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Studies of the anode region of a high‐intensity argon arc

机译:高连字符;强度氩弧的阳极区域研究

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This paper is concerned with experimental and analytical/numerical studies of the anode region of an atmospheric pressure argon arc in a current range from 100 to 300 A. The arc arrangement allows unobstructed viewing of the entire anode region, including the anode itself, and it is also suitable for simulating short as well as long arcs. Depending on the flow situation in the anode region, two different types of stable arc roots are observed. The diffuse anode arc root, characterized by a strong flow impinging on the anode surface, is well known from free‐burning, short arcs. The second type reveals a more or less vevere constriction in front of the anode, caused by the entrainment of gas into the arc, resulting in an anode jet. Measurements of the induced flow at the cathode of such an arc show a linear increase of the induced mass flow rate with increasing current. This correlation can be confirmed by a simple analysis. A fast‐scanning, computer‐controlled system has been used for spectrometric measurements of the temperature distribution for both modes of anode arc roots, assuming local thermodynamic equilibrium (LTE) in the arc. The maximum temperatures in the arc core compare favorably with calculated temperature distributions of the constricted mode. The calculated isotherms, however, show a substantial shift which is probably due to the chosen boundary conditions at the end of the constrictor tube.
机译:本文涉及100至300 A电流范围内大气压氩弧阳极区域的实验和分析/数值研究。电弧布置允许无障碍地观察整个阳极区域,包括阳极本身,也适用于模拟短电弧和长电弧。根据阳极区域的流动情况,观察到两种不同类型的稳定电弧根。扩散阳极电弧根,其特征是强流动冲击阳极表面,以自由连字符燃烧的短电弧而闻名。第二种类型显示阳极前方或多或少的 vevere 收缩,这是由于气体夹带到电弧中,导致阳极射流。对这种电弧阴极处的感应流的测量表明,随着电流的增加,感应质量流速呈线性增加。这种相关性可以通过简单的分析来证实。一个快速扫描、计算机连字符控制的系统已被用于对两种模式的阳极电弧根的温度分布进行光谱测量,假设电弧中的局部热力学平衡(LTE)。弧芯中的最高温度与压缩模式的计算温度分布相比具有优势。然而,计算出的等温线显示出实质性的偏移,这可能是由于在收缩管末端选择的边界条件。

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