冬季无霜工况下闭式热源塔的动态换热特性
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TU831

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十三五国家重点研发计划(2016YFC07003005)


Dynamic heat transfer performance of closed-type heat source towers under non-frosting conditions in winter
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    摘要:

    为研究闭式热源塔冬季无霜工况下的传热过程,利用有限差分法建立了闭式热源塔冬季无霜工况下的动态传热传质模型。将实验数据与数值计算结果进行对比,验证了模型的有效性。误差分析结果表明:溶液出口温度的均方根误差为0.201℃。通过实验与模拟方法分析了机组变负荷运行时闭式热源塔的动态换热特性,结果表明:当热泵机组变工况运行时,闭式热源塔作为取热装置,可为机组蒸发器提供温度相对稳定的热源;此外,与传统空气源热泵相比,闭式热源塔在低温高湿环境下的结霜风险更小,节能潜力更大。

    Abstract:

    In order to investigate the heat transfer process in the closed-type heat source tower under the non-frosting condition in winter, the finite difference method was adopted to develop the dynamic heat and mass transfer model. Comparing the calculated results with the experimental findings, the root mean square error of the outlet solution temperature turns out to be 0.201℃ and the validity of the model is verified. The dynamic heat transfer characteristics of the closed-type heat source tower on variable load operation are analyzed through experiments and simulations, which show that the closed-type heat source tower, as a heat extraction device, can provide a relatively stable heat source for the evaporator when the heat pump unit working under changing operating mode. Besides, compared with the traditional air source heat pump, the closed-type heat source tower has lower frost formation risk and higher energy saving potential under low temperature and high humidity environment.

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贾宇豪,李念平,崔海蛟,张楠.冬季无霜工况下闭式热源塔的动态换热特性[J].土木与环境工程学报(中英文),2019,41(3):162-169. Jia Yuhao, Li Nianping, Cui Haijiao, Zhang Nan. Dynamic heat transfer performance of closed-type heat source towers under non-frosting conditions in winter[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2019,41(3):162-169.10.11835/j. issn.2096-6717.2019.063

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  • 收稿日期:2018-12-28
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  • 在线发布日期: 2019-06-03
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