牛顿液体冷却速率常数对热传递的相对评价

Fabricio Rodríguez-Acevedo, Fiore Stefano, Melissa Zúñiga-Campos, B. C. Miranda, J. Mata-Segreda
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引用次数: 2

摘要

热是由系统和周围环境之间的温差驱动的能量在系统边界上的传递。在温度适中的情况下,传热的两种机制是传导和对流,但总体而言,问题的观点是分子动能从系统的较热区域转移到较冷区域或转移到环境,如Bridgman (1923), Osida(1939)和Mohanty(1951)的早期文章所述。摘要
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Newton’s Cooling Rate Constant of Liquids for the Relative Assessment for Heat Transport
Heat is the transfer of energy across the boundary of a system, driven by a temperature difference between the system and its surrounding environment. At moderate temperatures, the two mechanisms for heat transfer are conduction and convection, but the overall view of the issue is a transfer of molecular kinetic energy from hotter zones to colder zones of the system or to the environment, as stated in the early articles by Bridgman (1923), Osida (1939) and Mohanty (1951). Abstract
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