Heat Flow Irreversibility

Heat flow irreversibility is the physical principle that heat transferred across a finite temperature difference cannot spontaneously reverse without producing other changes, making real thermal processes distinct from ideal reversible ones. Heat naturally moves from a hotter region to a colder one, and this finite-temperature-gradient transfer increases entropy because energy becomes less available for conversion into useful work. In physics, analyzing irreversible heat flow helps quantify entropy generation, thermal resistance, and efficiency losses in engines, refrigerators, heat exchangers, and materials. The concept also clarifies the second law of thermodynamics and guides efforts to reduce energy waste in engineered and natural systems.

Heat Flow Irreversibility - Related Videos

Education

JoVE Core - Physics

Heat Flow and Specific Heat

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2023

Heat is a type of energy transfer that is caused by a temperature difference, and it can change the temperature of an object. Since heat is a form of energy, its SI unit is the joule (J). Another common unit of energy often used for heat is the calorie (cal), which is defined as the energy needed to change the temperature of 1 g of water by 1 °C, specifically between 14.5 °C and 15.5 °C, since the energy needed shows a slight temperature dependence. Another commonly used unit is the kilocalorie...

Research

JoVE Journal - Medicine

A Murine Model of Irreversible and Reversible Unilateral Ureteric Obstruction

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Cited by 47 •

2014

The murine model of irreversible unilateral ureteric obstruction (UUO) is presented together with the model of reversible UUO in which the ureteric obstruction is relieved by anastomosis of the severed ureter into the bladder. These models enable the study of renal inflammation and scarring as well as tissue remodeling.

Irreversible Electroporation: A Technique for Ablating Pancreatic Tumor in Mouse

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2023

This video describes the procedure for performing irreversible electroporation (IRE) for non-thermal ablation of pancreatic tumors in mice. Both subcutaneous (SQ) and orthotopic tumors can be successfully treated with IRE in a highly controlled setting, facilitating various studies post-procedure.

Reversible and Irreversible Processes

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2023

The thermodynamic processes can be classified into reversible and irreversible processes. The processes that can be restored to their initial state are called reversible processes. It is only possible if the process is in quasi-static equilibrium, i.e., it takes place in infinitesimally small steps, and the system remains at equilibrium However, these are ideal processes and do not occur naturally. An ideal system undergoing a reversible process is always in thermodynamic equilibrium within...

Education

JoVE Core - Chemistry
Free Sample

Quantifying Heat

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2025

Thermal Energy Microscopically, thermal energy is the kinetic energy associated with the random motion of atoms and molecules. Temperature is a quantitative measure of “hot” or “cold”, which depends on the amount of thermal energy. When the atoms and molecules in an object are moving or vibrating quickly, they have a higher average kinetic energy (KE) (or higher thermal energy), and the object is perceived as “hot”, or it is described as being at a higher temperature. When the atoms and...

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