论文标题
在水中现有气泡中排出的血浆水相互作用模拟
Simulation of plasma water interaction with discharge in the existing bubble in water
论文作者
论文摘要
等离子 - 液相互作用是血浆技术中的重要问题。使用有限元方法(FEM)研究了产生血浆激活水(PAW)的水中球形气泡中排出的模拟,以在三种不同的几何形状中进行模拟的2D介电屏障放电。电子密度随电压,频率,介电厚度和气泡半径而变化。结果表明,电子密度通过增加电压,频率和气泡半径而线性增加,而反之亦然。高血浆密度表示足够的血浆 - 水相互作用。
The plasma-liquid interaction is an important issue in plasma technology. The simulation of discharge in spherical bubbles in the water that produced plasma-activated water (PAW) is investigated using finite element methods (FEM) for a simulated 2D dielectric barrier discharge in three different geometries. The electron density changes with voltage, frequency, dielectric thickness, and bubble radius are investigated in different time duration. The results show that electron density increases linearly by increasing voltage, frequency and bubble radius, while it is vice versa for dielectric thickness. High plasma density indicates sufficient plasma-water interaction.