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Analyses of nonequilibrium transport in atmospheric-pressure direct-current argon discharge under different modes
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作者 Ziming ZHANG Chuan FANG +2 位作者 Yaoting WANG Lanyue LUO Heping LI 《Plasma Science and Technology》 SCIE EI CAS CSCD 2024年第11期107-126,共20页
The key plasma parameters under different discharge modes, such as heavy-particle and electron temperatures, electron number density, and nonequilibrium volume of plasmas, play important roles in various applications ... The key plasma parameters under different discharge modes, such as heavy-particle and electron temperatures, electron number density, and nonequilibrium volume of plasmas, play important roles in various applications of gas discharge plasmas. In this study, a self-consistent two-dimensional nonequilibrium fluid model coupled with an external circuit model is established to reveal the mechanisms related to the discharge modes, including the normal glow, abnormal glow,arc, and glow-to-arc transition modes, with an atmospheric-pressure direct-current(DC) argon discharge as a model plasma system. The modeling results show that, under different discharge modes, the most significant difference between the preceding four discharge modes lies in the current and energy transfer processes on the cathode side. On one hand, the current to the cathode surface is mainly delivered by the ions coming from the plasma column under the glow discharge mode due to the low temperature of the solid cathode, whereas the thermionic and secondary electrons emitted from the hot cathode surface play a very important role under the arc mode with a higher cathode surface temperature and higher ion flux toward the cathode. On the other hand, the energy transfer channel on the cathode side changes from mainly heating the solid cathode under the glow mode to simultaneously heating both the solid cathode and plasma column under the arc mode with an increase in the discharge current. Consequently, the power density in the cathode sheath(P_c) was used as a key parameter for judging different discharge modes, and the range of(0.28–1.2) × 10^(12) W m^(-3) was determined as a critical window of P_c corresponding to the glow-to-arc-mode transition for the atmospheric-pressure DC argon discharge, which was also verified by comparison with the experimental results in this study and the data in the previous literature. 展开更多
关键词 atmospheric-pressure plasma direct-current gas discharge discharge mode mode transition power density in cathode sheath
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典型大气压冷等离子体射流的剂量评估 被引量:1
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作者 李静 赵潞翔 +5 位作者 罗岚月 张子明 何涛 张宇 李和平 《南昌大学学报(理科版)》 CAS 北大核心 2023年第2期126-133,共8页
在大气压冷等离子体(Cold atmospheric plasma,CAP)的生物医学应用中,不同强度的CAP处理生物材料会带来具有显著差异的作用效果。因此,引入等离子体剂量来定量化描述等离子体对材料的作用量,从而获得理想的CAP处理效果,对于推动CAP的生... 在大气压冷等离子体(Cold atmospheric plasma,CAP)的生物医学应用中,不同强度的CAP处理生物材料会带来具有显著差异的作用效果。因此,引入等离子体剂量来定量化描述等离子体对材料的作用量,从而获得理想的CAP处理效果,对于推动CAP的生物医学应用具有十分迫切的需求。药学中常采用“半数致死剂量(LD_(50))”描述药物毒性,而我们前期的研究工作表明该方法也适用于等离子体剂量的评估,且具有通用性强、操作便捷等特点。本论文基于LD_(50)-等离子体剂量评估方法获得了大气压射频辉光放电等离子体射流处理人体胚胎肾293细胞的LD_(50)数值,并与另一种典型CAP源,即大气压介质阻挡放电等离子体射流的剂量值进行了对比和分析。本论文工作进一步验证了LD_(50)-等离子体剂量评估方法的可靠性和便捷性,也为两种典型CAP源在生物医学等领域的实际应用提供了一定的理论指导和剂量参考。 展开更多
关键词 大气压冷等离子体 等离子体生物医学 等离子体剂量 体外细胞培养
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六相交流放电再入飞行器热环境地面模拟研究
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作者 方川 张子明 +4 位作者 汪耀庭 罗岚月 曾实 李志辉 李和平 《力学学报》 EI CAS CSCD 北大核心 2023年第12期2818-2834,共17页
再入飞行器高速飞行过程中,其表面受到强烈的气动加热作用,所产生的复杂高温气体环境会破坏飞行器材料,影响飞行器结构的可靠性.因此,基于地面装置实现高速飞行器再入过程中表面热环境的模拟,对于再入飞行器的热防护测试具有十分重要的... 再入飞行器高速飞行过程中,其表面受到强烈的气动加热作用,所产生的复杂高温气体环境会破坏飞行器材料,影响飞行器结构的可靠性.因此,基于地面装置实现高速飞行器再入过程中表面热环境的模拟,对于再入飞行器的热防护测试具有十分重要的意义.文章基于数值模拟,分析了工作气压的变化对等离子体中非平衡能量输运过程以及等离子体气体温度等参数的影响规律,提出了通过改变工作气压来调节等离子体冲击壁面的热流密度的方法.基于此,首先以表面热流密度和加热时间与真实飞行条件下一致为原则,基于六相交流电弧放电等离子体实验平台,产生了大体积、高气体温度,且壁面热流密度可调的等离子体电弧射流.然后,对采用酚醛浸渍基碳热防护材料的烧蚀体进行了地面烧蚀实验,在壁面热流密度为1.07~3.95 MW/m2范围内获得了与文献报道吻合较好的实验结果,初步验证了该方法的可行性.对高速再入飞行器典型部件进行了烧蚀实验,在壁面最高热流密度为5 MW/m2的实验条件下,获得了与空间飞行实验吻合良好的地面模拟实验结果.这表明在不采用高成本风洞的前提下,本论文所提出的地面模拟实验方法可在一定程度上模拟飞行器再入过程中的表面热环境. 展开更多
关键词 电弧等离子体 多相交流电弧放电 飞行器再入过程地面模拟 飞行器表面热环境 烧蚀实验
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Theoretical analyses on the one-dimensional charged particle transport in a decaying plasma under an electrostatic field
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作者 汪耀庭 孙鑫礼 +4 位作者 罗岚月 张子明 李和平 姜东君 周明胜 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第9期329-341,共13页
The spatiotemporal evolutions of a one-dimensional collisionless decaying plasma bounded by two electrodes with an externally applied electrostatic field are studied by theoretical analyses and particle-in-cell(PIC)si... The spatiotemporal evolutions of a one-dimensional collisionless decaying plasma bounded by two electrodes with an externally applied electrostatic field are studied by theoretical analyses and particle-in-cell(PIC)simulations with the ion extraction process in a laser-induced plasma as the major research background.Based on the theoretical analyses,the transport process of the charged particles including electrons and ions can be divided into three stages:electron oscillation and ion matrix sheath extraction stage,sheath expansion and ion rarefaction wave propagation stage and the plasma collapse stage,and the corresponding criterion for each stage is also presented.Consequently,a complete analytical model is established for describing the ion extraction flux at each stage during the decaying of the laser-induced plasmas under an electrostatic field,which is also validated by the PIC modeling results.Based on this analytical model,influences of the key physical parameters,including the initial electron temperature and number density,plasma width and the externally applied electric voltage,on the ratio of the extracted ions are predicted.The calculated results show that a higher applied electric potential,smaller initial plasma number density and plasma width lead to a higher ratio of the extracted ions during the first stage;while in this stage,the initial electron temperature shows little effect on it.Meanwhile,more ions will be extracted before the plasma collapse once a higher electric potential is applied.The theoretical model presented in this paper is helpful not only for a deep understanding to the charged particle transport mechanisms for a bounded decaying plasma under an applied electrostatic field,but also for an optimization of the ion extraction process in practical applications. 展开更多
关键词 transport of charged particles decaying plasma low-pressure plasma theoretical analysis particle-in-cell simulation
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外加电场作用下的壁面约束衰亡等离子体中带电粒子非平衡输运特性
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作者 汪耀庭 罗岚月 +2 位作者 李和平 姜东君 周明胜 《物理学报》 SCIE EI CAS CSCD 北大核心 2022年第23期219-230,共12页
以光致电离等离子体中的带电粒子输运为主要研究背景,从理论上分析了位于两平行极板间的等离子体在外加直流电场作用下的带电粒子非平衡输运特性,给出了不同等离子体初始参数分布条件下电子对外加直流电场的瞬态响应特性,包括瞬态响应... 以光致电离等离子体中的带电粒子输运为主要研究背景,从理论上分析了位于两平行极板间的等离子体在外加直流电场作用下的带电粒子非平衡输运特性,给出了不同等离子体初始参数分布条件下电子对外加直流电场的瞬态响应特性,包括瞬态响应过程中的电子损失量和振荡频率的理论表达式,以及对离子引出通量和引出时间产生电子温度效应的临界电子数密度的表达式.粒子模拟结果与理论分析结果吻合良好.在此基础上进行了外加直流电场叠加射频电场作用下的离子引出过程一维粒子模拟.计算结果表明:在有射频电场存在的情况下,离子引出过程存在明显的共振现象,且在共振频率处离子引出通量显著提高;在本文所研究的特定工况下,发生射频共振时的离子引出时间缩短到了单纯采用外加直流电场时的5.8%.进一步的分析表明,外加射频电场一方面加热了电子,提高了离子稀疏波的传播速度;另一方面则加剧了电子振荡,增大了电子损失,抬高了等离子体电势,从而最终提高了离子引出通量、缩短了离子引出时间. 展开更多
关键词 衰亡等离子体 带电粒子非平衡输运 电子振荡 理论分析 粒子模拟
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