评估通过浅层地热供暖和制冷网络共享能源的潜力

IF 9 1区 工程技术 Q1 ENERGY & FUELS Renewable Energy Pub Date : 2024-06-28 DOI:10.1016/j.renene.2024.120893
Marwan Abugabbara, Nischal Chaulagain, Ilia Iarkov, Ulla Janson, Saqib Javed
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引用次数: 0

摘要

浅层地热在提供无排放的供暖和制冷方面具有巨大潜力,因此在供暖和制冷网络的过渡中具有举足轻重的作用。本文介绍了一种新颖的供热和制冷网络,该网络可在每栋楼的分散井场之间共享地热能。该系统综合了独立能源系统和集中能源系统的优点,可实现高效率,并确保安全的供热和制冷供应。为了研究预期的系统性能,演示了一个仿真模型,并将其应用于一个实际案例研究,该案例研究包括位于瑞典马尔默的三座新建筑。模拟结果表明,与独立系统相比,通过地热能源共享建立的协同效应可将购买的电能减少 23%,并将供暖和制冷的年度性能系数分别提高 31% 和 35%。
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Assessing the potential of energy sharing through a shallow geothermal heating and cooling network

Shallow geothermal offers great potential to supply emission-free heating and cooling and has therefore a pivotal role in the transition of heating and cooling networks. This paper presents a novel heating and cooling network with possible geothermal energy sharing between decentralized borefields located at each building level. The system consolidates the benefits of both standalone and centralized energy systems to attain high-efficiency gains and ensure a secure heating and cooling supply. To study the expected system performance, a simulation model is demonstrated and applied to a real-world case study consisting of three new buildings located in Malmö, Sweden. Simulation results revealed that the established synergy through geothermal energy sharing can reduce the purchased electric energy by 23 % and increase the annual performance factors for heating and cooling by 31 and 35 %, respectively compared to the standalone system.

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来源期刊
Renewable Energy
Renewable Energy 工程技术-能源与燃料
CiteScore
18.40
自引率
9.20%
发文量
1955
审稿时长
6.6 months
期刊介绍: Renewable Energy journal is dedicated to advancing knowledge and disseminating insights on various topics and technologies within renewable energy systems and components. Our mission is to support researchers, engineers, economists, manufacturers, NGOs, associations, and societies in staying updated on new developments in their respective fields and applying alternative energy solutions to current practices. As an international, multidisciplinary journal in renewable energy engineering and research, we strive to be a premier peer-reviewed platform and a trusted source of original research and reviews in the field of renewable energy. Join us in our endeavor to drive innovation and progress in sustainable energy solutions.
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