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Yu. V. Mishchenko 《Measurement Techniques》1996,39(8):832-838
The features of the interference refractometry of turbulent gas flows, which are a special case of a randomly inhomogeneous
medium, are considered. Recommendations are made on the quasi-optimal choice of the parameters of the refractometer system.
Translated from Izmeritel’naya Tekhnika, No. 8, pp. 31–35, August, 1996. 相似文献
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M. V. Vartanov M. V. Arkhipov V. K. Petrov R. S. Mishchenko 《Russian Engineering Research》2017,37(9):814-816
A two-point contact model in robotic assembly is considered, in a quasi-static formulation. In the experiments, a robot equipped with a force and torque sensor is employed. The consistency of theoretical analysis with physical experiments is discussed. 相似文献
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ABSTRACT A method and a device for determination of the effective diffusion coefficient of active solvents in composite polymeric materials (CPM) based on cellulose derivatives are proposed and examined. This method accounts for anomalous mass transfer phenomena, considerable shrinkage and changes of sorption capacity of the CPM specimen allowing selection of the rational technological regime. Results of experimental studies on diffusion of acetone and ethanol in cellulose nitrate with various degrees of substitution are given as examples. 相似文献
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A. V. Litvinov S. E. Mishchenko V. V. Shatskii 《Journal of Communications Technology and Electronics》2017,62(10):1101-1108
An iterative method for the amplitude–phase synthesis of antenna arrays based on control of the set of partial beams is proposed. In this method, two additional partial beams are added to the radiation pattern at each step. The shape of each beam is optimized with consideration for the difference between the synthesized and specified radiation patterns. Parameters specifying the shape of additional partial beams are chosen with the help of the genetic algorithm. The results of numerical studies allowing comparison of the proposed synthesis method to the least-squares method and the method based on control of the set of identical partial beams are presented. 相似文献
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Inherent and apparent scattering properties of coated or uncoated spheres embedded in an absorbing host medium 总被引:1,自引:0,他引:1
Yang P Gao BC Wiscombe WJ Mishchenko MI Platnick SE Huang HL Baum BA Hu YX Winker DM Tsay SC Park SK 《Applied optics》2002,41(15):2740-2759
The conventional Lorenz-Mie formalism is extended to the case for a coated sphere embedded in an absorbing medium. The apparent and inherent scattering cross sections of a particle, derived from the far field and near field, respectively, are different if the host medium is absorptive. The effect of absorption within the host medium on the phase-matrix elements associated with polarization depends on the dielectric properties of the scattering particle. For the specific cases of a soot particle coated with a water layer and an ice sphere containing an air bubble, the phase-matrix elements -P12/P11 and P33/P11 are unique if the shell is thin. The radiative transfer equation for a multidisperse particle system embedded within an absorbing medium is discussed. Conventional multiple-scattering computational algorithms can be applied if scaled apparent single-scattering properties are applied. 相似文献
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Efficient finite-difference time-domain scheme for light scattering by dielectric particles: application to aerosols 总被引:3,自引:0,他引:3
We have examined the Maxwell-Garnett, inverted Maxwell-Garnett, and Bruggeman rules for evaluation of the mean permittivity involving partially empty cells at particle surface in conjunction with the finite-difference time-domain (FDTD) computation. Sensitivity studies show that the inverted Maxwell-Garnett rule is the most effective in reducing the staircasing effect. The discontinuity of permittivity at the interface of free space and the particle medium can be minimized by use of an effective permittivity at the cell edges determined by the average of the permittivity values associated with adjacent cells. The efficiency of the FDTD computational program is further improved by use of a perfectly matched layer absorbing boundary condition and the appropriate coding technique. The accuracy of the FDTD method is assessed on the basis of a comparison of the FDTD and the Mie calculations for ice spheres. This program is then applied to light scattering by convex and concave aerosol particles. Comparisons of the scattering phase function for these types of aerosol with those for spheres and spheroids show substantial differences in backscattering directions. Finally, we illustrate that the FDTD method is robust and flexible in computing the scattering properties of particles with complex morphological configurations. 相似文献