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Combined simulation of a deep ground source heat exchanger and an office building

机译:深层地源热交换器和办公楼的组合模拟

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It is analyzed, if and to which share the deep borehole heat exchanger (BHE) at RWTH Aachen University in its current state is capable of heating an office building located at its top, called SuperC. Furthermore, possible modifications to the BHE and to the hydraulic connection to the building's heating system are discussed. Models of the BHE and of the building are each validated with measurement data and than connected to each other to carry out system simulations for one heating period. It is found that the BHE in its current state can support the heating system by a notable share of the annual heating demand by supplying the low temperature heating systems of the building. An alternative system configuration and a different inner BHE pipe provide the opportunity of higher supply temperatures leading to a higher fraction of geothermal heating.
机译:可以分析亚琛工业大学(RWTH)当前状态下的深孔换热器(BHE)是否共享,并且可以共享位于其顶部的称为SuperC的办公楼。此外,还讨论了对BHE以及与建筑物供暖系统的液压连接的可能修改。 BHE和建筑物的模型均通过测量数据进行验证,然后相互连接以在一个供热期内进行系统仿真。发现当前状态的BHE通过为建筑物提供低温供暖系统,可以在每年供暖需求的显着份额中支持供暖系统。可选的系统配置和不同的内部BHE管提供了更高的供应温度,从而导致更高比例的地热加热的机会。

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