首页> 外文会议>IMECE2009;ASME international mechanical engineering congress and exposition >EXPERIMENTAL APPARATUS FOR THE DETERMINATION OF NUSSELT AND RAYLEIGH NUMBERS DURING NATURAL CONVECTION FROM A HEATED HORIZONTAL CYLINDER
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EXPERIMENTAL APPARATUS FOR THE DETERMINATION OF NUSSELT AND RAYLEIGH NUMBERS DURING NATURAL CONVECTION FROM A HEATED HORIZONTAL CYLINDER

机译:测定水平加热缸自然对流过程中小结和瑞氏数的实验装置

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Determination of Nusselt and Rayleigh numbers during natural convection heat transfer from horizontal cylinders are investigated experimentally and numerically. Experiments are done by means of the test cabin inside a conditioned room at different environmental and surface temperatures. The environmental and cylinder surface temperatures are ranging between 10-40 °C and 20-60 °C respectively. 1 m long horizontal copper cylinder is used and has outer diameters of 4.8 mm including centered silicone covered cylindrical resistant wires inside it. The experimental apparatus is designed to capable of changing the different operating parameters such as heat flux and environmental temperature. The existence of the gap on the closed surfaces in the test cabin which can cause a stack effect, affected temperature and velocity fields, disturbance of the natural convection condition is also checked. The detailed description of design and development of the test apparatus, control devices, instrumentation, and the experimental procedure are reported and the study of experimental setups from the available literature survey with the existing one are compared in this paper. The uncertainty analysis method proposed by Kline and McClintock is used and explained elaborately. Detailed information and algorithm of numerical method are given to ease the understanding of the numerical part of study. Alteration of Nusselt numbers with Rayleigh numbers, the temperature distribution on the heated horizontal cylinder surface by means of Fluent CFD program are shown in the paper. In addition to this, Morgan's correlationis used for the comparison of Nusselt number and is found in good agreement with the experimental results.
机译:实验和数值研究了从水平圆柱体自然对流传热过程中Nusselt和Rayleigh数的确定。实验是通过在不同环境和表面温度下在经过调节的房间内的测试室进行的。环境温度和钢瓶表面温度分别在10-40°C和20-60°C之间。使用的是1 m长的卧式铜圆柱体,外径为4.8 mm,其中包括居中的硅树脂覆盖的圆柱状电阻丝。实验设备被设计为能够改变不同的操作参数,例如热通量和环境温度。还检查了测试舱的封闭表面上是否存在间隙,该间隙会引起烟囱效应,受影响的温度和速度场以及自然对流条件的干扰。报道了对测试设备,控制装置,仪器和实验程序的设计和开发的详细描述,并与现有文献进行了比较,从现有的文献调查中对实验装置的研究进行了比较。使用并详细解释了Kline和McClintock提出的不确定性分析方法。给出了数值方法的详细信息和算法,以简化对研究数值部分的理解。本文显示了用瑞利数换成Nusselt数,通过Fluent CFD程序显示了加热的水平圆柱体表面的温度分布。除此之外,摩根的相关性 用于比较Nusselt数,发现与实验结果非常吻合。

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