A New Technique for Measuring Thermal Radiation

J. W. Reece, G. Theoclitus
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引用次数: 2

Abstract

A new technique is presented for measuring thermal radiation. The technique was conceived to aid in the evaluation of the base heating experienced by rocket vehicles due to radiation from the exhaust plumes. The instrumentation, chosen for its ruggedness combined with high sensitivity, is derived from thin-film resistance thermometry as originally developed for short-duration test devices such as hypersonic impulse wind tunnels. A heat meter based on thin-film resistance thermometry functions on the basis of the sudden application of a heat pulse. In the present application, for which the incident heat flux is steady, the heat pulsing is accomplished by actuating a shutter interposed between the sensing element and the incident radiation. Sample gages have been built and subjected to preliminary testing. Attention has been given to the problem of compensating the data for departures from ideal operating conditions such as the finite opening time of the shutter, and also the possible two-dimensional pattern of heat flow into the substrate material of the sensor. In addition, a special method for recalibrating the thin-film sensor is presented and illustrated with experimental results.
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测量热辐射的新技术
提出了一种测量热辐射的新方法。这项技术的设想是为了帮助评估火箭车辆由于排气羽流的辐射所经历的基础加热。该仪器因其坚固性和高灵敏度而被选中,源于薄膜电阻测温法,最初是为短时间测试设备(如高超音速脉冲风洞)开发的。一种基于薄膜电阻测温的热计是在热脉冲突然施加的基础上起作用的。在本应用中,入射热流是稳定的,热脉冲是通过驱动插在传感元件和入射辐射之间的快门来完成的。样品量具已制成并经受了初步测试。注意补偿数据偏离理想工作条件的问题,如快门的有限开启时间,以及可能的二维热流模式进入传感器的基片材料。此外,还提出了一种特殊的薄膜传感器再标定方法,并用实验结果进行了说明。
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