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Characteristics of direct-contact, skin-surface temperature sensors

机译:直接接触的皮肤表面温度传感器的特性

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摘要

Numerical simulations have been performed to determine the performance characteristics of direct-contact devices for the measurement of skin-surface temperature. Such devices consist of a thin metallic foil which serves as a heat spreader backed by a foam insulation pad. The sensor, either a miniature thermocouple or thermistor, is adhered to the heat-spreading foil. In practice, such devices operate in the transient mode, and the numerical simulations were performed in that mode. Special focus was given to three relevant parameters which contribute significantly to the accuracy of the temperature measurements: (a) the thickness of the foam pad, (b) the thermal conductivity of the pad material, and (c) the contact resistance between the device and the skin surface. It was found that the presence of the foam pad significantly degraded the accuracy of the measured temperature. Diminishing the thickness or, in the limit, elimination of the pad is believed necessary to enable the device to provide temperatures of acceptable accuracy. An alternative and suitable approach to the achievement of satisfactory accuracy is to use pad materials of higher thermal conductivity than those presently being utilized. With regard to contact resistance, the presence of an air gap between the device and the skin surface of the thickness of a sheet of paper did not cause a significant error in the temperature indicated by the device.
机译:已经进行了数值模拟,以确定用于测量皮肤表面温度的直接接触装置的性能特征。此类设备由薄金属箔组成,该金属箔充当泡沫隔热垫支持的散热器。传感器(微型热电偶或热敏电阻)粘附在散热箔上。实际上,此类设备以瞬态模式运行,并且在该模式下执行了数值模拟。特别关注了三个相关参数,这些参数对温度测量的准确性有重要贡献:(a)泡沫垫的厚度,(b)垫材料的导热性,以及(c)设备之间的接触电阻和皮肤表面。发现泡沫垫的存在显着降低了所测量温度的准确性。认为减小厚度或在极限内消除垫是使装置能够提供可接受的精度的温度所必需的。实现令人满意的精度的另一种合适的方法是使用导热系数比目前使用的导热系数更高的垫片材料。关于接触电阻,在该装置和一张纸厚度的皮肤表面之间存在气隙不会在该装置指示的温度上引起明显的误差。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2009年第16期|3799-3804|共6页
  • 作者单位

    Department of Mechanical and Energy Engineering, Center for Advanced Scientific Computing and Modeling (CASCaM), University of North Texas, Denton, TX 76207-7102, USA;

    Laboratory for Heat Transfer and Fluid Flow Practice, Department of Mechanical Engineering, University of Minnesota, Minneapolis, MN 55455-0111, USA;

    Department of Mechanical and Energy Engineering, Center for Advanced Scientific Computing and Modeling (CASCaM), University of North Texas, Denton, TX 76207-7102, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    skin temperature; temperature sensor; biomedical; bioheat; human healthcare;

    机译:皮肤温度温度感应器;生物医学生物热人类保健;

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