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Cooling and recovery of heat from underground railway tunnels for district heating

机译:地下铁路隧道的冷却和回收用于区域供热

摘要

Temperatures in London’s underground railway tunnels are rising year on year and new energy efficient, cooling solutions are needed. The MICAH (Metropolitan Integrated Cooling and Heating) project involves investigating the feasibility of combining cooling and ventilation of London’s underground tunnels with recovering and reuse of the waste heat to supply a district heating network (DHN). A suitable site from the underground network has been identified, close to a DHN, to which the heat can be transferred. The temperatures of the ventilation shaft air are quite low i.e.17-28°C, so the recovered heat needs to be upgraded e.g. to 70°C using a heat pump, before delivering it to the DHN. A model has been developed which incorporates the proposed design and operational parameters for the combined cooling and heat recovery system, together with specifications for the heat pump and the equipment needed to transfer the heat to the DHN. The model permits evaluation of the performance of the system under a wide range of design, operating and environmental conditions, and for a number of configurations, enabling the model to be used to investigate the potential for waste heat recovery at a range of sites. Preliminary results from the model are presented and the potential benefits, limitations, and the effects of key design and operating parameters are discussed.
机译:伦敦地下铁路隧道的温度逐年上升,因此需要新的节能,冷却解决方案。 MICAH(大都市综合制冷和供热)项目涉及调查将伦敦地下隧道的制冷和通风与废热的回收和再利用相结合以提供区域供热网络(DHN)的可行性。已经确定了地下网络中靠近DHN的合适站点,可以将热量传递到该站点。通风井空气的温度非常低,即17-28°C,因此需要提高回收的热量,例如在将其输送到DHN之前,先使用热泵将其加热至70°C。已开发出一个模型,该模型结合了组合的冷却和热回收系统的建议设计和运行参数,以及热泵和将热量传递到DHN所需设备的规格。该模型允许在各种设计,操作和环境条件下以及针对多种配置的情况下评估系统的性能,从而使该模型可用于调查许多场所的废热回收潜力。给出了该模型的初步结果,并讨论了潜在的好处,局限性以及关键设计和操作参数的影响。

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