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ENERGY PERFORMANCE OF BOREHOLE THERMAL ENERGY STORAGE SYSTEMS

机译:钻孔热能存储系统的能量性能

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摘要

This paper describes the energy performance of an underground thermal energy storage system that consists of high efficiency heat pump and Borehole- Heat-Exchangers (BHE). The energy conservation concept of this system is operation of the heat pump at higher efficiency using the Water-Source-Heat- Pump (WSHP). For this concept, the seasonal storage system using BHE under the ground is adopted as a Borehole-Thermal-Energy-Storage-System (BTES) with high efficiency WSHP. It is expected to operate heat pump on advantageous temperature conditions rather than using ambient air as heat source or heat sink. This paper provides the simulation model and the energy analysis of various parameters such as heating and cooling load characteristic, borehole design, and operation system. A series of simulation was carried out for an office building in Japan. As the results it was made clear that BTES could decrease the energy consumption of the HVAC primary system about 20% compared with that of conventional system using Air-Source-Heat-Pump (ASHP).
机译:本文介绍了地下热能存储系统的能量性能,包括高效热泵和钻孔 - 热交换器(BHE)。该系统的节能概念是使用水源 - 热泵(WSHP)更高效率的热泵的运行。对于这种概念,采用了使用BHE下的季节性存储系统作为具有高效WSHP的钻孔 - 热能储存 - 系统(BTES)。预计将在有利的温度条件下操作热泵,而不是使用环境空气作为热源或散热器。本文提供了仿真模型和各种参数的能量分析,如加热和冷却载荷特性,钻孔设计和操作系统。在日本的办公楼进行了一系列模拟。结果,与使用空气源 - 热泵(ASHP)的传统系统相比,BTES可以降低HVAC初级系统的能量消耗约20%。

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