湖水源热泵系统排热工况下散点排水对湖体温度场的影响
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国家自然科学基金重点项目(50838009);中美新能源洁净能源国际合作项目(2010DFA72740 05);重庆市科技攻关计划项目(CSTC 2011AC7129)


Influence of Distributed Drainage on Reservoir Water Temperature Field Under Reservoir Water Source Heat Pump System
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    摘要:

    采用流体计算软件建立三维湖体模型,模拟设计日下湖体自然水温,用实测水温进行修正作为初始条件;根据别墅群全年逐时负荷的模拟结果,采用动态取排水温和水量作为边界条件;以典型气象年数据为基础,通过用户自定函数输入水面换热边界;分别对某别墅群水库水源热泵系统的排放水管网采用与雨水排水管网相结合的散点排水以及采用传统的集中排水方式进行了动态数值模拟,得到供冷季逐时排热工况下湖体温度场的分布情况,分散排水优势明显。分析模拟结果表明:集中排水方案水体周温升0.33 ℃,分散排水方案水体周温升0.16 ℃;水体水道狭长体积有限的区域在连续排水的情况下,有明显热累积现象。连续运行条件下,散点排水取水口水温的模拟结果表明:7~10月,位于常年水位4.6 m水深下的取水口取水温度在27~23.5 ℃之间,可实现热泵系统高效运行。

    Abstract:

    By adopting fluid calculation software to establish three dimensional reservoir model and simulating reservoir's natural temperature on design day, the measured temperature was used to correct and treated as the initial condition. According to the annual hourly calculation load of villa cluster, dynamic water temperature and flow were used as boundary conditions. Inputted water surface heat transfer conditions were identified by user defined function based on the data of typical meteorological year. For the distributed drainage combining the discharge network and rainwater pipe network and traditional integrated drainage of reservoir water source heat pump system, dynamic numerical simulation of the water temperature field was conducted. The results show that water's temperature rises 0.33℃ weekly when integrated drainage is adopted and the temperature rises 0.16℃ when distributed drainage is adopted. There is obvious heat accumulation phenomenon when continuous drainage in narrow area works. The simulation of intake water temperature shows that below perennial water level 4.6m depth, the intake water temperature is between 27~23.5℃ from July to October, in which the heat pump system operates efficiently.

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陈金华,袁娟娟.湖水源热泵系统排热工况下散点排水对湖体温度场的影响[J].土木与环境工程学报(中英文),2013,35(2):79-85. Chen Jinhua, Yuan Juanjuan. Influence of Distributed Drainage on Reservoir Water Temperature Field Under Reservoir Water Source Heat Pump System[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2013,35(2):79-85.10.3969/j. issn.1674-4764.2013.02.013

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  • 在线发布日期: 2013-04-24
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