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Globe Temperature and Its Measurement: Requirements and Limitations

机译:地球温度及其测量:要求和局限性

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This study addresses the measurement of the globe temperature. For this purpose, two globe thermometers with different diameters (50 and 150 mm) and a variety of thermal environmental conditions were considered. The assessments of the response times and of the influences of the globe diameter and the air velocity on the measured globe temperatures are discussed. The results of the response times clearly put in evidence that the values usually stated in the literature can be questioned and that longer measurement periods must be considered. In fact, response times >30 min were obtained in 68% of the tests performed. Moreover, differences >20 degrees C were obtained between the 150 and 50 mm sensors, highlighting the influence of the globe diameter. The analysis of the effect of the air velocity on the globe temperature shows mean relative differences > 30% between tests in still air and with the higher air velocity considered (1.81 m s(-1)). On the basis of measurements carried out with the 50 mm globe, correction equations to the standard globe temperature for both natural and forced convection are proposed.
机译:这项研究涉及地球温度的测量。为此,考虑了两个具有不同直径(50和150毫米)和各种热环境条件的地球温度计。讨论了对响应时间和地球直径的影响以及空气速度对测得的球体温度的评估。响应时间的结果清楚地表明,可以质疑文献中通常说明的值,并且必须考虑更长的测量周期。实际上,在执行的68%的测试中获得了> 30分钟的响应时间。此外,在150和50 mM传感器之间获得了> 20摄氏度的差异,突出了地球直径的影响。空气速度对地球温度的影响的分析显示,在静止空气中测试和考虑较高的空气速度之间的相对差异> 30%(1.81 m S(-1))。根据50毫米球的测量,提出了自然和强迫对流标准球温度的校正方程。

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