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首页> 外文期刊>St. Petersburg Polytechnic University Journal: Physics and Mathematics >An experimental study of industrial air disperse flows
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An experimental study of industrial air disperse flows

机译:工业空气分散流的实验研究

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This paper studies the dependence of optical parameters on the aerosol particle average diameter. The air disperse flows were generated using a special duster set-up. This set-up operates in a closed gas circuit with pulse aerosol material injection and makes it possible to sense the air disperse flows by simultaneous laser emission with different wavelengths through both the spectral transparency and integrated light scattering methods. The authors put forward a procedure of the inverse problem solution for the industrial aerosol flows dumped into the atmosphere obviating the application of integral equations by solving the direct problem system by jointly using the two laser sensing methods mentioned above. It was found that the aerosol particles size distribution function could be reconstructed according to the average volume surface diameter being measured in the aerosol flow at the output into the atmosphere. Those measurements could be taken by laser sensing methods based on the Mie scattering theory. The procedure described can serve as a basis for engineering instruments of industrial flows monitoring in real-time processing.
机译:本文研究了光学参数对气溶胶颗粒平均直径的依赖性。使用特殊的除尘器设置产生空气分散流。该设置在具有脉冲气溶胶材料喷射的封闭气体电路中操作,并且可以通过光谱透明度和集成光散射方法通过不同波长同时激光发射来感测空气分散流。作者提出了一种工业气溶胶流量的逆问题解决方案的程序,通过联合使用上述两个激光传感方法来解决直接问题系统来消除积分方程的应用。发现气溶胶颗粒尺寸分布功能可以根据在输出到大气中的气溶胶流中测量的平均体积表面直径来重建。基于MIE散射理论的激光感测方法,可以采取这些测量。所描述的程序可以作为工业流量在实时处理中监控工程仪器的基础。

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