基于地面源热单元的地面热交换器运行限制的实验研究
1Shandong Institute of Petroleum and Chemical Technology, Donging, Shandong, China.
PloS one
|March 11, 2025
概括
地面热交换器 (GHEs) 对于地面源热 (GSHP) 系统至关重要. 由于温度限制,不足的温室气体可以导致运行限制和效率降低.
科学领域:
- 地热能源系统 地热能源系统
- 建筑物的能源效率.
- 热传递是一种热传递.
背景情况:
- 地底热交换器 (GHEs) 是地底源热 (GSHP) 系统的关键组件.
- GHE的表现与GSHP的运营效率直接相关.
- GHE流体温度受到GSHP单位保护温度值的限制,影响与土壤的热交换.
研究的目的:
- 为了研究U形GHE的传热性能.
- 在温度极限条件下分析冷却能力和室内负载之间的关系.
- 评估GHE数对系统效率和容量的影响.
主要方法:
- 建造一个具有单个U形GSHP系统的实验站.
- 开发GSHP系统的三维模型.
- 进行一个或两个GHE的实验,接近夏季和冬季的温度极限.
主要成果:
- 在夏季,单个GHE在45°C的入口温度下实现了134.4W/m的传热.
- 冷却负载匹配发生在131.5W/m,但长时间运行降低了容量.
- 在冬季,单个GHE在5°C的入口温度下产生了43.95W/m的传热量.
结论:
- 不够的温室气体可以导致入水温度超过限值,从而降低GSHP的效率.
- 不充分的GHE-土壤热交换导致冷却/加热能力不足,无法满足室内负载需求.
- 优化GHE数量对于保持GSHP性能在运营范围内至关重要.
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