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悬浮纳米粒子在低 GWP 制冷剂中的蒸气压缩制冷系统研究。

Study of vapor compression refrigeration system with suspended nanoparticles in the low GWP refrigerant.

机构信息

IIT(ISM), Dhanbad, India.

PIEMR, Indore, India.

出版信息

Environ Sci Pollut Res Int. 2024 Jan;31(1):1-26. doi: 10.1007/s11356-023-30596-4. Epub 2023 Nov 28.

Abstract

The rising global temperatures, attributed to the high global warming potential (GWP) of conventional refrigerants, necessitate the adoption of low-GWP alternatives in HVAC systems. However, these low-GWP refrigerants often exhibit high toxicity and flammability, limiting their usage. To address these challenges, compact heat exchangers incorporating blended refrigerants have been introduced to enhance HVAC system performance. Researchers have also made significant strides in improving HVAC system efficiency by introducing the concept of suspending nanolubricants and nanorefrigerants within the system. This review paper seeks to comprehensively assess the potential of alternative refrigerants containing suspended nanoparticles, commonly referred to as nanorefrigerants. The paper reviews various mechanisms and potential combinations of different nanorefrigerants employed to enhance refrigeration system effectiveness and efficiency. A detailed examination of key heat transfer parameters and the performance predictions of low-GWP refrigerants, including those from the hydrofluoroolefin (HFO) and hydrocarbon (HC) classes, is conducted through energy and exergy analyses. Commercial refrigerants like R-134a, R-290, R-600, R-600a, R-123, R-125, R-22, R-141b, R-152, R-11, R-113, R-404a, R-407c, R-502, R-600a, R-507a, R-1234yf, R-1234ze, 1336mzz(Z), and R-410a are evaluated in conjunction with suspended nanoparticles, considering their specific properties. The findings indicate that the utilization of nanorefrigerants leads to notable improvements in overall system performance, characterized by reduced compressor workloads and increased heat transfer rates. Consequently, the integration of blended nanoparticles into refrigerants holds significant promise for advancing the HVAC field.

摘要

全球气温上升,这归因于传统制冷剂的高全球变暖潜能值(GWP),这使得 HVAC 系统需要采用低 GWP 的替代品。然而,这些低 GWP 制冷剂往往表现出高毒性和可燃性,限制了它们的使用。为了解决这些挑战,已经引入了结合混合制冷剂的紧凑型热交换器,以提高 HVAC 系统的性能。研究人员还通过引入在系统内悬浮纳米润滑剂和纳米制冷剂的概念,在提高 HVAC 系统效率方面取得了重大进展。

本综述论文旨在全面评估含悬浮纳米粒子的替代制冷剂(通常称为纳米制冷剂)的潜力。本文回顾了各种机制以及不同纳米制冷剂的潜在组合,这些制冷剂用于提高制冷系统的效果和效率。通过能量和㶲分析,对关键传热参数和低 GWP 制冷剂(包括氢氟烯烃(HFO)和碳氢化合物(HC)类制冷剂)的性能预测进行了详细检查。商业制冷剂,如 R-134a、R-290、R-600、R-600a、R-123、R-125、R-22、R-141b、R-152、R-11、R-113、R-404a、R-407c、R-502、R-600a、R-507a、R-1234yf、R-1234ze、1336mzz(Z) 和 R-410a,与悬浮纳米粒子一起进行了评估,考虑了它们的特定性质。研究结果表明,纳米制冷剂的使用导致整个系统性能的显著提高,其特征是减少压缩机工作量和增加传热速率。因此,将混合纳米粒子集成到制冷剂中为推进 HVAC 领域具有重要意义。

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