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This paper presented the exergoeconomic evaluation of the developed desiccant-evaporative air-conditioning system. The developed system was evaluated based on the steady-state conditions at different regeneration and reference temperatures. The exergoeconomic evaluation method was implemented to the system components and the whole system to evaluate the exergy efficiency, exergy destruction ratios, cost rates, relative cost differences and exergoeconomic factors. The regeneration and reference temperatures affected the exergy efficiencies, exergy destruction ratios, cost rates, relative cost differences and exergoeconomic factors. The desiccant wheel, heating coil and evaporative cooler had a high cost rate (investment cost, operation and maintenance cost, and exergy destruction cost). The exit air fan, outdoor air fan and evaporative cooler had a high relative cost difference. The exit air fan, outdoor air fan and secondary heat exchanger had a high exergoeconomic factor. Replacement of the desiccant wheel with a higher dehumidification performance could decrease the high cost rate. A higher efficiency evaporative cooler and heating coil were needed. Cheaper air fans (outdoor air fans and exit air fans) were needed. 相似文献
3.
Dujuan Li Wei Yan Ronghui Qi Li-Zhi Zhang 《International Journal of Hydrogen Energy》2021,46(14):9267-9279
PEM-based electrolytic air dehumidification is innovative in dehumidification that requires high precision and small space due to its high efficiency, compactness, and cleanness. However, the system dehumidification performance and durability are limited by using commercial Anatase-IrO2 catalysts. In this study, two types of structurally modified OER catalyst materials, ATO-IrO2 and ND-MnO2-IrO2, are developed to improve the performance of the system. System experiments showed that, compared to the commercial catalysts, the use of ATO-IrO2 and ND-MnO2-IrO2 as the anode catalyst can improve the dehumidification performance by 45% and 20%, respectively. Furthermore, in 50-h accelerated aging tests, the attenuation rates of the ATO-IrO2 and ND-MnO2-IrO2 systems are 3% and 8% respectively, which are far lower than the 35% attenuation of commercial catalyst. The results indicate that, as catalysts with a classic core-shell structure, ATO-IrO2 and ND-MnO2-IrO2 still have a significant impact on improving the performance of the electrolytic dehumidification systems. 相似文献
4.
Typical methods of dehumidification of air circulating in the dehumidifying driers (indirect and direct cooler and partial exchange of the air) were analysed. Energy aspect of cooler operation was evaluated. The method for minimization of unit thermal energy consumption in a dehumidifying drier by the optimal selection of the cooler point was also given. Methods of the heat recovery of heat conveyed in a cooler lending to save energy (heat regeneration. expansion and compression of the air, a dehumidifier) were analysed. It was indicated that introduction of dehumidifiers into contemporary wood driers caused significant improvement of energy aspects of their operation 相似文献
5.
透湿膜的透湿机理与膜的研究概况 总被引:2,自引:0,他引:2
基于透湿膜的空气除湿是一种比较新颖的空气除湿方法。本文介绍了各种膜在空气除湿领域的应用情况,结合对膜制备工艺的简要介绍,侧重对原除湿原理,亲水性的高分子纤维素膜,凝胶膜和分子筛无机膜在空气除湿领域的研究和进展进行了分析。 相似文献
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根据风机盘管的特性,分析了设备运行状况和能量调节方法等方面的有关问题,指出了风机盘管采用变风量的方法调节能量所存在的弊端,同时还分析了在空调设计中,如何充分运用这些特点来合理选型,并对产品开发方面提出了建议。 相似文献
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研究典型叉流式溶液除湿系统中,溶液循环流量(Gcir)、冷/热量(Qc/Qh)和系统流程对除湿/再生空气状态变化和除湿效果的影响机制。分析不同工况下空气在焓湿图中的过程曲线特征,比较各因素影响程度。结果表明,在设计条件下,当Gcir约为0.05 kg/s时,溶液除湿系统达到最佳除湿效果;当Qc、Qh比例接近,总量由29.4 kW增加至48.9 kW时,系统中除湿量由3.7 g/kg上升至5.7 g/kg;不同流程中,当冷却对象为溶液时,溶液除湿效果较好。相较于溶液除湿系统中Gcir和Qc/Qh,溶液除湿流程对空气状态变化和除湿效果的影响程度较大。空气过程曲线在各流程下具有显著特征,溶液除湿流程是影响空气状态变化和除湿效果的核心因素。 相似文献
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双级液体去湿冷却空调性能分析 总被引:1,自引:0,他引:1
本文介绍了双级液体去湿冷却空调系统的工作原理,分析了系统的吸湿和再生性能、热损失及火用效率.较单级系统而言,双级空调系统具有良好的整体性能与节能效益,在使用低温热源上有较大优势. 相似文献