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Modelling mercury-free HID lamps: Breakdown characteristics and thermodynamics

机译:模拟无汞HID灯:击穿特性和热力学

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The modelling of mercury free HID lamps is challenging due to the complexity of gas mixtures and sensitivity of breakdown characteristics to the initial physical conditions. In this paper we report on results from a computational investigation of breakdown characteristics and the plasma properties of mercury-free HID lamps having metal halide fills. We discuss breakdown time as a function of voltage rise times, polarities and plasma composition (e.g., hot and cold restart). We also discuss the thermodynamic properties for doses containing Xe/NaI/ScI_3/ZnI_2.. The simulator used in this work, nonPDPSIM, is a plasma hydrodynamics model in which continuity, momentum and energy equations are solved for charged species with solution of Poisson's equation. The model is coupled with a thermodynamics module providing local thermodynamic equilibrium (LTE) properties. Algorithms were developed to represent the transition of the lamp from a kinetics-Poisson regime during breakdown to an LTE-ambipolar regime as the arc begins to form.
机译:由于混合气体的复杂性以及击穿特性对初始物理条件的敏感性,无汞HID灯的建模具有挑战性。在本文中,我们报告了对具有金属卤化物填充物的无汞HID灯的击穿特性和等离子特性的计算研究结果。我们讨论了击穿时间与电压上升时间,极性和等离子体组成(例如,热重启和冷重启)的关系。我们还讨论了含有Xe / NaI / ScI_3 / ZnI_2的剂量的热力学性质。用于这项工作的模拟器nonPDPSIM是一个等离子体流体力学模型,其中通过泊松方程的解求解带电物质的连续性,动量和能量方程。该模型与提供局部热力学平衡(LTE)属性的热力学模块耦合。开发了算法来表示随着电弧开始形成,灯从击穿过程中的动力学-泊松状态过渡到LTE-双极性状态。

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