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Study on solar liquid desiccant dehumidification and regeneration for central air-conditioning applications.

机译:中央空调应用中太阳能液体干燥剂的除湿和再生研究。

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摘要

Dehumidification of air conditioning is traditionally accomplished with vapor refrigeration equipment. The disadvantage of this air handling process is that the temperature of the air must be cooled below its dew-point which is deemed to be energy expensive. An open cycle liquid desiccant dehumidification system driven by solar energy was emerged as a potential alternative to a conventional vapor refrigeration system for humidity control in an air conditioning system. This system can utilize solar energy and can provide cooling more efficiently. Application of the open cycle solar collectors/regenerators (C/R) is an effective way to utilize low-grade solar thermal energy to concentrate desiccant solution for air-conditioning. This project is to study how efficiently the solar desiccant dehumidification and regeneration can be used for central air-conditioning in hot-humidity weather area like Hong Kong.;This thesis, firstly, presents the numerical simulation results of an open cycle liquid desiccant dehumidification system, attempting to obtain the optimum configurations of the solar assisted air-conditioning system and to validate the feasibility for using the liquid desiccant dehumidification system to handle the latent load and improve energy efficiency of central air-conditioning systems in a building.;Secondly, a simplified simulation model for analyzing the coupled heat and mass transfer process on an open cycle solar C/R is introduced. Within narrow ranges of operating conditions, linear approximations were made to find the dependence of an equilibrium humidity ratio on the solution temperature, constant properties and coefficients. New parameters, which represent the heat and mass transfer driving forces, were defined and the basic differential equations were rearranged to obtain two coupled non-homogeneous linear equations. The climate conditions, such as solar radiation, air temperature, humidity ratio and wind speed, were treated as non-homogenous parameters for direct evaluation.;In order to measure the performance of an open cycle and forced flow solar regenerator over a hot summer day for simulation validation purpose, an experiment using H2O/LiBr solution as working fluid was performed. The effects of ambient temperature, ambient relative humidity, forced air velocity and solar radiation intensity on the regeneration of the liquid desiccant have been experimentally observed. The simulation results were used to validate the simplified simulation model and develop the heat and mass transfer coefficient correlations.;Using the synthetic series of weather conditions, the annual performance of the open cycle liquid desiccant dehumidification system was analyzed. The energy saving, compared with a conventional vapor compression system, is in the range of 40∼50%. More energy saving can be achieved if the ventilation load contains higher portion of a latent load. Besides, the economical aspect for using the open cycle solar desiccant dehumidification/regeneration system in Hong Kong is also discussed based on the system simulation and experimental results.
机译:传统上,空调的除湿是通过蒸气制冷设备完成的。这种空气处理过程的缺点在于,必须将空气的温度冷却到其露点以下,这被认为是能量昂贵的。由太阳能驱动的开放式循环液体干燥剂除湿系统已成为空调系统中用于湿度控制的传统蒸气制冷系统的潜在替代品。该系统可以利用太阳能并且可以更有效地提供冷却。开式循环太阳能集热器/蓄热器(C / R)的应用是利用低等级的太阳能来浓缩干燥剂溶液用于空调的有效方法。该项目旨在研究在香港等湿热天气地区如何有效地利用太阳能干燥剂的除湿和再生。中央空调系统的研究。本文首先提出了一种开放式液体干燥剂除湿系统的数值模拟结果。 ,试图获得太阳能辅助空调系统的最佳配置,并验证使用液体干燥剂除湿系统来处理潜在负荷并提高建筑物中中央空调系统的能源效率的可行性。介绍了一种简化的仿真模型,用于分析开放循环太阳能C / R上的传热和传质耦合过程。在狭窄的操作条件范围内,进行了线性近似,以求出平衡湿度比对溶液温度,常数性质和系数的依赖性。定义了代表传热和传质驱动力的新参数,并重新排列了基本的微分方程,以获得两个耦合的非齐次线性方程。将气候条件(例如太阳辐射,气温,湿度比和风速)视为非均质参数,以便直接评估。;为了测量在炎热的夏季中开放循环和强制流式太阳能再生器的性能为了进行仿真验证,进行了使用H2O / LiBr溶液作为工作液的实验。实验观察到环境温度,环境相对湿度,强制风速和太阳辐射强度对液体干燥剂再生的影响。仿真结果验证了简化的仿真模型的有效性,建立了传热系数与传热系数之间的相关性。通过天气综合序列分析了开式循环液体干燥剂除湿系统的年性能。与传统的蒸汽压缩系统相比,节能量在40%到50%之间。如果通风负荷包含较高的潜在负荷,则可以实现更多的节能效果。此外,基于系统仿真和实验结果,还讨论了在香港使用开式循环太阳能干燥剂除湿/再生系统的经济性。

著录项

  • 作者

    Li, Yutong.;

  • 作者单位

    Hong Kong Polytechnic University (Hong Kong).;

  • 授予单位 Hong Kong Polytechnic University (Hong Kong).;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 174 p.
  • 总页数 174
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:38:17

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