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Impact of district heating and groundwater heat pump systems on the primary energy needs in urban areas

机译:区域供热和地下水热泵系统对城市一次能源需求的影响

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摘要

This work is focused on the planning of rational heating systems for urban areas. From the sustainability viewpoint, district heating is an important option to supply heat to the users in urban areas. The energy convenience of such option depends on the annual energy request, the population density and the efficiency in heat production. Among the alternative technologies, geothermal heat pumps (both open loop and closed loop heat pumps) play a crucial role. This paper aims to propose a procedure to select which users in an urban area should be connected with a district heating network and which ones should be heated through an alternative technology, in order to reach a globally optimal system from the energy viewpoint. The procedure proposes district heating as the initial choice for all the users. The users are then progressively disconnected to the network, according with the primary energy required to supply them heat, and the alternative technology is considered for disconnected users. Here, ground water heat pump is considered as the alternative technology. The total primary energy request is assumed as the objective function to be minimized. To reach this result, the exergetic cost of heat supplied through heat pumps system must be evaluated. Such evaluation is not trivial, as it must include proper analysis of both the district heating network and the alternative system. In the case of densely populated areas, an additional consideration is necessary: the subsurface thermal degradation caused by heat pump installations may affect the performances of surrounding installations. This impact is calculated through a thermo-fluid dynamic model of the subsurface. The application to an Italian town is considered as a test case. The optimal configuration of the overall urban heating system is obtained. This configuration corresponds to the minimum primary energy request to supply heat to all the users (those connected to the network and those using an alternative heating system).
机译:这项工作的重点是规划城市合理的供热系统。从可持续性的角度来看,区域供热是向城市用户供热的重要选择。这种选择的能源便利性取决于年度能源需求,人口密度和热产生效率。在替代技术中,地热热泵(开环和闭环热泵)起着至关重要的作用。本文旨在提出一种程序,从城市的能源角度出发,选择城市中哪些用户应与区域供热网络相连接以及哪些用户应通过替代技术供热,以达到全球最佳的系统。该程序建议将区域供热作为所有用户的初始选择。然后,根据向用户提供热量所需的主要能量,逐步将用户断开与网络的连接,并为断开连接的用户考虑使用替代技术。在这里,地下水热泵被认为是替代技术。假设总的一次能源需求是要最小化的目标函数。为了达到这个结果,必须评估通过热泵系统提供的热能成本。这种评估并非无关紧要,因为它必须包括对区域供热网络和替代系统的适当分析。在人口稠密的地区,还需要额外考虑:由热泵设备引起的地下热降解可能会影响周围设备的性能。通过地下的热流体动力学模型计算该影响。将该应用程序应用于意大利小镇被视为测试案例。获得整个城市供热系统的最佳配置。此配置对应于向所有用户(连接到网络的用户和使用备用供暖系统的用户)供热的最小一次能源需求。

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