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Effects of solar field design on the energy, environmental and economic performance of a solar district heating network serving Italian residential and school buildings

机译:太阳能场设计对服务于意大利住宅和学校建筑的太阳能区域供热网络的能源,环境和经济绩效的影响

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In this paper a centralized hybrid renewable district heating system based on the exploitation of solar energy and integrated with a seasonal borehole thermal energy storage is investigated with reference to a 5-year period by means of the dynamic simulation software TRNSYS. The plant is devoted to satisfy the energy demand for heating purposes and domestic hot water (DHW) production of a small-scale district composed of six residential buildings and three schools under the climatic conditions of Naples (south of Italy).Four configurations of the solar field consisting of different combinations of solar thermal collectors (SCs) and photovoltaic/thermal panels (PVTs) are analyzed upon varying both (i) the technology of SCs (flat plate or evacuated tube heat pipe) as well as (ii) the control logic of solar circuit (operation with constant or variable flow rate of heat carrier fluid).The simulation results have been compared with those associated to a conventional decentralized heating system in terms of primary energy consumption, carbon dioxide equivalent emissions and operating costs in order to assess (i) the potential energy, environmental and economic benefits as well as (ii) the impact of solar field design on the overall system performance. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文利用动态模拟软件TRNSYS,研究了基于太阳能利用并结合季节性钻孔热能存储的集中式混合可再生区域供热系统,该系统以五年为一个时期。该工厂致力于满足那不勒斯(意大利南部)气候条件下由六个住宅楼和三所学校组成的小规模区域供热和生活热水(DHW)的能源需求。通过改变(i)SC的技术(平板式或真空管式热管)以及(ii)控件,来分析由太阳能集热器(SC)和光伏/热面板(PVT)的不同组合组成的太阳能场太阳能回路的逻辑(在载流子流量恒定或可变的情况下运行)。已将模拟结果与常规分散式供暖系统的主要能耗,二氧化碳当量排放量和运行成本进行了比较,以便评估(i)潜在的能源,环境和经济效益,以及(ii)太阳场设计对整体系统性能的影响。 (C)2019 Elsevier Ltd.保留所有权利。

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