首页> 外文会议>ASME(American Society of Mechanical Engineers)/JSME(Japanese Society of Mechanical Engineers) Thermal Engineering Summer Heat Transfer Conference 2007 >FEASIBILITY STUDY OF NONINVASIVE MEASUREMENT OF THERMAL CONDUCTIVITY AND THERMAL DIFFUSIVITY FOR BIOLOGICAL MATERIALS
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FEASIBILITY STUDY OF NONINVASIVE MEASUREMENT OF THERMAL CONDUCTIVITY AND THERMAL DIFFUSIVITY FOR BIOLOGICAL MATERIALS

机译:非侵入性测量生物材料热导率和热扩散率的可行性研究

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A noninvasive technique was developed to measure the thermophysical properties of biological materials. In this technique the temperature response of a material surface heated by CO_2 laser irradiation is measured with an infrared thermometry and compared with the theoretical response. The thermal conductivity and the thermal diffusivity are determined as the both values which yield the smallest deviation between the measured and analyzed temperature responses. The objective of the present study is to establish this technique by investigating the uncertainty of the method. An appropriate model of heat transfer is discussed first by taking into account of the effect of the laser absorption within the material and a heat loss from the material surface to the ambient. Then the accuracy of measurement is examined by using virtual experimental data with temperature fluctuation expected in an actual experiment. The virtual experimental data are generated by adding artificial fluctuation to a theoretical temperature response. The accuracy of measurement is estimated as a function of the standard deviation (S.D.) of the temperature fluctuation and the laser irradiation time. The effect of uncertainty in the absorption coefficient of the target material is also examined.
机译:开发了一种非侵入性技术来测量生物材料的热物理性质。在该技术中,通过红外测温仪测量通过CO_2激光辐照加热的材料表面的温度响应,并将其与理论响应进行比较。将导热率和热扩散率确定为两个值,这两个值会在测量和分析的温度响应之​​间产生最小的偏差。本研究的目的是通过研究该方法的不确定性来建立该技术。首先考虑材料中激光吸收的影响以及从材料表面到周围环境的热量损失,讨论合适的热传递模型。然后,通过使用虚拟实验数据检查测量的准确性,并在实际实验中预期温度会发生波动。通过将人为波动添加到理论温度响应中来生成虚拟实验数据。根据温度波动和激光照射时间的标准偏差(S.D.)估算测量的准确性。还检查了目标材料的吸收系数不确定性的影响。

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