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首页> 外文期刊>Heat Transfer Engineering >Modeling Transient Heat Transfer in Small-Size Twin Pipes for End-User Connections to Low-Energy District Heating Networks
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Modeling Transient Heat Transfer in Small-Size Twin Pipes for End-User Connections to Low-Energy District Heating Networks

机译:最终用户连接到低能耗区域供热网络的小型双管中的瞬态传热建模

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摘要

The low-energy district heating concept has the potential of increasing the energy and exergy efficiencies of heat supply systems and of exploiting renewable energy, provided that technical solutions for its wide application can be developed and implemented. This article investigates the dynamic behavior of district heating branch pipes in low-temperature operation (supply temperature 50-55°C and return temperature 20-25°C). We looked at state-of-the-art district heating branch pipes, suitable for the connection of a typical single-family house to a substation equipped with a heat exchanger for domestic hot water preparation. Experimental measurements of the supply temperature profiles at the outlet of the pipe, that is, at the inlet to the substation, were compared with detailed simulations based on the finite-volume (FV) method. A programming code was developed to model these profiles, and this was validated against experimental measurements and compared to the results of an analytical formula and the FV simulations. The model proved accurate, since it gives results that represent well the outlet temperature profiles measured in the experiments and calculated in the FV simulations, both where there was a step change of the inlet temperature and where there was a sinusoidal inlet temperature profile. The model could be used for the development of improved substation concepts and enhanced control strategies.
机译:只要可以开发和实施广泛应用的技术解决方案,低能耗的区域供热概念就有可能提高供热系统的能源和火用效率,并开发可再生能源。本文研究了区域供热支管在低温运行(供应温度50-55°C和回水温度20-25°C)下的动态行为。我们研究了最先进的区域供热支管,该支管适用于将典型的单户住宅连接到配备了热交换器的变电站,该变电站配备了用于生活热水的热交换器。将管道出口处(即变电站入口处)的供应温度曲线的实验测量结果与基于有限体积(FV)方法的详细模拟进行了比较。开发了用于对这些轮廓进行建模的编程代码,并将其针对实验测量进行了验证,并与分析公式和FV模拟的结果进行了比较。该模型被证明是准确的,因为它给出的结果能很好地代表在实验中测量并在FV模拟中计算出的出口温度曲线,无论入口温度有阶跃变化还是入口温度曲线呈正弦曲线。该模型可用于开发改进的变电站概念和增强的控制策略。

著录项

  • 来源
    《Heat Transfer Engineering》 |2013年第6期|372-384|共13页
  • 作者单位

    Department of Civil Engineering, Technical University of Denmark, Kgs. Lyngby, Denmark;

    Address correspondence to Dr. Hongwei Li, Department of Civil Engineering, Technical University of Denmark, Brovej, Building 118 DK-2800, Kgs.;

    Department of Civil Engineering, Technical University of Denmark, Kgs. Lyngby, Denmark;

    Lyngby, Denmark;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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