小型工程装置的分数阶热能输运

M. Zingales, G. Failla, Umberto Rizzo
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引用次数: 1

摘要

摘要分数阶热力学已被证明是描述一些小尺度和/或高频热力学过程的有效工具,在许多工程和物理应用中得到了证明。分数阶物理和工程以外的主要思想依赖于用实阶算子取代经典微分中的整数阶算子。在这项研究中,作者的目标是将最近提出的分数阶热力学的物理图像扩展到一般的3D刚性导热体,其中热能传递是由于两种现象:由固定和非固定传输方程控制的短程热通量,以及代表热能传播体之间弹道效应的远程热能传输。引入温度场的状态函数即熵,对模型的热力学一致性进行了研究,并得到了模型中各系数符号的热力学限制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fractional-Order Thermal Energy Transport for Small-Scale Engineering Devices
AbstractFractional-order thermodynamics has proved to be an efficient tool to describe several small-scale and/or high-frequency thermodynamic processes, as shown in many engineering and physics applications. The main idea beyond fractional-order physics and engineering relies on replacing the integer-order operators of classical differential calculus with their real-order counterparts. In this study, the authors aim to extend a recently proposed physical picture of fractional-order thermodynamics to a generic 3D rigid heat conductor where the thermal energy transfer is due to two phenomena: a short-range heat flux ruled by stationary and nonstationary transport equations, and a long-range thermal energy transport representing a ballistic effects among thermal energy propagators. Thermodynamic consistency of the model is investigated introducing the state function of the temperature field, namely the entropy, and obtaining the thermodynamic restrictions on the signs of the coefficients involved in the pro...
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