首页> 外文会议>2016 International Conference on Cogeneration, Small Power Plants and District Energy >Organic Rankine Cycle power generation from industrial waste heat recovery integrated with solar hot water system by using vapor compression heat pump as heating booster in Thailand
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Organic Rankine Cycle power generation from industrial waste heat recovery integrated with solar hot water system by using vapor compression heat pump as heating booster in Thailand

机译:泰国采用蒸汽压缩热泵作为加热助推器,通过工业废热回收与太阳能热水系统集成,实现有机朗肯循环发电

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摘要

In this study, a novel concept of Organic Rankine Cycle (ORC) power generation from industrial waste heat recovery (IWHR) combined with solar hot water system (SHWS) by using vapor compression heat pump (VCHP) as heating booster was proposed. The system is mathematically modeled and simulated to evaluate the economics and the environmental impact of the system. The weather condition of Phitsanulok, Thailand was taken as the input data of the simulations. The results of the evaluation showed that the more number of solar collectors is, the more electricity the system can generate. For instant, when the number of the solar collectors is 700 units, the system can produce 47.0 MWh/Year of electricity with the Levelized Electricity Cost (LEC) and payback period of 0.098 USD/kWh, and 22.5 Year, respectively. In term of the environmental impact analysis, the system can reduce the CO2 emission by approximately 25.8 Ton CO2 eq./Year.
机译:在这项研究中,提出了一种新的概念,即利用蒸气压缩热泵(VCHP)作为加热助推器,将工业废热回收(IWHR)与太阳能热水系统(SHWS)结合产生有机朗肯循环(ORC)。对系统进行数学建模和仿真,以评估系统的经济性和环境影响。将泰国彭世洛的天气状况作为模拟的输入数据。评估结果表明,太阳能收集器的数量越多,系统产生的电力就越多。即时而言,当太阳能集热器的数量为700台时,该系统可以产生47.0 MWh /年的电力,而平均电费(LEC)和投资回收期分别为0.098 USD / kWh和22.5年。就环境影响分析而言,该系统每年可减少约25.8吨二氧化碳当量/年的二氧化碳排放量。

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