天燃料减速率保持高。因此,我们确认了我们在印度尼西亚气候条件下建议的系统的影响。

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