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Sehen Sie sich die Kollektion für die COMSOL Conference 2024 an
Nowadays, surge protection devices are widely used in electrical grids to suppress over voltages during transient conditions caused by voltage surges and to prevent damages of industrial or household devices. The working principle is based on the initiation of an arc with a burning ... Mehr lesen
In order to gather more detailed information on the rising sea level, glacier melting and tectonic plate movements to improve our understanding of global and climate change, the Next Generation Gravity Mission (NGGM) is being prepared by the European Space Agency (ESA) in cooperation ... Mehr lesen
High-intensity discharge (HID) lamps are energy-efficient light sources with excellent color qualities. A three-dimensional model of a low-wattage lamp, which includes plasma, electrodes, and burner walls, was developed in COMSOL Multiphysics®. Most parameters appearing in the coupled ... Mehr lesen
INTRODUCTION: The “Schrödinger equation” is usually associated with quantum mechanics, however for the nonlinear version (NLSE), there are applications outside the realm of quantum mechanics. NLSE appears in branches of physics like a) the quantum physics Bose-Einstein condensation ... Mehr lesen
Simulating the shielding of a 3T-magnetic field with superconducting NbTi and BSCCO tubes deploying the A-H field formulation using COMSOL Multiphysics Screening of electromagnetic fields is a crucial technique for areas such as telecommunications, medical imaging, data storage and for ... Mehr lesen
Enzyme reactions, blood flow and diffusion in human vasculature play interacting and fundamental roles in blood coagulation. In this complex mechanism, the balance between blood and clot is a delicate equilibrium, whose tight regulation is vital to avoid pathologies such as bleeding and ... Mehr lesen
Materials such as aluminium with high thermal and electrical conductivities are of industrial interest, particularly for the automotive industry in the current context of increasing production of electric vehicles. The reflective properties of this material make it difficult to process ... Mehr lesen
气体传感器在公共安全、环境监测等领域得到了广泛的应用。其中,电离气体传感器因其响应速度快、灵敏度高等优点而受到青睐。然而,电离气体传感器的应用面临着降低工作电压和减小器件尺寸等要求。因此,微纳尺度下的电离气体传感器的研究日益受到关注。本文利用COMSOL 的等离子体模块对大气压下微纳尺度针-板结构的负直流电晕放电的电学特性和放电等离子体特性进行了建模仿真。研究了电极结构、环境因素等对微纳尺度下负电晕放电发展过程和特性的影响。所得结论对微尺度电离气体传感器的优化设计具有一定的参考意义。 Mehr lesen
为了探究新型环保气体中流注的产生机理和发展过程,为局部放电的光学检测和可靠诊断提供理论基础,通过 COMSOL 仿真直流电压下 C4F7N/CO2 混合气体中针板模型一次流注到 二次流注的放电过程,将电子和离子的产生与运动通过连续性方程进行表示,获得流注发展过程中电场的变化规律和光通量的密度分布。仿真结果表明,当一次流注头部靠近阴极时,光通量将呈指数增长;随后空间电荷将迅速地重新分配,阴极处的电子将通过流注通道进入阳极,一次流注的等离子体鞘层被破坏,流注体内部的电场上升;随着通道的导电性降低,电荷重新分配结束,二次流注开始向阴极发展。二次流注与一次流注相比 ... Mehr lesen
In recent years, the optimization of high-temperature superconductors (HTS) has shown promising potential for developing advanced cable layouts aimed at the realization of practical fusion reactors. Despite their excellent performance in terms of electromagnetic and mechanical stability, ... Mehr lesen