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Dynamics of spiral patterns in gas discharge detected by optical method

机译:光学法检测气体放电螺旋模式的动态

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The dynamics behavior of spiral patterns is investigated in gas discharge using optical method. Rich kinks of spiral patterns are obtained and the formation and evolution process is investigated. The process of pattern formation is breakdown→hexagon→beecomb like→strip→spiral→chaos. Spiral pattern always formed after the strip pattern. It is found that the temperature of the water electrodes plays an important role in the spiral patterns formation. When it exceeds 20°C no spiral has been obtained. The discharge current waveform and the emission spectrum of the discharge have been measured when the filaments self-organized in spiral pattern. Electron excited temperature of forming spiral pattern is calculated using intensity ratio method. It is found that the electron excited temperature of spiral pattern increase as the power supply frequency increased. Relation between wavelength and discharge parameter has been measured. It shows that the wavelength of spiral pattern increases as the discharge gap increases, and decreases as the air ratio mixed in argon increases. Accompanying measurements proved that the wavelength is approximately linear to the square root of the spiral rotating period .This work has useful reference value for studying pattern dynamics.
机译:使用光学方法研究了气体放电的螺旋模式的动力学行为。获得丰富的螺旋模式,并研究了地层和进化过程。图案形成的过程是击穿→六角形→贝贝像→条形→螺旋→混乱。螺旋图案总是在条带图案之后形成。发现水电极的温度在螺旋模式形成中起着重要作用。当它超过20°C时,没有获得螺旋。当在螺旋模式中自组织的长丝时,已经测量了放电电流波形和排放光谱。使用强度比法计算形成螺旋模式的电子激发温度。结果发现,随着电源频率的增加,电子激发温度的增加。已经测量了波长和放电参数之间的关系。结果表明,随着排出间隙的增加,螺旋模式的波长增加,随着在氩气中混合的空气比增加而降低。伴随的测量证明,波长大致线性到螺旋旋转周期的平方根。这项工作具有用于研究模式动态的有用参考值。

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