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Study of efficacy in a mercury-free flat discharge fluorescent lamp using a zero-dimensional positive column model

机译:使用零维正柱模型研究无汞平板放电荧光灯的功效

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A zero-dimensional model of the positive column in Ar/Ne/Xe gas mixtures has been developed to help understand the measured dependence of the efficacy on operating conditions in a mercury-free flat fluorescent lamp in a dielectric barrier geometry. The experimental conditions are such that the radiation from the discharge is homogeneous over most of the discharge voltage. The model uses as input the discharge current waveform from the experiments, and it yields the time variations of the mean electron energy and the species densities. From these quantities we calculate the number of vacuum ultraviolet (VUV) photons emitted by the xenon resonance atoms and excimers during one current pulse and the efficiency for generation of VUV radiation in the positive column, which are compared with the measured luminance and efficacy for various voltages, pulse intervals, and lamp sizes. Over the range of conditions studied, we find that most electrical energy dissipated in xenon excitation is converted to VUV radiation; i.e. the losses of xenon excitation in stepwise and associative ionization processes are small. When the mean electron energy is low, energy dissipation in elastic momentum transfer collisions leads to a decrease in the efficiency. On the other hand, ionization and excitation of argon degrade the efficiency when the mean electron energy is high. To a lesser extent, stepwise excitation of the xenon metastables also decreases the efficiency for high current densities. [References: 31]
机译:已开发出Ar / Ne / Xe气体混合物中的正极色谱柱的零维模型,以帮助理解介电阻挡层几何形状中无汞平板荧光灯在工作条件下测得的功效依赖性。实验条件是,在大多数放电电压下,来自放电的辐射是均匀的。该模型使用实验中的放电电流波形作为输入,得出平均电子能量和物种密度随时间的变化。从这些量中,我们可以计算出在一个电流脉冲期间氙气共振原子和受激准分子发射的真空紫外(VUV)光子的数量,以及在正极柱中产生VUV辐射的效率,并将其与测得的各种亮度和功效进行比较电压,脉冲间隔和灯泡尺寸。在研究的条件范围内,我们发现在氙气激发中耗散的大部分电能都转换为VUV辐射。即,在逐步和缔合电离过程中氙激发的损失很小。当平均电子能量较低时,弹性动量传递碰撞中的能量耗散会导致效率降低。另一方面,当平均电子能量高时,氩的离子化和激发会降低效率。在较小程度上,氙亚稳的逐步激发也会降低高电流密度的效率。 [参考:31]

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