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Performance study of the cross-flow Maisotsenko cycle in humid climate conditions

机译:潮湿气候条件下跨流动Maisotsenko循环的性能研究

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摘要

This paper presents a first numerical analysis of the cross-flow Maisotsenko cycle (M-Cycle) below dew-point evaporative cooler for humid climates with model including the water vapor condensation phenomenon. Proposed solution allows to cool ambient air below its dew-point temperature, by utilizing cooling energy in air extracted from the building, due to that it can be used as effective pre-cooling solution for traditional systems. Proposed unit has significant advantage over traditional counter and cross-flow units operating in heat recovery mode, hence it is almost insensitive on temperature of exhaust air. This is caused by effective pre-cooling of the exhaust air in its initial part. Operation in humid climates using cold extracted air results in condensation occurrence in the primary air channels, and hence partial dehumidification of the primary airflow (which allows to cool the air before its dew- point temperature). The Maisotsenko cycle exchanger used to recover heat in the air-conditioning system is compared with Maisotsenko exchanger that operates only on the ambient airflow and does not allow to recover heat from the exhaust airflow from a conditioned space. Achieved results showed that M-Cycle below dew-point air cooler can operate more effectively in humid climates than traditional cross-flow Maisotsenko cycle exchanger.
机译:本文介绍了露点蒸发冷却器以下促湿度蒸发冷却器的第一个数值分析,用于潮湿气候,其模型包括水蒸气凝结现象。所提出的解决方案允许通过利用从建筑物中提取的空气中的冷却能量来冷却下方的环境空气,因为它可以用作传统系统的有效预冷溶液。所提出的单元对传统的计数器和横流装置具有显着的优势,在热回收模式下运行,因此在排气温度上几乎不敏感。这是由在其初始部分中有效地预冷的排气预冷引起的。使用冷提取空气在潮湿气氛中的操作导致初级空气通道中的冷凝发生,因此初级气流的部分除湿(其允许在其露头温度之前冷却空气)。与仅在环境气流上操作的Maisotsenko交换机相比,用于回收空调系统中的Maisotsenko循环交换器,并且不允许从条件空间中从排气流出中恢复热量。达到的结果表明,露点空气冷却器以下的M周期可以比传统的横流Maisotsenko循环交换器更有效地操作潮湿气候。

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  • 来源
    《International Communications in Heat and Mass Transfer》 |2020年第6期|104581.1-104581.18|共18页
  • 作者单位

    Department of Mechanical and Power Engineering Wroclaw University of Science and Technology 27 Wyspianski st. 50-370 Wroclaw Poland;

    Department of Mechanical and Power Engineering Wroclaw University of Science and Technology 27 Wyspianski st. 50-370 Wroclaw Poland;

    Department of Mechanical and Power Engineering Wroclaw University of Science and Technology 27 Wyspianski st. 50-370 Wroclaw Poland;

    Faculty of Electronics Department of Control Systems and Mechatronics Wroclaw University of Technology 27 Wyspianski st. 50-370 Wroclaw Poland;

    Faculty of Electronics Department of Control Systems and Mechatronics Wroclaw University of Technology 27 Wyspianski st. 50-370 Wroclaw Poland;

    Argonne National Laboratory 9700 S Cass Ave Lemont IL 60439 USA;

    Department of Mechanical and Industrial Engineering University of Illinois at Chicago Chicago IL 60607 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Maisotsenko cycle; Evaporative cooling in humid climate; Condensation;

    机译:Maisotsenko循环;潮湿的气候蒸发冷却;缩合;

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