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相关概念视频

Mechanism of heat transfer01:19

Mechanism of heat transfer

1.1K
Understanding heat transfer mechanisms is essential for understanding how our bodies maintain balance in different environmental conditions. When the environment is thermoneutral, the body is in a state of balance, neither using nor releasing energy to maintain its core temperature. However, when the environment is not thermoneutral, the body employs four heat transfer mechanisms to maintain homeostasis: conduction, convection, evaporation, and radiation. These mechanisms facilitate heat...
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Heating and Cooling Curves02:44

Heating and Cooling Curves

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When a substance—isolated from its environment—is subjected to heat changes, corresponding changes in temperature and phase of the substance is observed; this is graphically represented by heating and cooling curves.
For instance, the addition of heat raises the temperature of a solid; the amount of heat absorbed depends on the heat capacity of the solid (q = mcsolidΔT). According to thermochemistry, the relation between the amount of heat absorbed or released by a substance, q, and its...
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Mechanisms of Heat Transfer II01:20

Mechanisms of Heat Transfer II

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In convection, thermal energy is carried by the large-scale flow of matter. Ocean currents and large-scale atmospheric circulation, which result from the buoyancy of warm air and water, transfer hot air from the tropics toward the poles and cold air from the poles toward the tropics. The Earth’s rotation interacts with those flows, causing the observed eastward flow of air in the temperate zones. Convection dominates heat transfer by air, and the amount of available space for the airflow...
3.2K
Refrigerators and Heat Pumps01:07

Refrigerators and Heat Pumps

2.2K
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...
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相关实验视频

Updated: May 27, 2025

Author Spotlight: Optimization of Airflow Velocities in Battery Cooling Systems for Enhanced Thermal Performance and Reduced Energy Consumption
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适应性双相热循环系统用于复杂形状的电子设备冷却.

Wenjun Xu1, Jiarong Cui1, Yao Ma1

  • 1Pen-Tung Sah Institute of Micro-Nano Science and Technology, Xiamen University, Xiamen, China.

Nature communications
|February 17, 2025
PubMed
概括
此摘要是机器生成的。

本研究介绍了一种灵活的热管,用于电子产品中先进的热管理. 可适应的蒸汽-液体双相系统为复杂的设备提供了超高的导热率.

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Experimental Methods for Investigation of Shape Memory Based Elastocaloric Cooling Processes and Model Validation
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科学领域:

  • 材料科学 材料科学 材料科学
  • 热力工程是热力工程中的一个.
  • 电子 制冷 电子 制冷

背景情况:

  • 有效的热管理对于紧和复杂的电子设备至关重要.
  • 蒸汽-液体双相循环系统在适应性和空间限制方面面临挑战.

研究的目的:

  • 设计和制造一种可适应各种形状的新型热管,用于电子设备.
  • 为了在紧和复杂的环境中实现高效的热传输.

主要方法:

  • 制造一个三维可曲和可扭曲的热管.
  • 实施一个蒸汽-液体双相循环系统.
  • 在不同的配置中测试传热能力.

主要成果:

  • 热管显示了适应任意电子设备形状的适应性.
  • 从平面内芯片到平面外空间实现了高效的热传输.
  • 记录了高达11,363W/m·K的超高导热率.

结论:

  • 灵活的热管设计克服了电子热管理中的空间限制.
  • 这种适应性策略为复杂的电子系统提供了高效的散热.
  • 开发的热管适用于下一代紧型电子产品.