首页> 外文会议>ASME international conference on energy sustainability >DEVELOPMENT OF AN INTEGRATED BUILDING LOAD-GROUND SOURCE HEAT PUMP MODEL AS A TEST BED TO ASSESS SHORT- AND LONG-TERM HEAT PUMP AND GROUND LOOP PERFORMANCE
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DEVELOPMENT OF AN INTEGRATED BUILDING LOAD-GROUND SOURCE HEAT PUMP MODEL AS A TEST BED TO ASSESS SHORT- AND LONG-TERM HEAT PUMP AND GROUND LOOP PERFORMANCE

机译:开发一种集成的建筑地源热泵模型,作为评估短期和长期热泵和地面循环性能的试验床

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An integrated building load-ground source heat pump model is developed in this paper to serve as a test bed for assessing the short- and long-term performance of GSHP and HGSHP systems with vertical boreholes. The model uses the Simulink/Matlab environment to take advantage of their built-in functionality, allowing for full coupling of the component building load, heat pump, ground loop, and supplemental heat rejection models at every time step The building load model uses the HAMBASE thermal program which can model residential and commercial buildings. The heat pump model uses available data provided by GSHP manufacturers and sensible heat corrections to accurately model operation across a wide range of input conditions. The vertical borehole ground loop model is based on Eskillsons g-function model, but includes a one-dimensional numerical model by Xu to calculate the short-term thermal response of the borehole and ground. The supplemental heat rejection section allows various techniques to be tested. The integrated model captures system performance over a wide range of time scales from seconds to 10-20 years. Results of a 15-year simulation are presented to illustrate the different time scale information that reveal the slow degradation in system performance due to the effects of ground heating.
机译:本文建立了一个综合的建筑负载-地面源热泵模型,作为评估带有垂直井眼的GSHP和HGSHP系统的短期和长期性能的试验台。该模型使用Simulink / Matlab环境来利用其内置功能,从而可以在每个时间步骤完全耦合组件建筑负载,热泵,接地回路和补充散热模型。建筑负载模型使用HAMBASE可以对住宅和商业建筑进行建模的热程序。热泵模型使用了GSHP制造商提供的可用数据和合理的热量校正,可以在各种输入条件下准确地对运行进行建模。垂直井眼地下环路模型基于Eskillsons g函数模型,但包括Xu提出的一维数值模型,用于计算井眼和地面的短期热响应。补充排热部分允许测试各种技术。集成模型可以捕获从几秒钟到10-20年的各种时间范围内的系统性能。给出了15年仿真的结果,以说明不同的时间标度信息,这些信息揭示了由于地热的影响而导致系统性能的缓慢下降。

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