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1.
杨维览 《物理学报》2000,49(4):768-774
采用交错均匀网格、全隐欧拉后差格式,对二维轴对称等离子体电弧进行随时间演化的数值模拟.得到了平衡时的稳态温度场、电流场和随时间演化的气流速度场.发现其中有周期性传播的磁流体激波,激波速度各点不等,约为700~1000m/s,这与实验观测到的等离子体电弧不稳定性现象是一致的 关键词:  相似文献   

2.
用一维流体模型研究了大气压双频氦气放电等离子体的特性。数值模拟的结果表明,在单、双频放电中,随着应用电压的增加,电子密度和放电电流都增加。相对于单频放电,双频放电中低频源的耦合效应使得放电中的电流以及电子密度降低。随着低频源电压峰值的增加,电子密度降低,离子通量,电子损失能量以及电子吸收能量均降低;但电子温度和电势随着低频源电压峰值的增加而增加。在相同低频源电压下,随着高频源电压的增加离子流非线性增加。  相似文献   

3.
采用三维粒子模拟/蒙特卡洛模型自洽地模拟了增强辉光放电等离子体离子注入过程中离子产生和注入,获得了放电空间的离子总数、电势分布、等离子体密度分布和离子入射剂量等信息.模拟结果表明,5μs时鞘层达到稳定扩展,15μs时离子的产生与注入达到平衡,证实了增强辉光放电等离子体离子注入能在一定条件下实现白持的辉光放电.注入过程中,在点状阳极正下方存在一个高密度的等离子体区域,证实了电子聚焦效应.除靶台边缘外,离子的注入速率稳定且入射剂量均匀.脉冲负偏压提高时注入速率增加但入射剂量的均匀性变差.  相似文献   

4.
通过实验和数值模拟研究了大气压脉冲放电等离子体射流,其中在脉冲电压上升沿阶段的放电中形成等离子体子弹并向接地电极输运,其传播速度在104 m·s–1量级.数值模拟研究还发现等离子体子弹邻近区域内增强的电场强度可达到106 V·m–1,说明等离子体子弹的形成主要由放电空间局域增强的电场导致,在接地电极附近会得到进一步增强.放电空间的电子密度时空演变过程揭示了等离子体子弹经过的区域会保持较高的电子密度,说明等离子体子弹的拖尾现象;而等离子体子弹头部增强的电子产生率与局域增强的电场强度对应,这说明了等离子体子弹产生的动力学过程.该大气压脉冲放电等离子体射流中等离子体子弹的特性和机理研究为发展大气压等离子体射流提供了理论和技术基础.  相似文献   

5.
郭恒  张晓宁  聂秋月  李和平  曾实  李志辉 《物理学报》2018,67(5):55201-055201
以临近空间高超声速飞行器和航天器再入大气环境飞行过程中其表面产生的高密度非平衡态等离子体为研究对象,基于本研究组所建立的多相交流电弧放电等离子体实验平台(MPX-2015),开展了非平衡态氩等离子体射流特性的二维数值模拟研究.在亚音速条件下二维、非平衡数值模拟所得到的计算结果与实验测量结果符合良好.超音速条件下的数值模拟结果表明,随着真空腔压强的降低,等离子体射流流速明显增大,覆盖钝体头部的等离子体鞘套的厚度先减小,而后又增加,鞘套的空间均匀性以及等离子体向钝体表面的总传热量均显著降低,而钝体头部的局部电子数密度则增大.数值模拟结果为在MPX-2015上开展超音速条件下的实验研究提供了理论指导.  相似文献   

6.
 给出了放电毛细管内等离子体绝热不定常零维数学模型,该模型考虑了金属引爆丝的电阻变化过程、毛细管材料的烧蚀电离细节及等离子体的非理想特性。利用该数学模型对毛细管的放电过程进行了数值模拟,得到了等离子体参数的动态变化过程。计算结果与相应的实验值进行了比较,对理论值与实验值的符合程度作了讨论,证明了该模型的工程实用性。  相似文献   

7.
常气压辉光放电等离子体对边界层流动的影响   总被引:3,自引:0,他引:3  
基于Shyy提出的常气压下均匀辉光放电等离子体与空气干扰的物理模型,通过求解电位势方程得到电场分布及作用于流体上的电场力.以NACA0015翼型低速绕流为对象,通过数值求解考虑等离子体作用的流体运动控制方程,研究等离子体位置和个数控制对翼型绕流分离的影响.位于分离点上游的等离子体能够有效地抑制流动分离,而在分离区的等离子体对流动影响很弱,这一结论同实验观察一致,并给出等离子体对翼型壁面压力和气动力影响的规律.  相似文献   

8.
ECR等离子体源中基本参数的数值模拟   总被引:2,自引:1,他引:2  
采用混合模型求了ECR等离子体的各种物理参量着重了中性气压、微波功率对等离子体参数以及离子能量和方向角分布的影响,并讨论了与之相关的均匀性、方向性等物理问题。  相似文献   

9.
不同初始温度下H2/O2混合物等离子体的演化   总被引:3,自引:0,他引:3       下载免费PDF全文
兰宇丹  何立明  丁伟  王峰 《物理学报》2010,59(4):2617-2621
本文对不同初始温度下,H2/O2混合物等离子体中主要粒子随时间发展的演化规律进行了数值模拟,得到了放电后等离子体中主要带电粒子和中性粒子密度随时间的变化规律.计算结果表明,H2/O2混合物等离子体中主要活性粒子密度随时间的增加减小,化学反应达到平衡所需的时间随初始温度升高逐渐减少. 关键词: 等离子体 化学过程 数值模拟 演化  相似文献   

10.
兰宇丹  何立明  丁伟  王峰 《中国物理 B》2010,19(4):2617-2621
本文对不同初始温度下,H2/O2混合物等离子体中主要粒子随时间发展的演化规律进行了数值模拟,得到了放电后等离子体中主要带电粒子和中性粒子密度随时间的变化规律.计算结果表明,H2/O2混合物等离子体中主要活性粒子密度随时间的增加减小,化学反应达到平衡所需的时间随初始温度升高逐渐减少.  相似文献   

11.
张莉  朱正和 《中国物理 B》2013,22(2):23102-023102
In the present work we calculate the energies,quadrupole moments,and electric field gradients(EFGs) of molecules C2,N2,and O2 based on the DIRRCI method with basis aug-cc-pVTZ-DK.We prove that the quadratic force constant k2 is the product of charge and EFG at its equilibrium nuclear distance.The dipole charge distributions for these symmetrical molecules are all in equilibrium,however,the quadrupole charge distributions are far from equilibrium;among these,there is the most remarkable deviation from equilibrium for N2,for its many charges concentrate on two sides of the molecule,which is in agreement with the well-known characteristic of the nitrogen molecule.The relativistic effect is remarkable even for the same period.  相似文献   

12.
马立安  郑永安  魏朝晖  胡利勤  郭太良 《物理学报》2015,64(23):237901-237901
采用化学气相沉积法系统研究了合成温度和N2/O2流量对生长在碳纤维衬底上的SnO2纳米线形貌及场发射性能的影响规律. 利用扫描电镜(SEM)、透射电镜(TEM), X射线衍射(XRD)及能谱仪(EDS)对产物细致表征, 结果表明, SnO2纳米线长径比随反应温度的升高而增大; 随N2/O2流量比值的增大先增大后变小, 场发射测试表明, 合成温度780 ℃, N2/O2流量比为300 : 3 时SnO2纳米线阵列具有最佳的场发射性能, 开启电场为1.03 V/μm, 场强增加到1.68 V/μm时, 发射电流密度达0.66 mA/cm2, 亮度约2300 cd/m2.  相似文献   

13.
Stainless steel wafers were treated with the glow discharge plasma of mixed N2O and O2 at different molar ratios at a certain discharge condition to create desirable biological characteristics to the surfaces. It was found that the molar ratio of N2O to O2 in the mixture at 1:1 used for plasma surface modification caused high apoptotic percentage. Contact angle measurement showed that the surface of stainless steel samples became very hydrophilic after the plasma modification with a value of 15°-30°. The control stainless steel chips without plasma treatment had a contact angle of 40 ± 2°. The data of Electron Spectroscopy for Chemical Analysis (ESCA) indicated that there was a certain amount of oxynitrites formed on the plasma treated surfaces, which was considered to play an important role to cell apoptosis and anti-clot formation in cell culture tests. The ESCA depth profile of up to 250 Å from the top surface showed the change of elemental compositions within 40-50 Å of the surface by the plasma treatment. The decreased platelet attachment, combined with increased apoptosis in fibroblasts is a distinct combination of biological responses arising from the mixed gas plasma treatment. These initial results suggest it may be of particular use relative to stainless steel stents where decreased platelet attachments are advantageous and induction of apoptosis could limit in-stent restenosis.  相似文献   

14.
利用自行设计的介质阻挡放电型低温等离子体反应器,研究了NO初始浓度、O2初始浓度、放电功率、电源频率等因素对NTP转化N2/O2/NO气氛中NO的影响规律。研究发现,NO去除率随功率增大而升高,到达一最大值后随功率增大而降低;NO去除率随O2初始浓度增加而降低,随NO初始浓度增大而减小。相同放电功率下,同一组分中NO去除率随电源频率的增加而降低,因此相同放电功率下降低电源频率可提高NO去除率。O2初始浓度不高于5%时,NOx大部分为NO,NO2和O3浓度均随放电功率增大而降低,NO2、O3生成量随O2初始浓度升高而增多。  相似文献   

15.
徐国亮  谢会香  袁伟  张现周  刘玉芳 《中国物理 B》2012,21(5):53101-053101
In the present work,we adopt the ccsd/6-31g(d) method to optimize the ground state structure and calculate the vibrational frequency of the Si2N molecule.The calculated frequencies accord satisfactorily with the experimental values,which helps confirm the ground state structure of the molecule.In order to find how the external electric field affects the Si2N molecule,we use the density functional method B3P86/6-31g(d) to optimize the ground state structure and the time-dependent density functional theory TDDFT/6-31g(d) to study the absorption spectra,the excitation energies,the oscillator strengths,and the dipole moments of the Si2N molecule under different external electric fields.It is found that the absorption spectra,the excitation energies,the oscillator strengths,and the dipole moments of the Si2N molecule are affected by the external electric field.One of the valuable results is that the absorption spectra of the yellow and the blue-violet light of the Si2N molecule each have a red shift under the electric field.The luminescence mechanism in the visible light region of the Si2N molecule is also investigated and compared with the experimental data.  相似文献   

16.
Air pollution caused by particles with small size has been a global concern because of threats to human health. A feasible way to remove these super fine suspended particles is using electrostatic precipitation technology. Herein, the PIV was used to measure the particle velocity distribution. By analyzing the particle motion trend in high electric field, a process of particle charging loss was observed. This phenomenon cannot be explained by current particle charging theories. Our conclusions may improve the understanding of particle charging processes.  相似文献   

17.
The O2 and N2/H2 plasma treatments of single-walled carbon nanotube (SWCNT) papers as scaffolds for enhanced neuronal cell growth were conducted to functionalize their surfaces with different functional groups and to roughen their surfaces. To evaluate the effects of the surface roughness and functionalization modifications of the SWCNT papers, we investigated the neuronal morphology, mitochondrial membrane potential, and acetylcholine/acetylcholinesterase levels of human neuroblastoma during SH-SY5Y cell growth on the treated SWCNT papers. Our results demonstrated that the plasma-chemical functionalization caused changes in the surface charge states with functional groups with negative and positive charges and then the increased surface roughness enhanced neuronal cell adhesion, mitochondrial membrane potential, and the level of neurotransmitter in vitro. The cell adhesion and mitochondrial membrane potential on the negatively charged SWCNT papers were improved more than on the positively charged SWCNT papers. Also, measurements of the neurotransmitter level showed an enhanced acetylcholine level on the negatively charged SWCNT papers compared to the positively charged SWCNT papers.  相似文献   

18.
Helicon discharge is characterized by its high ionization efficiency. In order to obtain the desired density, the configuration design of the helicon discharge tube is carried out, and the discharge characteristics are then studied to explore the correlation between the plasma parameters and the input discharge parameters. Finite‐length helicon discharge theory is employed to calculate the plasma resistance R p, and then the optimal tube length L s, the radius r p, and the tube–antenna gap d are confirmed. The partial and energy loss mechanisms of the tube are investigated based on low‐pressure discharge particle collision theory. The results show that, for a 10‐cm‐long Nagoya III type antenna, with a tube radius of 4 cm and length of 20 cm, the R p versus n e curves have peak values at n e higher than 1012 cm−3 when the magnetic field intensity B 0 ≥ 200 G. We find that a local minimum of P loss exists when p 0 is ∼1.5–3.0 mTorr; meanwhile, the radial confinement reduces T e and P loss at constant p 0.  相似文献   

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