相关实验视频
Updated: Jan 15, 2026

08:57
Optical Trap Loading of Dielectric Microparticles In Air
Published on: February 5, 2017
9.5K
使用跟踪速度计测量气体绝缘系统在高电场中的粒子电荷
Hans-Christoph Töpper1, Christian M Franck2
1Institute for Power Systems and High Voltage Technology, ETH Zurich, Zurich, Switzerland. htoepper@ethz.ch.
Scientific reports
|October 7, 2025
概括
本研究引入了一种新方法,用于测量高压气体绝缘中的粒子的电荷. 这些发现揭示了影响电荷积累的关键因素,并突出了当前粒子行为预测模型的局限性.
科学领域:
- 电气工程 电气工程
- 材料科学 材料科学 材料科学
- 物理 物理学 物理
背景情况:
- 高压气体绝缘系统中的带电粒子会降低性能,导致设备故障.
- 了解粒子电荷行为对于可靠的能量传输系统至关重要.
研究的目的:
- 开发和验证一种新的现场电荷测量技术,用于高电场中的粒子.
- 量化各种粒子类型的电荷极性,大小和分布.
- 确定控制气体绝缘中电荷积累的关键参数.
主要方法:
- 使用粒子跟踪速度计 (PTV) 与高速成像用于现场电荷测量.
- 研究了具有不同性质的金属和介电粒子.
- 分析电荷积累,以应对不同电场强度和粒子特性.
主要成果:
- 一些材料没有显示可检测的电荷,而另一些材料则表现出动态的,广泛的电荷分布.
- 粒子材料密度,对电极的附着性和电场强度被确定为关键参数.
- 发现表面导电性比散装导电性或相对导电性更重要.
- 观察到的最小电荷与理论预测一致,但最大电荷被现有模型低估了.
- 粒子电荷取决于电场内的运动方向.
结论:
- 开发的PTV方法对于准确地描述气体绝缘中的颗粒电荷至关重要.
- 在粒子电荷积累中存在显著的统计变化.
- 这些发现提高了对影响气体绝缘系统性能的金属和介电粒子动态的理解.
相关概念视频
Capillary Electrophoresis: Instrumentation
999
Capillary electrophoresis instrumentation typically consists of several key components. A high-voltage power supply generates the electric field necessary for the separation by connecting to an anode (the positively charged electrode) and a cathode (the negatively charged electrode) located in buffer reservoirs at each end of the capillary tube. The system includes a sample vial, a fused silica capillary tube coated with polyimide for mechanical strength through which the sample components...
999
Mass Analyzers: Common Types
1.4K
The quadrupole mass analyzer consists of four cylindrical metal rods arranged in a diamond carrying a DC voltage and a radio-frequency AC voltage. The motion of ions through the quadrupole depends on the field strength, causing only ions of a certain m/z to resonate successfully and strike the detector at a given field strength. Though the transmission rate for these analyzers is high, the exact elemental composition of the sample is not determined because of low resolution; however, they are...
1.4K
Electric Field of a Charged Disk
3.1K
The simplest case of a surface charge distribution is the uniformly charged disk. Calculating its electric field also helps us calculate the electric field of a large plane of charge.
The system's symmetry is in the cylindrical directions across the plane of the charge. As a result, the electric fields created by various surface charge elements nullify each other in the direction parallel to the surface. Thereby, the resulting electric field is perpendicular to the plane. Since the disk is...
The system's symmetry is in the cylindrical directions across the plane of the charge. As a result, the electric fields created by various surface charge elements nullify each other in the direction parallel to the surface. Thereby, the resulting electric field is perpendicular to the plane. Since the disk is...
3.1K
Electrophoresis: Overview
3.6K
Electrophoresis is a powerful analytical separation technique that relies on the differential migration of charged species when subjected to an electric field. The core strength of electrophoresis lies in its ability to separate high-molecular-weight species in complex mixtures. It has found widespread use in biochemistry, molecular biology, and analytical chemistry, allowing the separation of compounds like amino acids, nucleotides, carbohydrates, and proteins with excellent resolution.
There...
There...
3.6K

