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Calculation of the Radiating Characteristics of a Thermodynamically Nonuniform Gas Medium

机译:热力学非均匀气体介质辐射特性的计算

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Passive methods of remote analysis of waste gases of industrial enterprises and aircrafts engines and gases ejected in eruptions of volcanos, in fires, and in other processes disturbing the atmosphere are now of limited utility because of the lack of well-developed mathematical techniques for solving the inverse problems of gas analysis. However, the advantage of these methods is obvious, since the equipment is limited to a receiving device and the gas medium serves as a radiator. At the same time, in modern techniques, the interpretation of measurements of emissivities of gases is performed using a phenomenological approach such that experimental data on radiation characteristics of various objects are approximated by simple polynomial relations whose coefficients are determined by minimization methods. This approach does not allow one to investigate the mechanism of the processes occurring in a radiating medium and gives no way of solving the inverse problem of monitoring the composition and thermodynamic parameters of a medium which disturbs the atmosphere by thermal effects. In elaborating theoretical methods of gas analysis, the elaboration of the direct problem of calculation of radiating characteristics of gases is of importance, since it is not clear how the emissivity of a gas medium depends on its thermodynamic parameters. This paper is devoted to the above problem. Here, the error is estimated that arises in modeling a nonuniform gas medium with an actual temperature distribution, which linearly depends on coordinate, by a uniform gas layer. It is shown that the difference between the radiation intensities calculated for uniform and nonuniform media can be significant in the practically important case where the recording device is in a zone of normal temperatures. This implies that the error of reconstruction of the spectroscopic and molecular parameters of gaseous compounds from high-temperature measurements of the radiating and absorbing characteristics should take into account the thermodynamic nonuniformity of the medium.
机译:由于缺乏完善的数学方法来解决工业企业和飞机发动机的废气以及火山爆发,火灾以及其他扰乱大气的过程中喷射的气体的被动分析方法,因此其实用性有限。气体分析的反问题。但是,这些方法的优点是显而易见的,因为设备仅限于接收设备,并且气体介质充当散热器。同时,在现代技术中,气体的发射率测量的解释是使用现象学的方法进行的,从而通过简单的多项式关系来近似各种物体的辐射特性的实验数据,其系数由最小化方法确定。这种方法不允许人们研究在辐射介质中发生的过程的机理,也没有办法解决监测通过热效应干扰大气的介质的组成和热力学参数的反问题。在阐述气体分析的理论方法时,阐述气体辐射特性的直接计算问题非常重要,因为尚不清楚气体介质的发射率如何取决于其热力学参数。本文致力于上述问题。在此,估计出在通过均匀气体层模拟具有线性依赖于坐标的实际温度分布的非均匀气体介质时产生的误差。结果表明,对于均匀和不均匀介质计算出的辐射强度之间的差异在记录装置处于常温区域的实际重要情况下可能很大。这意味着从辐射和吸收特性的高温测量结果得出的气态化合物光谱和分子参数的重建误差应考虑到介质的热力学不均匀性。

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