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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >A compact packing humidifier for the micro humid air turbine cycle: Design method and experimental evaluation
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A compact packing humidifier for the micro humid air turbine cycle: Design method and experimental evaluation

机译:微型潮湿风力涡轮机周期的紧凑型包装加湿器:设计方法和实验评价

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摘要

The purpose of this research is to develop a compact humidifier with novel ceramic foam corrugated packing, which is conducive to the improvement of the flexibility of humid air turbine cycles, thus has a potential in commercial application. The packing size is calculated with an analytic model based on the Merkel theory and energy effectiveness-NTU function. The simplified structures of the air and water distributors are proposed according to the special characteristics of packing. The evaluation of this humidifier has been carried out by means of experimental data obtained from a mHAT system. Both the steady state performance at off-design conditions and dynamic behavior at start-up process are presented and analyzed. At nominal condition, the humidifier shows a pinch of 12 degrees C and a relatively pressure loss of 0.59% operating pressure. With the load decreasing from 100% to 50%, the inlet and outlet fluid temperature as well as the outlet air humid ratio will all decrease, but the maximum decrement is not more than 11%. Due to the great thermal capacitance, especially that of the water in its bottom section, a relative slow response of the humidifier has been observed. (C) 2017 Elsevier Ltd. All rights reserved.
机译:该研究的目的是开发一种具有新型陶瓷泡沫瓦楞包装的紧凑型加湿器,这有利于提高潮湿风力涡轮机循环的灵活性,因此具有商业应用的潜力。基于Merkel理论和能量效率-NTU函数的分析模型计算包装大小。根据包装的特性提出了空气和水分配器的简化结构。通过从MHAT系统获得的实验数据进行了对该加湿器的评估。展示和分析了在启动过程中的非设计条件和动态行为的稳态性能。在标称条件下,加湿器显示出12摄氏度的夹数,并且相对压力损失为0.59%的操作压力。随着负荷从100%到50%的负荷减小,入口和出口流体温度以及出口空气潮湿比率都会降低,但最大减量不超过11​​%。由于热电容具有很大的热电容,特别是其底部中的水的热电容,已经观察到加湿器的相对慢响应。 (c)2017 Elsevier Ltd.保留所有权利。

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