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Application of the Designed Model of the Blasted Electric Arc under Various Argon Flow Rate

机译:氩气流量下爆炸电弧设计模型的应用

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The designed mathematical model of the intensively blasted electric arc burning inside the arc heater anode channel is based on the energy and mass conservation laws and Ohm's law. With the aim of decreasing the computational burden and making the model easy to understand for students, simplifying presumptions are included. Validity of them could be impaired when the model is applied with experimental data obtained under very different operational conditions. Thus, verification of the model should be made with the data measured in a wide range of gas flow rate, input power, radius and length of the anode channel, etc. In this contribution, attention is focused on the influence of the working gas flow rate, which is crucial for cooling and stabilization of the arc. Axial distributions of the arc temperature, radius and potential drop are computed for two argon flow rates differing by 100 percent, with other operational conditions unchanged. The results are illustrated in figures and discussed.
机译:设计的电弧加热器阳极通道内部的强力电弧燃烧的数学模型是基于能量和质量守恒定律以及欧姆定律的。为了减轻计算负担并使模型易于学生理解,其中包括简化假设。当将模型与在非常不同的操作条件下获得的实验数据一起应用时,可能会削弱它们的有效性。因此,应使用在宽范围的气体流速,输入功率,阳极通道的半径和长度等条件下测得的数据对模型进行验证。在此贡献中,应将注意力集中在工作气体流量的影响上速率,这对于电弧的冷却和稳定至关重要。计算两种氩气流量相差100%时电弧温度,半径和电位降的轴向分布,而其他运行条件不变。结果在图中示出并进行了讨论。

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