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Renewable-based heat supply of multi-apartment buildings with varied heat demands

机译:多种热需求的多公寓建筑的可再生能源供热

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This study investigates the cost and primary energy use to heat an existing multi-apartment building in Sweden, before and after deep energy efficiency renovation, with different types of renewable-based systems. District heating systems of different scales as well as local heat production based on bioelectric boilers, ground-source bioelectric heat pumps and wood pellet boilers with or without solar heating are considered. The annual energy demand of the building, calculated hour by hour, with and without energy efficiency improvements, are matched against the renewable-based heat supply options by techno-economic modeling to minimize cost for each considered heat supply option. The results show that the availability of heating technologies at the building site and the scale of the building's heat demand influence the cost and the primary energy efficiency of the heating options. District heat from large-scale systems is cost efficient for the building without energy-efficiency improvement, whereas electric heat pumps and wood pellet boilers are more cost efficient when implementing energy-efficiency improvement. However, the cost difference is small between these alternatives and sensitive to the size of building. Large-scale district heating with cogeneration of power is most primary energy efficient while heat pumps and medium-scale district heating are nearly as efficient. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究调查了在进行深层能源效率改造之前和之后,使用不同类型的可再生能源系统为瑞典的一栋现有多公寓建筑供暖的成本和一次能源使用。考虑了具有不同规模的区域供热系统以及基于生物电锅炉,地源生物电热泵和带有或不带有太阳能加热的木屑锅炉的局部供热。通过技术经济模型将建筑物的年度能源需求(每小时计算一次,每小时进行计算),以提高和不提高能效,将其与基于可再生能源的供热方案相匹配,以使每种考虑的供热方案的成本降至最低。结果表明,建筑工地的供暖技术的可用性以及建筑物的供热需求规模会影响供暖方案的成本和主要能源效率。大规模系统的区域供热在不提高能效的情况下对于建筑物而言具有成本效益,而在实现能效改善时,电热泵和木屑锅炉则更具成本效益。但是,这些替代方案之间的成本差异很小,并且对建筑物的大小敏感。大规模区域供热与热电联产是最主要的能源效率,而热泵和中等规模的区域供热则几乎一样。 (C)2015 Elsevier Ltd.保留所有权利。

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