Theoretical study on thermal diffusivity measurement of semi-transparent materials by the flash method
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摘要: 建立了閃光法測量半透明材料熱擴散率的一維瞬態導熱-輻射耦合換熱數學模型,采用基于控制容積的離散坐標法分析求解激光脈沖在半透明材料內的溫度響應,并與由熱四端網絡法得到的半解析解進行了對比和驗證.研究結果表明:兩種計算方法在各種計算條件下得到的結果吻合很好.數值方法更靈活,可以處理物性非線性問題,但計算時間較長;半解析法的計算速度非常快,但只能處理常物性問題.此外,本文對試樣吸收系數、輻射邊界、厚度及試樣表面的熱損失等因素對溫度響應的影響進行了對比分析.Abstract: A transient one-dimensional coupled conduction-radiation heat transfer model was developed for thermal diffusivity measurement of semi-transparent materials by the flash method. On the basis of the control volume method, the discrete ordinate method (DOM) was used to solve the radiation heat transfer equation of the model. It showed that the numerical results were agreed well with those by the thermal quadrupoles method (TQM). DOM was a little bit time-consuming but was available for a non-linear physical property problem. Only a constant physical property problem can TQM solved, although it is faster than DOM. The sample's backside temperature response was analyzed for various sample thickness, absorption coefficient, radiative boundary condition and heat loss.
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