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A review on the performance of geothermal energy pile foundation, its design process and applications

机译:地热能桩基础的性能,设计过程及应用综述

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Geothermal energy piles (GEPs) are an environmentally friendly energy source which utilise the low-grade heat energy present in the shallow earth surface to provide heating and/or cooling to the supported structures e.g. buildings. The heat is extracted from or injected into the ground through the circulation of heat carrier fluid that flows in energy loops attached to the reinforcement cage of the pile foundation elements. Utilising the GEP system to achieve building thermal comfort need has proven to be environmentally sustainable, economically viable, and with great social benefits. This paper presents an extensive review of literature on the principles behind the different design considerations, current available design standards, and government legislation for installing the GEP system. Furthermore, the behaviour of the energy pile under working loads was found to be influenced by the magnitude of the heat energy extraction and injection rate. In addition, case studies from several countries around the world including Austria, Switzerland, Australia, UK, Spain, Hong Kong, USA, Japan, China and South Korea which highlights the practicality of the system installation, its associated benefits, limitations and overall energy performance were presented and discussed. Moreover, factors such as thermal conductivity, thermal diffusivity, specific heat capacity, groundwater flow, soil moisture content, number and configuration of energy loops, pile length and diameter have positive implication on the energy performance of the system. This paper found that the GEP system, if appropriately designed and carefully installed, provides a viable alternative in terms of an energy source with a positive energy footprint on the environment.
机译:地热能堆(GEP)是一种环境友好的能源,它利用存在于浅层地表中的低级热能为支撑结构提供加热和/或冷却。建筑物。热量通过载热流体的循环从地面提取或注入地面,这些载热流体在附接到桩基础元件加固笼的能量环路中流动。利用GEP系统达到建筑物的热舒适性需求已被证明在环境上可持续,经济上可行并具有巨大的社会效益。本文对有关各种设计考虑因素背后的原理,当前可用的设计标准以及安装GEP系统的政府法规进行了广泛的文献综述。此外,发现能量堆在工作负载下的行为受热能提取和注入速率的大小影响。此外,来自奥地利,瑞士,澳大利亚,英国,西班牙,香港,美国,日本,中国和韩国等世界多个国家的案例研究突出了系统安装的实用性,相关的好处,局限性和整体能源消耗表现和讨论。而且,诸如热导率,热扩散率,比热容,地下水流量,土壤含水量,能量回路的数量和配置,桩长和直径等因素对系统的能量性能有积极影响。本文发现,GEP系统如果经过适当设计和精心安装,就对环境产生积极能源足迹的能源而言,是一种可行的替代方案。

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