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干湿联合冷却塔冷却节水分析软件开发及应用
引用本文:胡少华,高沙沙,刘忠超,赵延春,许向阳,赵元宾.干湿联合冷却塔冷却节水分析软件开发及应用[J].化工进展,2020,39(z2):447-453.
作者姓名:胡少华  高沙沙  刘忠超  赵延春  许向阳  赵元宾
作者单位:1.深圳中广核工程设计有限公司,广东 深圳 518057;2.济南蓝辰能源技术有限公司,山东 济南 250014;3.山东大学能源与动力工程学院,山东 济南 250061;4.英能科冷却系统贸易(北京)有限公司,北京 100004
基金项目:广东省重点领域研发计划;山东省重点研发计划
摘    要:为实现对干湿联合冷却塔冷却特性、节水特性的综合分析,编制干湿联合冷却塔校核计算流程,基于Visual Studio开发平台,本文开发了干湿联合冷却塔冷却节水特性分析优化软件。通过对某在运干湿联合冷却塔进行冷却节水特性计算,验证了所开发软件计算结果的准确性;在消雾节水计算结果基础上,对标干湿联合消雾冷却塔验收测试规程,生成其成雾频率曲线、耗水量曲线、塔雾指数、冷却特性曲线,综合分析其消雾特性、节水特性及冷却特性,从而确定了干湿联合冷却塔的最佳运行工况。同时运用所开发软件对比分析了某冷却塔设计干段散热面积对其消雾特性、节水特性及冷却特性的耦合影响,并分析了百叶窗开度对干湿联合冷却塔性能的影响,为干湿联合冷却塔的运行优化和设计优化提供了工具性软件支持。

关 键 词:干湿联合冷却塔  蒸发  优化设计  计算机模拟  冷却节水分析软件  
收稿时间:2020-07-29

Development and application of cooling and water-saving analysis software for dry-wet hybrid cooling tower
HU Shaohua,GAO Shasha,LIU Zhongchao,ZHAO Yanchun,XU Xiangyang,ZHAO Yuanbin.Development and application of cooling and water-saving analysis software for dry-wet hybrid cooling tower[J].Chemical Industry and Engineering Progress,2020,39(z2):447-453.
Authors:HU Shaohua  GAO Shasha  LIU Zhongchao  ZHAO Yanchun  XU Xiangyang  ZHAO Yuanbin
Affiliation:1.China Nuclear Power Design Co. , Ltd. , Shenzhen 518057, Guangdong, China
2.Jinan Lanchen Energy Technology Co. , Ltd. , Jinan 250014, Shandong, China
3.School of Energy and Power Engineering, Shandong University, Jinan 250061, Shandong, China
4.ENEXIO Cooling Systems Trading (Beijing) Co. , Ltd. , Beijing 100004, China
Abstract:In order to realize comprehensive analysis the cooling and water-saving characteristics of dry-wet hybrid cooling towers, established the check calculation process of dry-wet hybrid cooling tower and based on the Visual Studio development platform, a software for analysis and optimization of cooling, water-saving characteristics of dry-wet hybrid cooling tower was developed. The accuracy of the software was verified by calculating the water-saving and cooling characteristics of a dry-wet hybrid cooling tower in operation. On the basis of the calculation results of plume abatement and water saving, according to the standard dry-wet hybrid plume abatement cooling tower acceptance test code, the fogging frequency curves, water consumption curves, tower plume indictor and cooling characteristic curves were generated. Thus, the optimum operating condition of the dry-wet hybrid cooling tower was determined. At the same time, the coupling effects of design dry section radiator area on the plume abatement, water-saving and cooling characteristics of the cooling tower were compared and analyzed by using the developed software, and the influence of the louver opening on the performance of the dry-wet hybrid cooling tower was analyzed, which can provide instrumental software support for the operation optimization and design optimization of the dry-wet hybrid cooling tower.
Keywords:dry-wet hybrid cooling tower  evaporation  optimal design  computer simulation  cooling and water-saving analysis software  
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