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Low-frequency (2.72-3.70 Hz) relaxation oscillations at 100 mTorr at higher absorbed power were observed from time-varying optical emission of the main discharge chamber and the periphery. We interpret the low frequency oscillations using an electromagnetic model of the slot impedance with parallel connection variational peripheral capacitance, coupled to a circuit analysis of the system including the matching network. The model results are in general agreement with the experimental observations, and indicate a variety of behaviours dependent on the matching conditions. 相似文献
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Both high and low frequency relaxation oscillations have been observed in an argon capacitive discharge connected to a peripheral grounded chamber through a slot with dielectric spacers. The oscillations, observed from time-varying optical emission of the main discharge chamber, show, for example, a high frequency (46 kHz) relaxation oscillation at 100 mTorr, with an absorbed power near the peripheral breakdown, and a low frequency (2.7-3.7 Hz) oscillation, at a higher absorbed power. The high frequency oscillation is found to ignite a plasma in the slot, but usually not in the periphery. The high frequency oscillation is interpreted by using an electromagnetic model of the slot impedance, combined with the circuit analysis of the system including a matching network. The model is further developed by using a parallel connection of variable peripheral capacitance to analyse the low frequency oscillation. The results obtained from the model are in agreement with the experimental observations and indicate that a variety of behaviours are dependent on the matching conditions. 相似文献
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一种考虑初始垂度影响的非线性索单元 总被引:2,自引:0,他引:2
本文首先运用Mathematic的符号运算功能,通过解偏微分方程给出了不等高单索的显式解析解,然后把该解析解应用于索微元的应变计算中,在此基础上用虚功原理推导了考虑初始垂度影响的两节点非线性索单元,并给出了索单元的单刚矩阵的具体形式,通过与两节点直线索单元的单铡矩阵的形式的比较,明确了该曲线非线性索单元的修正项,并给出了垂度影响因子的变化曲线。比较直观的给出了垂度对索单元刚度各项的影响程度。该非线性索单元既有多节点索单元精度高的特点,又有节点少,刚度元素较易求解以及有限元列式简洁等特点。本文通过两个数值算例表明,本文的非线性索单元是正确的,也表明了所编制的非线性计算程序是正确和可靠的。 相似文献
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对间距比为1.2和雷诺数为100的串列三圆柱涡激振动进行数值模拟, 发现在某个折合流速之后, 三圆柱的响应均呈现为随着折合流速增大而增大的弛振现象, 平衡位置偏移、低频振动以及旋涡脱落与圆柱运动之间的时机三个因素共同决定了弛振现象的出现. 进一步的研究发现, 串列三圆柱的弛振现象仅出现在质量比不大于2.0和雷诺数不大于100的工况下. 当质量比较大时, 串列三圆柱的平衡位置固定不变, 且圆柱的振动不规律, 使得旋涡脱落与圆柱运动的时机处于变化之中. 当雷诺数较高时, 最上游圆柱的平衡位置在折合流速较大时回到初始位置, 不再参与对圆柱振动的调节, 使得圆柱的振动响应不再规律, 旋涡脱落与圆柱运动的时机也一直处于变化之中. 相似文献