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Ground heat exchanger thermal imbalance prevention using dynamic long-term ground temperature predictions

机译:使用动态长期地面温度预测来防止地面换热器热不平衡

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ABSTRACT The authors present the development of a novel software and hardware package that dynamically predicts future ground heat exchanger temperatures to avoid thermal imbalance and future ground source heat pump system failure. In this study, an energy meter was installed on the ground heat exchanger of an office building and software was created on a remote server that collected the measured data. The future ground temperature was dynamically calculated, and the prototype was integrated with the building automation system to prevent future ground source heat pump system failure. The results showed that the building was cooling dominate and if the current mechanical system operation continued, the system would become inefficient in 16?years from high inlet temperatures to the heat pumps. A control sequence was developed for mitigating ground heat exchanger failure on the studied building. It was also determined by adjusting the set-point temperature of the make-up air unit from 12.8°C to 4.8°C, the amount of heating performed by the ground source heat pump system would increase to 49,230 kWh which maintained the calculated 20-year ground heat exchanger temperature below 32°C. The prototype developed in this paper is critical for maintaining an efficient ground source heat pump system and adequate ground heat exchanger temperatures. The outcome of this study provides the solution of ensuring a successful adoption of sustainable green technology on a large scale and eliminates ground source heat pump system failure due to thermal imbalance.
机译:摘要 作者介绍了一种新型软硬件软件包的开发,该软件包可以动态预测未来的地面换热器温度,以避免热不平衡和未来的地面源热泵系统故障。在这项研究中,在办公楼的地面热交换器上安装了电能表,并在远程服务器上创建了软件来收集测量数据。动态计算未来地温,并将样机与楼宇自控系统集成,防止未来地源热泵系统故障。结果表明,该建筑以冷却为主,如果目前的机械系统继续运行,该系统将在16年内从高入口温度到热泵变得效率低下。开发了一种控制序列,以减轻所研究建筑物的地面热交换器故障。通过将补充空气单元的设定点温度从12.8°C调整到4.8°C,地源热泵系统执行的热量将增加到49,230 kWh,从而将计算出的20年地面热交换器温度保持在32°C以下。 本文开发的原型对于维持高效的地源热泵系统和足够的地热交换器温度至关重要。本研究结果为确保大规模成功采用可持续绿色技术提供了解决方案,并消除了由于热不平衡导致的地源热泵系统故障。

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