Study on the Applicability of Green and Efficient Refrigeration and Air Conditioning Based on Exhaust Air Heat Recovery Technology

Authors

  • Deyuan Li
  • Lixia Jin
  • Xiaoman Zhang
  • Ting Zhang
  • Meng Xu

DOI:

https://doi.org/10.54097/4gy0np51

Keywords:

Green Cooling, Exhaust Heat Recovery, Text Mining, Integrated Effects Evaluation Models, State of Knowledge.

Abstract

With the sustained and stable development of the national economy, China has stepped into a new stage of green emission reduction. Under the environment of comprehensively promoting the market share of green and efficient refrigeration products, the popularization and use of exhaust air heat recovery technology in different fields will further promote the green and efficient transformation of the refrigeration industry, improve the industry's independent innovation technology, and accelerate the construction of ecological civilization. This project firstly analyzes the research background, reviews domestic and international research, and clarifies the research background and current situation; secondly, it builds a comprehensive evaluation system for green refrigeration development based on three major energy-saving concepts, and measures the level of green refrigeration development in China's first-tier cities; secondly, it applies empirical evidence based on the data of three districts and cities, namely, Beijing, Shanghai, and Guangzhou, in the period of 2011-2021, to analyze the effect of the exhaust heat recovery technology on the development of high-efficiency green refrigeration. Then, based on the data of Beijing, Shanghai and Guangzhou from 2011 to 2021, we use the empirical analysis to analyze the effect of exhaust air heat recovery technology on the development of high-efficiency green refrigeration.

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References

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Published

28 February 2024

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Section

Articles

How to Cite

Li, D., Jin, L., Zhang, X., Zhang, T., & Xu, M. (2024). Study on the Applicability of Green and Efficient Refrigeration and Air Conditioning Based on Exhaust Air Heat Recovery Technology. International Journal of Education and Humanities, 12(3), 193-197. https://doi.org/10.54097/4gy0np51