平均温度的热力学定义
A E Allahverdyan1,2, S G Gevorkian1,3, Yu A Dyakov4
1Alikhanian National Laboratory (Yerevan Physics Institute), Alikhanian Brothers Street 2, Yerevan 0036, Armenia.
Physical review. E
|November 18, 2023
概括
研究人员提出了对平均温度的新热力学定义,这对气候科学和生物物理学至关重要. 这个定义在平衡过程中使用能量和,提供了超越数学平均值的物理健全方法.
科学领域:
- 热力学是一种热力学.
- 流体动力学 流体动力学
- 气候科学 气候科学
- 生物物理学的生物物理.
背景情况:
- 平均温度的概念在科学学科中至关重要.
- 现有的定义缺乏严格的热力学基础,通常依赖于非唯一的数学平均值.
- 温度作为一个顺序变量的性质使传统的平均方法复杂化.
研究的目的:
- 为了建立一个物理正确的热力学定义的平均温度.
- 为了解决当前数学平均方法的局限性.
- 为理解非平衡系统中的温度提供基础.
主要方法:
- 根据平衡过程 (可逆和不可逆) 制定定义.
- 在热力学框架内,利用能量和作为主要决定因素.
- 应用维度分析和最大无知原则来完善定义.
主要成果:
- 为平均温度提出了一个新的热力学定义.
- 这个定义独立于特定的数学平均技术.
- 对于具有恒定热容量的理想气体和非理想气体,我们得出了一个通用公式.
结论:
- 拟议的定义为平均温度提供了一个强大的热力学基础.
- 这种方法适用于各种非平衡初始状态.
- 新定义增强了对复杂系统中热性质的理解.
相关概念视频
Temperature and Thermal Equilibrium
6.7K
Heat and temperature are essential concepts for everyone every day. The study of heat and temperature is part of an area of physics known as thermodynamics. It is not always easy to distinguish heat and temperature.
The concept of temperature has evolved from the common concepts of hot and cold. The scientific definition of temperature explains more than just our sense of hot and cold. Temperature is operationally defined as the quantity measured with a thermometer. Furthermore, temperature is...
The concept of temperature has evolved from the common concepts of hot and cold. The scientific definition of temperature explains more than just our sense of hot and cold. Temperature is operationally defined as the quantity measured with a thermometer. Furthermore, temperature is...
6.7K
Thermodynamic Systems
5.1K
A thermodynamic system is a set of objects whose thermodynamic properties are of interest. The system is considered to be embedded in its surroundings or the environment. The system and its environment can exchange heat and do work on each other through a boundary that separates them. However, the immediate surroundings of the system interact with it directly and therefore have a much stronger influence on its behavior and properties.
Consider an example of tea boiling in a kettle. The...
Consider an example of tea boiling in a kettle. The...
5.1K
First Law of Thermodynamics
4.3K
A change in the internal energy of a system depends on the the net heat transfer into the system and the net work done by the system. The first law of thermodynamics, which is a generalized form of energy conservation, relates these three quantities mathematically. It states that the change in the internal energy equals the difference between the heat transfer and work done by the system.
The applied heat increases the internal energy of a system. Hence, conventionally heat is considered...
The applied heat increases the internal energy of a system. Hence, conventionally heat is considered...
4.3K
Maxwell's Thermodynamic Relations
2.8K
Maxwell's thermodynamic relations are very useful in solving problems in thermodynamics. Each of Maxwell's relations relates a partial differential between quantities that can be hard to measure experimentally to a partial differential between quantities that can be easily measured. These relations are a set of equations derivable from the symmetry of the second derivatives and the thermodynamic potentials.
All thermodynamic potentials are exact differentials. Therefore, their second-order...
All thermodynamic potentials are exact differentials. Therefore, their second-order...
2.8K
Zeroth Law of Thermodynamics
5.1K
Experimentally, if object A is in equilibrium with object B, and object B is in equilibrium with object C, then object A is in equilibrium with object C. That statement of transitivity is called the "zeroth law of thermodynamics." For example, a cold metal block and a hot metal block are both placed on a metal plate at room temperature. Eventually, the cold block and the plate will be in thermal equilibrium. In addition, the hot block and the plate will be in thermal equilibrium.
5.1K
Gas Thermometers and the Kelvin Scale
4.6K
The definition of temperature in terms of molecular motion suggests that there should be a lowest possible temperature, where the average kinetic energy of molecules is zero (or the minimum allowed by quantum mechanics). Experiments confirm the existence of such a temperature, called absolute zero. An absolute temperature scale is one whose zero point is absolute zero. Such scales are convenient in science because several physical quantities, such as the volume of an ideal gas, are directly...
4.6K


