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SEPARATION OF NATURAL CONVECTION AND RADIATION BY CHANGING ROTATIONAL ACCELERATION

机译:通过改变旋转加速度来分离自然对流和辐射

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摘要

The objective is to separate natural convection and radiation experimentally. Therefore a heat source is placed inside a closed cavity and the acceleration inside the cavity can be changed. A centrifuge is used to change the acceleration. A flat resistor etched on a printed circuit board of 10mm x 48mm, is placed in a hermetically sealed cylinder, which hangs under the arm of the centrifuge. The resistor is powered by a battery, dissipates 0,3 5W and has a surface temperature of 60℃ at 1g. Natural convection is maintained inside the cylinder. Conduction is reduced to a negligible amount by construction of the experiment, thus convection and radiation are the main modes of heat transfer. The rotational speed of the centrifuge determines the centrifugal force in the cylinder. When the centripetal force increases, the temperature of the resistor decreases due to the increase of natural convection. The amount of radiation and total heat transfer can be determined from the experiment, so the amount of natural convection can also be determined. The experimental results are compared with the governing equations to validate the experiment. The reproducibility of the experiment is also checked.
机译:目的是通过实验分离自然对流和辐射。因此,将热源放置在封闭的空腔内,并且可以改变空腔内的加速度。离心机用于改变加速度。将一块蚀刻在10mm x 48mm印刷电路板上的扁平电阻器放在一个密封的圆柱体内,该圆柱体悬挂在离心机的臂下。该电阻器由电池供电,耗散0.3 5W,在1g时的表面温度为60℃。圆柱体内保持自然对流。通过构建实验,可以将传导率降低到可以忽略的程度,因此对流和辐射是热传递的主要方式。离心机的转速决定了气缸中的离心力。当向心力增加时,电阻器的温度由于自然对流的增加而降低。辐射量和总传热量可以通过实验确定,因此自然对流量也可以确定。将实验结果与控制方程进行比较以验证实验。还检查了实验的可重复性。

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