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Reconstruction of Temperature Field Ar Plasma Jet using CCD Spectrum Tomography Technology

机译:CCD层析层析成像技术重建Ar等离子体射流的温度场

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摘要

An Orthogonal area array CCD spectrum tomography experimental system has been proposed to realize real-time temperature diagnosis of Ar plasma jet. According to two-orthogonal-view reconstruction algorithm, two orthogonal intensity signals can realize the emission coefficient field construction, then using spectrum relativity intensity method, temperature field can be reconstructed. In this paper, two filters with different wavelength have been placed in front of two-view orthogonal CCD, and plasma jet image has been obtained, of which point light intensity has been gotten using digital image process technology according to the image of Ar plasma jet from CCD. Then using two-orthogonal-view reconstruction algorithm and spectrum relativity intensity method reconstructed the Ar plasma jet temperature field. The result shows that it agreed with the results from fiber scanning diagnosis system. The proposed experimental device contented the real-time diagnosis request of plasma jet. It provided stabile base for real-time diagnosis of plasma jet density field, pressure field and velocity field.
机译:提出了一种正交面阵CCD光谱层析成像实验系统,以实现Ar等离子体射流的实时温度诊断。根据二正交视图重构算法,两个正交强度信号可以实现发射系数场的构造,然后采用频谱相对论强度法可以重构温度场。本文在两视角正交CCD的前面放置了两个不同波长的滤光片,并获得了等离子流图像,并根据Ar等离子流的图像,采用数字图像处理技术获得了点光强度。来自CCD。然后采用二正交视图重建算法和谱相关强度方法重建了Ar等离子体射流温度场。结果表明与光纤扫描诊断系统的结果吻合。提出的实验装置满足了等离子体射流的实时诊断要求。它为等离子体射流密度场,压力场和速度场的实时诊断提供了稳定的基础。

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