使用浅层地热综合能源系统降低建筑环境中的能源需求:第2部分。建筑供暖用混合地源热泵

K. Balaji, Vishaldeep Sharma
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引用次数: 2

摘要

本研究旨在寻找有效整合浅层地热能(SGE)的各种可能机会,以减少建筑环境中的能源需求并减少与之相关的排放。综合综述的第一部分和第二部分综述了利用地源热泵直接利用SGE的研究进展。从广泛的回顾中发现,需要混合地源热泵来避免地面热平衡和峰值需求。混合地源热泵可以根据当地的气候条件和能源需求的平衡,采用多种补充热源和吸热汇。重点介绍了生物质能、太阳能(PV、PVT、集热器)、相变材料、微型燃气轮机、吸收式热泵等子系统与地源热泵在供热应用中的集成。这篇全面的综述第三部分强调了最近的研究成果和混合地源热泵进一步研究和发展的潜在差距
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Energy demand reduction in the built environment using shallow geothermal integrated energy systems: Part II – Hybrid ground source heat pump for building heating
The research collection aims at finding the various possible opportunities for the effective integration of shallow geothermal energy (SGE) to decrease the energy demand in the built environment and to reduce emission associated with it. The direct utilization of SGE using a ground source heat pump (GSHP) has been reviewed in comprehensive review part I and part II. From the extensive review, it is found that the hybrid GSHP is needed to avoid ground thermal imbalance and peak demand. Hybrid GSHP can adopt various supplemental heat sources and sinks according to the local climatic conditions and the balance of energy demands. The primary focus on the integration of subsystems such as biomass, solar energy (PV, PVT, and collector), phase change material, micro gas turbine, and absorption heat pump with GSHP is presented for heating application. This comprehensive review part III highlights the recent research findings and a potential gap in hybrid GSHP for further research and developments
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