在水热高温矿山中复合材料隔热区结构的热绝缘性能上的数值模拟研究
Yanhe Li1,2, Zhijun Wan3, Zhenzi Yu1,4
1Pingdingshan Tianan Coal Mining Co., LTD., Pingdingshan, 467009, China.
Scientific reports
|June 18, 2024
概括
这项研究表明,高温矿山中的复合材料隔热区可以减少热传递. 优化绝缘厚度和材料性能可以提高热性能,降低道路墙壁上的热量流量.
科学领域:
- 采矿工程 采矿工程 采矿工程
- 地热能源 地热能源
- 热绝缘 热绝缘 热绝缘 热绝缘
背景情况:
- 水热高温矿山面临着从周围岩石散热到矿山空气流的挑战.
- 有效的隔热对于这些环境中的运行安全和效率至关重要.
研究的目的:
- 分析高温矿山中复合材料隔热区的隔热性能.
- 研究结构参数对温度分布和隔热效率的影响.
主要方法:
- 使用数值模拟来建模温度场和热传递.
- 分析包括具有和没有绝缘的场景,以及复合区参数的变化.
主要成果:
- 没有绝缘,周围岩石的温度分布是均的,但随着通风时间的推移而延长.
- 复合材料隔热区有效地减轻了热传递,改变了道路的热调节区.
- 优化绝缘厚度,接和材料导热性可以提高性能.
结论:
- 隔热层比接层更有效,主要取决于材料的导热性.
- 复合结构将最大热量流量减少了20%,为矿山热管理提供了实用的见解.
相关概念视频
Thermal Insulation in Masonry Walls
117
In hot, dry climates, the thermal mass of masonry walls can be beneficial, absorbing heat during the day and releasing it at night, thereby stabilizing indoor temperatures. However, in most other climates, additional insulation is necessary to enhance thermal resistance.
External insulation can be applied using an Exterior Insulation and Finish System (EIFS), which involves affixing panels of plastic foam to the wall and covering them with a polymeric stucco reinforced with glass fiber mesh....
External insulation can be applied using an Exterior Insulation and Finish System (EIFS), which involves affixing panels of plastic foam to the wall and covering them with a polymeric stucco reinforced with glass fiber mesh....
117
Conduction, Convection and Radiation: Problem Solving
1.2K
There are three methods by which heat transfer can take place: conduction, convection, and radiation. Each method has unique and interesting characteristics, but all three have two things in common: they transfer heat solely because of a temperature difference; and the greater the temperature difference, the faster the heat transfer.
In order to solve a problem related to heat transfer, first of all, the situation needs to be examined to determine the type of heat transfer involved. This could...
In order to solve a problem related to heat transfer, first of all, the situation needs to be examined to determine the type of heat transfer involved. This could...
1.2K
Calorimetry
3.0K
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...
3.0K
Thermal Expansion
4.4K
The expansion of alcohol in a thermometer is one of many commonly encountered examples of thermal expansion, which is the change in size or volume of a given system as its temperature changes. The most visible example is the expansion of hot air. When air is heated, it expands and becomes less dense than the surrounding air, which then exerts an upward force on the hot air to, for example, make steam and smoke rise, and hot air balloons float. The same behavior happens in all liquids and gases,...
4.4K
Mass Concreting
60
Mass concreting refers to the process of placing large volumes of concrete, such as in gravity dams. The heat generated during the cement hydration process and differential cooling rates within the concrete mass can lead to a temperature gradient, which can result in thermal cracks in the concrete mass.
To reduce the risk of such cracking, the concrete mix may incorporate low-heat cement and pozzolans to reduce the temperature rise. Pre-cooled angular aggregates and water-reducing admixtures...
To reduce the risk of such cracking, the concrete mix may incorporate low-heat cement and pozzolans to reduce the temperature rise. Pre-cooled angular aggregates and water-reducing admixtures...
60
Mechanisms of Heat Transfer I
4.2K
Just as interesting as the effects of heat transfer on a system are the methods by which the heat transfer occur. Whenever there is a temperature difference, heat transfer occurs. It may occur rapidly, such as through a cooking pan, or slowly, such as through the walls of a picnic ice box. So many processes involve heat transfer that it is hard to imagine a situation where no heat transfer occurs. Yet, every heat transfer takes place by only three methods: conduction, convection, and radiation.
4.2K


