Jove
Visualize
联系我们
JoVE
x logofacebook logolinkedin logoyoutube logo
关于 JoVE
概览领导团队博客JoVE 帮助中心
作者
出版流程编辑委员会范围与政策同行评审常见问题投稿
图书馆员
用户评价订阅访问资源图书馆顾问委员会常见问题
研究
JoVE JournalMethods CollectionsJoVE Encyclopedia of Experiments存档
教育
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab Manual教师资源中心教师网站
使用条款与条件
隐私政策
政策

相关概念视频

Temperature and Thermal Equilibrium01:11

Temperature and Thermal Equilibrium

8.6K
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...
8.6K
Effects of Temperature on Free Energy02:11

Effects of Temperature on Free Energy

27.6K
The spontaneity of a process depends upon the temperature of the system. Phase transitions, for example, will proceed spontaneously in one direction or the other depending upon the temperature of the substance in question. Likewise, some chemical reactions can also exhibit temperature-dependent spontaneities. To illustrate this concept, the equation relating free energy change to the enthalpy and entropy changes for the process is considered:
27.6K
Calorimetry01:19

Calorimetry

4.0K
When objects at different temperatures are placed in contact with each other but isolated from everything else, they attain thermal equilibrium. A container that prevents heat transfer in or out is called a calorimeter, and the use of a calorimeter to make measurements is called calorimetry. Generally, these measurements involve heat or specific heat capacity. The term "calorimetry problem" is used for any problem where the specified objects are thermally isolated from their...
4.0K
Thermal expansion and Thermal stress: Problem Solving01:27

Thermal expansion and Thermal stress: Problem Solving

1.9K
San Francisco's Golden Gate Bridge is exposed to temperatures ranging from -15 °C to 40 °C. At its coldest, the main span of the bridge is 1275 m long. Assuming that the bridge is made entirely of steel, what is the change in its length between these temperatures?
To solve the problem, first, identify the known and unknown quantities. The initial length (L) of the bridge is 1275 m, the coefficient of linear expansion (α) for steel is 12 x 10-6/°C, and the change in temperature (ΔT) is 55...
1.9K
Equipments Used to Measure Body Temperature01:13

Equipments Used to Measure Body Temperature

1.5K
Body temperature can be assessed using various devices and measured in Celsius or Fahrenheit.
Glass-bulb Thermometer:
Glass-bulb thermometers are hollow glass tubes with a bulb tip containing liquid such as ethanol or mercury. Historically, glass bulb mercury thermometers were the standard device to measure body temperature. Today, mercury thermometers are prohibited in many countries due to the hazardous effects of mercury and the risk of exposure if the glass bulb breaks. In general,...
1.5K
Refrigerators and Heat Pumps01:07

Refrigerators and Heat Pumps

2.8K
Refrigerators or heat pumps are heat engines operating in a reverse direction. For a refrigerator, the focus is on removing heat from a specific area, whereas, for a heat pump, the focus is on dumping heat into one particular area. A refrigerator (or heat pump) absorbs heat Qc from the cold reservoir at Kelvin temperature Tc and discards heat Qh to the hot reservoir at Kelvin temperature Th, while work W is done on the engine’s working substance.
A household refrigerator removes heat from...
2.8K

您也可能阅读

相关文章

通过共同作者、期刊和引用图与本文相关的文章。

排序
Same author

Electrocaloric effects across room temperature in multilayer capacitors.

Nature·2026
Same author

Tunable electrocaloric effect in lead scandium tantalate through calcium doping.

Nature communications·2026
Same author

Converting heat to electricity with non-linear pyroelectrics: A review.

International materials reviews·2026
Same author

Light-Annealed Piezoelectric Films on Flexible Glass.

Small science·2025
Same author

Simultaneous shifts in pressure and electric field boost the caloric response in ferroelectrics.

Materials horizons·2025
Same author

Direct Thermal Method to Characterize the Material Efficiency of Electrocaloric Lead Scandium Tantalate Multilayer Ceramic Capacitors.

Materials (Basel, Switzerland)·2025

相关实验视频

Updated: Dec 7, 2025

Asymmetric Thermoelectrochemical Cell for Harvesting Low-grade Heat under Isothermal Operation
09:09

Asymmetric Thermoelectrochemical Cell for Harvesting Low-grade Heat under Isothermal Operation

Published on: February 5, 2020

7.5K

电热再生器中的巨大温度范围

A Torelló1,2, P Lheritier3, T Usui4

  • 1Materials Research and Technology Department, Luxembourg Institute of Science and Technology (LIST), 41 Rue du Brill, Belvaux L-4422, Luxembourg. alvar.torello@list.lu emmanuel.defay@list.lu.

Science (New York, N.Y.)
|October 2, 2020
PubMed
概括

研究人员开发了一种使用坦酸的新型电热 (EC) 再生器. 这种设备实现了13.0K的温度范围,证明了EC材料在下一代冷却技术中的潜力.

更多相关视频

Experimental Methods for Investigation of Shape Memory Based Elastocaloric Cooling Processes and Model Validation
11:11

Experimental Methods for Investigation of Shape Memory Based Elastocaloric Cooling Processes and Model Validation

Published on: May 2, 2016

11.4K
Esophageal Heat Transfer for Patient Temperature Control and Targeted Temperature Management
06:43

Esophageal Heat Transfer for Patient Temperature Control and Targeted Temperature Management

Published on: November 21, 2017

24.8K

相关实验视频

Last Updated: Dec 7, 2025

Asymmetric Thermoelectrochemical Cell for Harvesting Low-grade Heat under Isothermal Operation
09:09

Asymmetric Thermoelectrochemical Cell for Harvesting Low-grade Heat under Isothermal Operation

Published on: February 5, 2020

7.5K
Experimental Methods for Investigation of Shape Memory Based Elastocaloric Cooling Processes and Model Validation
11:11

Experimental Methods for Investigation of Shape Memory Based Elastocaloric Cooling Processes and Model Validation

Published on: May 2, 2016

11.4K
Esophageal Heat Transfer for Patient Temperature Control and Targeted Temperature Management
06:43

Esophageal Heat Transfer for Patient Temperature Control and Targeted Temperature Management

Published on: November 21, 2017

24.8K

科学领域:

  • 材料科学
  • 热力学
  • 固态物理

背景情况:

  • 热量高的材料为传统的冷却技术提供了可持续的替代方案.
  • 电热 (EC) 材料在应对电场时表现出温度变化.
  • 现有的EC冷却原型缺乏具有竞争力的温度跨度.

研究的目的:

  • 开发和演示一个高性能电热交换器.
  • 为了实现实际冷却应用的显著温度范围.

主要方法:

  • 使用坦多层电容器制造平行板活性EC电容器.
  • 使用有限元建模优化设备结构以提高绝缘性.
  • 在工作条件下测试温度范围.

主要成果:

  • 最大的温度范围是13.0克尔文.
  • 开发的EC再生器表现出具有竞争力的性能.
  • 结构优化和更好的绝缘对于增强的温度范围至关重要.

结论:

  • 开发的EC再生器打破了EC冷却性能的一个关键障碍.
  • 电热材料被证实是下一代冷却设备的有希望的候选材料.
  • 这项工作证实了EC技术在高效和可持续的冷却解决方案中的潜力.