Thermal Behavior of Solid Heated by Gaussian Moving Heat Source

IF 1.1 4区 工程技术 Q4 ENGINEERING, MECHANICAL
M. Nguyen, N. Laraqi, J. Bauzin, Mehdi-Belkacem Cherikh, Ali Hocine, Zsolt Péter
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引用次数: 0

Abstract

In this paper, an analytical development is proposed to explicitly calculate the three-dimensional and transient temperature of a solid heated by a Gaussian moving heat source. The moving source dissipates heat in a thin layer near the irradiated surface of the solid and can be constant or pulsed or have any time evolution, depending on the application. The resulting solution requires only one convergent integral over time, which can be quickly computed numerically using, for example, a commercial formal calculation software. On the other hand, the derivative of the temperature with respect to time is fully explicit. We show that the results of the developed analytical solution are in excellent agreement with those of a numerical modeling that we performed under the same conditions. The temperature evolutions and the thermal maps are presented and commented.
高斯移动热源加热固体的热行为
本文提出了一种分析方法,用于明确计算被高斯移动热源加热的固体的三维和瞬态温度。移动热源在固体照射表面附近的薄层中散热,可以是恒定的,也可以是脉冲的,还可以是任何时间演化的,具体取决于应用。求解结果只需要一个随时间变化的收敛积分,可以使用商业形式计算软件等进行快速数值计算。另一方面,温度相对于时间的导数是完全显式的。我们的研究表明,所开发的分析解决方案与我们在相同条件下进行的数值建模结果非常吻合。我们对温度演变和热图进行了展示和评论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Thermophysics and Heat Transfer
Journal of Thermophysics and Heat Transfer 工程技术-工程:机械
CiteScore
3.50
自引率
19.00%
发文量
95
审稿时长
3 months
期刊介绍: This Journal is devoted to the advancement of the science and technology of thermophysics and heat transfer through the dissemination of original research papers disclosing new technical knowledge and exploratory developments and applications based on new knowledge. The Journal publishes qualified papers that deal with the properties and mechanisms involved in thermal energy transfer and storage in gases, liquids, and solids or combinations thereof. These studies include aerothermodynamics; conductive, convective, radiative, and multiphase modes of heat transfer; micro- and nano-scale heat transfer; nonintrusive diagnostics; numerical and experimental techniques; plasma excitation and flow interactions; thermal systems; and thermophysical properties. Papers that review recent research developments in any of the prior topics are also solicited.
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