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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Predictions of circuit interruption including non-equilibrium electron densities
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Predictions of circuit interruption including non-equilibrium electron densities

机译:电路中断的预测,包括非平衡电子密度

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Calculations and predictions of arc properties, for example, for arc welding and circuit interruption, are generally made by solving the energy balance equation to obtain temperature profiles, assuming local thermodynamic equilibrium. Results for high power circuit breakers have needed to attribute turbulence as the principal energy loss, with larger turbulence parameters for SF6 than for air to fit the superior experimental performance of SF6. In the present paper, predictions of circuit interruption are obtained by solving the electron continuity equation together with the energy balance equation for a simple low current arc, with no imposed convective flow and thus no need for turbulence. It is found that circuit interruption depends critically on electron-ion recombination coefficients and also electron-neutral attachment coefficients, large values of which reduce electron densities and thus electrical conduction. SF6 is found to be superior to air because of its very large attachment coefficient. The results suggest that in the search for a replacement gas for SF6, because of its global warming potential of 24000 times that of carbon dioxide, material properties of high electron recombination and attachment are desirable, as well as the high enthalpy density which follows from the results where convective flow is the principal energy loss.
机译:例如,通过求解能量平衡方程来获得电弧焊接和电路中断的弧形性能的计算和预测,以获得局部热力学平衡。高功率断路器的结果需要将湍流属性作为主要能量损失,SF6具有较大的湍流参数,而不是空气,以适应SF6的优越实验性能。在本文中,通过将电子连续性方程与简单的低电流电弧的能量平衡方程一起求解电子连续性方程来获得电路中断的预测,没有施加的对流流动,因此不需要湍流。发现电路中断尺寸统称在电子 - 离子复合系数上以及电子 - 中性附件系数,其值减少了电子密度,从而减少了电导。由于其附着系数非常大,发现SF6优于空气。结果表明,在搜索SF6的替代气体中,由于其二氧化碳的全球变暖电位,高电子复合和附着的材料特性,以及从中追随的高焓密度。导致对流流量是主要能量损失。

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