首页> 外文期刊>Journal of thermal analysis and calorimetry >Sestak's proposal of term 'tempericity' for non-equilibrium temperature and modified Tykodi's thermal science classification with regard to methods of thermal analysis
【24h】

Sestak's proposal of term 'tempericity' for non-equilibrium temperature and modified Tykodi's thermal science classification with regard to methods of thermal analysis

机译:SESTAK关于非平衡温度的“温度”一词的提议,并在热分析方法方面改造了Tykodi的热科学分类

获取原文
获取原文并翻译 | 示例
           

摘要

The equilibrium (thermodynamic) temperature of a body is defined by zeroth law of thermodynamics as a quantity obtained by thermometer as a result of thermal equilibrium between the body and the thermometer. However, the term temperature is also used for description of any instantaneous thermal state during processes where no thermal equilibrium is reached. The proposal of Tykodi to divide thermal science into three branches has been modified to express the dependence of temperature on time and position inside a system. The three branches have been called thermostatics (equilibrium thermodynamics), thermostatics (thermodynamics of steady = stationary states) and thermokinetics (thermal science dealing with unsteady-non-stationary states). Equilibrium temperature is used only at thermostatics. For other branches of thermal science where the Newton cooling law and/or any of both Fourier laws are applied, no equilibrium temperature with respect to zeroth law is expected. Thermal analysis studying unsteady states (temperature is a function of time t as well as of space coordinates x) should be subject of thermokinetics, and the appropriate kinetic models should include the local temperature changes evoked by self-cooling or self-heating due to process running inside sample.
机译:身体的平衡(热力学)温度由热力学的Zeroth定律定义,作为通过体温和温度计的热平衡的温度计获得的量。然而,术语温度还用于描述在没有达到热平衡的过程中的任何瞬时热状态。 Tykodi将热科学分为三个分支的提议被修改为表达温度依赖于系统内的时间和位置。这三个分支已被称为恒温器(平衡热力学),恒温器(稳定=固定状态的热力学)和热动力学(热科学处理不稳定 - 非静止状态)。平衡温度仅用于恒温器。对于其他分支的热科学分支,其中应用牛顿冷却法和/或任何傅立叶定律,预计没有相对于零法律的平衡温度。应该是热动力学的受试者,研究不稳定状态的热分析(温度是时间T的时间T以及空间坐标x的函数,并且适当的动力学模型应包括通过工艺自冷却或自我加热引起的局部温度变化在样本内运行。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号