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Development of water heater using tubular flame - Heat transfer characteristics on the coiled tube and the inserted tube heat exchangers -

机译:使用管状火焰的热水器的开发-盘管和插入管式热交换器的传热特性-

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The purpose of this study is to develop the compact auxiliary water heater using tubular flame for home CHP (combined heat and power). The tubular-flame water-heater consists of the tubular flame burner, the coiled tube heat exchanger and the inserted tube installed at the center of the coiled tube as an additional heat exchanger. The tubular flame is formed in a rotating flow field by injecting the air-fuel mixture tangentially into the cylindrical chamber. The swirling flow of the combustion gas flows through the gap between the coiled tube and inserted tube. The high heat transfer performance can be achieved on these heat exchangers without the expanded heat transfer surface due to the swirling flow. Thus, the compact water heater can be constructed by using the tubular flame burner. At the first stage of the development, the maximum thermal efficiency achieves 81 % at the combustion rate of 15 kW. The heat transfer characteristics on the coiled tube and the inserted tube is investigated under the combustion and non-combustion conditions. Heat transfer coefficient on the coiled tube has about 5.6 times higher than that under the no-swirling flow condition at the same flow rate. Nusselt number on the coiled tube heat exchanger and the inserted tube can be estimated by Dhir's correlation equation for the swirling flow, which was provided as a function of the ratio between tangential momentum and axial momentum. The heat transfer characteristics on not only the coiled tube but the inserted tube was dominated by the swirling convection flow.
机译:这项研究的目的是开发一种紧凑的辅助热水器,该热水器使用管状火焰用于家用热电联产(热电联产)。管状火焰热水器由管状火焰燃烧器,盘管式热交换器和作为附加热交换器安装在盘管中央的插入管组成。通过将空气-燃料混合物切向喷射到圆柱形腔室中,在旋转流场中形成管状火焰。燃烧气体的旋流流过盘管和插入管之间的间隙。在这些热交换器上可以实现高的传热性能,而不会由于旋流而扩大传热面积。因此,可以通过使用管状火焰燃烧器来构造紧凑型热水器。在开发的第一阶段,燃烧速度为15 kW时,最大热效率达到81%。研究了在燃烧和不燃烧条件下盘管和插入管的传热特性。在相同流量下,盘管上的传热系数比无旋流条件下的传热系数高约5.6倍。盘管式换热器和插入的管子上的努塞尔数可以通过涡旋流的Dhir相关方程来估算,该方程是切向动量与轴向动量之比的函数。旋流对流不仅影响盘管的热传递特性,而且还影响插入管的热传递特性。

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