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International Journal of Energy for a Clean Environment

年間 8 号発行

ISSN 印刷: 2150-3621

ISSN オンライン: 2150-363X

SJR: 0.597 SNIP: 1.456 CiteScore™:: 3.7 H-Index: 18

Indexed in

ADVANCED COOLING TOWER CONCEPT BASED ON THE MAISOTSENKO‐CYCLE − AN EXERGETIC EVALUATION

巻 12, 発行 2-4, 2011, pp. 159-173
DOI: 10.1615/InterJEnerCleanEnv.2012006013
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要約

The Maisotsenko-cycle (M-cycle) is a complex process associated with humid air. Heat transfer and evaporative cooling occur in a unique indirect evaporative cooler, resulting in product temperatures that approach dew point temperature. The different applications of the M-cycle contribute to effective energy savings. By enhancing cooling towers with the M-cycle it is possible to (a) cool water to temperatures approaching dew point temperature and (b) reduce the pressure drop and the required fan power. An exergetic analysis identifies the real thermodynamic inefficiencies and the potential of improvement of energy-conversion systems. This paper discusses the results obtained from a detailed exergetic analysis of the M-cycle applied to a cooling tower. In the analysis physical and chemical exergies are considered and the physical exergies of all material streams are split into their thermal and mechanical parts. The paper concludes with a sensitivity analysis.

によって引用された
  1. Pandelidis Demis, Numerical study and performance evaluation of the Maisotsenko cycle cooling tower, Energy Conversion and Management, 210, 2020. Crossref

  2. Pandelidis Demis, Drąg Marlena, Drąg Paweł, Worek William, Cetin Sabri, Comparative analysis between traditional and M-Cycle based cooling tower, International Journal of Heat and Mass Transfer, 159, 2020. Crossref

  3. Fan Xuchen, Lu Xiaofeng, Nie Hua, Zhu Hancheng, Wang Quanhai, Kang Yinhu, Liu Shuwei, Zheng Xiong, Liu Zhuo, Zhang Yi, Long Xiaofei, Li Jianbo, An experimental study of a novel dew point evaporative cooling tower based on M-cycle, Applied Thermal Engineering, 190, 2021. Crossref

  4. Fan Xuchen, Lu Xiaofeng, Wang Jiping, Li Zilong, Wang Quanhai, Dong Zhonghao, Zhang Rongdi, Performance Evaluation of a Maisotsenko Cycle Cooling Tower with Uneven Length of Dry and Wet Channels in Hot and Humid Conditions, Energies, 14, 24, 2021. Crossref

  5. Tariq Rasikh, Sheikh Nadeem Ahmed, Livas-García A., Xamán J., Bassam A., Maisotsenko Valeriy, Projecting global water footprints diminution of a dew-point cooling system: Sustainability approach assisted with energetic and economic assessment, Renewable and Sustainable Energy Reviews, 140, 2021. Crossref

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