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Enhancement of panel radiator based hydronic central heating system using flow pulsation

机译:使用流动脉动增强基于板式散热器的水力中央加热系统

摘要

Enhancing the heat output of the hydronic central heating system in buildings can play a major role in reducing energy consumption and CO2 emission. The main aim of this PhD research is to investigate the effect of pulsed flow input on the energy consumption of panel radiators in hydronic central heating systems and the user indoor comfort defined by ASHRAE standard 55 and EN ISO 7730. The research covers thermal performance of panel radiator and the indoor comfort. The work was performed using dynamic control modelling, CFD and experimental testing to prove the concept.udResults from the mathematical and CFD modelling of the hydronic radiator with pulsed flow using various frequencies and amplitudes showed that 20% to 27% of energy saving can be achieved compared to the constant flow while maintaining the same radiator target surface temperature of 50oC as recommended by the BS EN442. The indoor comfort results were also achieved as recommended by international standards including CO2 concentration at 1000PPM±50PPM, relative humidity at 50±9%, comfort temperature at 20±1.6oC, air velocity of below 0.15m/s and draught risk parameters of less than 15%.udThe numerical results agreed well with experimental results with maximum deviation of radiator temperature output of ±4.1%, indoor temperature ±2.83% and energy saving of ±1.7%. The energy saved due to the pulsed flow is attributed to the enhancement of the radiator heat transfer performance that leads to higher heat output at lower average mass flow rate of the hot water.
机译:增强建筑物中的循环式中央供暖系统的热量输出可在减少能耗和减少CO2排放方面发挥重要作用。本博士研究的主要目的是研究脉冲流输入对水力中央供暖系统中面板散热器的能耗以及ASHRAE标准55和EN ISO 7730定义的用户室内舒适度的影响。研究涵盖面板的热性能散热器和室内舒适度。这项工作是使用动态控制建模,CFD和实验测试来证明这一概念的。 ud对脉冲散热器使用各种频率和振幅的水力散热器的数学和CFD建模结果表明,可以节省20%至27%的能源与恒定流量相比可达到的效果,同时保持与BS EN442相同的散热器目标表面温度50oC。还达到了国际标准所推荐的室内舒适度结果,包括CO2浓度为1000PPM±50PPM,相对湿度为50±9%,舒适温度为20±1.6oC,风速低于0.15m / s和吃水风险参数小于超过15%。 ud数值结果与实验结果吻合得很好,散热器温度输出的最大偏差为±4.1%,室内温度为±2.83%,节能为±1.7%。由于脉冲流而节省的能量归因于散热器传热性能的增强,从而导致在较低的热水平均质量流量下产生更高的热量输出。

著录项

  • 作者

    Embaye Mebrahtu;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
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