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Experimental investigation on heat transfer and fluid friction correlations for circular tubes with coiled-wire inserts

机译:带有绕线插入件的圆管传热和流体摩擦相关性的实验研究

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Heat transfer and pressure drop data for air flow and water flow in smooth tubes with coiled-wire inserts were measured. The wire diameter-to-tube inner diameter ratio (e/d) and coil pitch-to-tube inner diameter ratio (p/d) are in the ranges of 0.0725 to 0.134 and 1.304 to 2.319 respectively. It is found that the Nusselt number (Nu) increases with the e/d value, whereas it increases with a decrease of the p/d value. As air is the working fluid, the dependence of the heat transfer enhancement of the wire coil on the Reynolds number (Re) is minor; as water is the working fluid, the heat transfer enhancement considerably decreases with an increase of the Re value. Two heat transfer empirical equations, one for air and the other for water, are proposed. For both air and water, a common fluid friction empirical equation is established. To effectively and efficiently enhance the heat transfer, for air, the proposed e/d and p/d values of the wire coil are 0.101 and 2.319, respectively; for water, the proposed e/d and p/d values are 0.101 and 1.739, respectively.
机译:测量了带有盘绕线插入物的光滑管中的空气流动和水流动的传热和压降数据。线直径与管内径之比(e / d)和线圈螺距与管内径之比(p / d)分别在0.0725至0.134和1.304至2.319的范围内。发现,努塞尔特数(Nu)随着e / d值而增加,而随着p / d值的减少而增加。由于空气是工作流体,因此线圈的传热增强对雷诺数(Re)的依赖性很小;由于水是工作流体,因此传热增强随Re值的增加而大大降低。提出了两个传热经验方程,一个是空气,另一个是水。对于空气和水,建立了一个通用的流体摩擦经验方程。为了有效地提高空气的热传递,建议的线圈的e / d和p / d值分别为0.101和2.319。对于水,建议的e / d和p / d值分别为0.101和1.739。

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