可持续区域供冷系统集成的液态天然气冷能回收:热性能分析

IF 2.1 Q2 ENGINEERING, MULTIDISCIPLINARY
Yang Luo, Xuesong Lu, Yi Chen, John Andresen, Mercedes Maroto-Valer
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引用次数: 0

摘要

研究了液化天然气(LNG)在波纹板换热器中的传热特性,并探讨了其在冷能回收中的应用,以提高能效。该研究旨在将该技术整合到500兆瓦的燃气发电厂和区域冷却系统中,以促进城市的可持续发展。通过计算流体动力学模拟和实验验证,研究了液化天然气在波纹板换热器中的传热行为,强调了管道壁上的气膜对液化天然气与水/乙二醇之间有效传热的重要性。研究分析了液化天然气临界点以下和临界点以上的换热特性。在临界点以下,LNG表现为不可压缩流体,而在临界点以上,可压缩超临界状态能够实现大量的能量回收和出口温度升高,突出了冷能回收的潜力。结果表明,与传统系统相比,在临界点以上进行冷能回收是有效的,可以显著节省能源并提高效率。确定了成功回收冷能的最佳操作参数,如通道数和流量比。这项研究为可持续城市规划和向低碳能源系统过渡提供了宝贵的见解,有助于创造环境友好和有弹性的城市环境的总体目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Liquid Natural Gas Cold Energy Recovery for Integration of Sustainable District Cooling Systems: A Thermal Performance Analysis
This paper investigates the heat transfer properties of liquefied natural gas (LNG) in a corrugated plate heat exchanger and explores its application in cold energy recovery for enhanced energy efficiency. The study aims to integrate this technology into a 500 MW gas-fired power plant and a district cooling system to contribute to sustainable city development. Using computational fluid dynamics simulations and experimental validation, the heat transfer behaviour of LNG in the corrugated plate heat exchanger is examined, emphasising the significance of the gas film on the channel wall for efficient heat transfer between LNG and water/ethylene glycol. The study analyses heat exchange characteristics below and above the critical point of LNG. Below the critical point, the LNG behaves as an incompressible fluid, whereas above the critical point, the compressible supercritical state enables a substantial energy recovery and temperature rise at the outlet, highlighting the potential for cold energy recovery. The results demonstrate the effectiveness of cold energy recovery above the critical point, leading to significant energy savings and improved efficiency compared to conventional systems. Optimal operational parameters, such as the number of channels and flow rate ratios, are identified for successful cold energy recovery. This research provides valuable insights for sustainable city planning and the transition towards low-carbon energy systems, contributing to the overall goal of creating environmentally friendly and resilient urban environments.
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来源期刊
Inventions
Inventions Engineering-Engineering (all)
CiteScore
4.80
自引率
11.80%
发文量
91
审稿时长
12 weeks
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