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A novel hybrid polygeneration system supplying energy and desalinated water by renewable sources in Pantelleria Island

机译:潘泰莱里亚岛的新型混合多联产系统通过可再生资源提供能源和淡化水

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In this paper a thermoeconomic analysis of a novel hybrid Renewable Polygeneration System connected to a district heating and cooling network is presented. The plant is powered simultaneously by solar and geothermal sources, producing electricity, desalinated water, heat and cooling energy, System layout includes Parabolic Through Collector (PTC) field, geothermal wells, Organic Rankine Cycle (ORC) unit and a Multi-Effect Desalination (MED) system. Cooling and thermal demands are calculated by suitable building dynamic simulation models, calibrated for Pantelleria Island. Electrical demand is obtained by measured data. A detailed control strategy has been implemented in order to prevent any heat dissipation, to match the appropriate operating temperature levels in each component, to avoid a too low temperature of geothermal fluid reinjected in the wells and to manage the priority of space heating and cooling process. A 1-year dynamic simulation has been performed and results analyzed on daily, monthly and yearly basis. The system achieved an SPB equal to 8.50 and it resulted capable to cover the energy demands of a small community. Moreover, the plant is capable to cover the fresh water demand of the Pantelleria Island. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在本文中,对连接到区域供热和制冷网络的新型混合可再生多联产系统进行了热经济分析。该工厂由太阳能和地热资源同时供电,产生电力,淡化水,热能和冷却能。系统布局包括抛物线型集热器(PTC)场,地热井,有机朗肯循环(ORC)单元和多效脱盐( MED)系统。制冷和热量需求是通过为Pantelleria Island校准的合适的建筑动态模拟模型计算得出的。电力需求是通过测量数据获得的。为了防止热量散发,匹配每个组件中的适当工作温度水平,避免回注到井中的地热流体温度过低以及管理空间加热和冷却过程的优先级,已实施了详细的控制策略。 。进行了为期一年的动态仿真,并且每天,每月和每年对结果进行分析。该系统达到的SPB等于8.50,因此能够满足小型社区的能源需求。此外,该工厂能够满足Pantelleria岛的淡水需求。 (C)2017 Elsevier Ltd.保留所有权利。

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