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91.
92.
Vladimir Schmidt Roman Schuh 《Journal of Quantitative Spectroscopy & Radiative Transfer》2011,112(11):1705-1710
Different preconditioning techniques for the iterative method MinRes as solver for the Discrete Sources Method (DSM) are presented. This semi-analytical method is used for light scattering computations by particles in the Mie scattering regime. Its numerical schema includes a linear least-squares problem commonly solved using the QR decomposition method. This could be the subject of numerical difficulties and instabilities for very large particles or particles with extreme geometry. In these cases, we showed that iterative methods with preconditioning techniques can provide a satisfying solution.In our previous paper, we studied four different iterative solvers (RGMRES, BiCGStab, BiCGStab(l), and MinRes) considering the performance and the accuracy of a solution. Here, we study several preconditioning techniques for the MinRes method for a variety of oblate and prolate spheroidal particles of different size and geometrical aspect ratio. Using preconditioning techniques we highly accelerated the iterative process especially for particles with a higher aspect ratio. 相似文献
93.
H. Eduardo Roman 《Journal of statistical physics》1990,58(1-2):375-382
Extensive Monte Carlo simulations of theant-in-the-labyrinth problem on randomL* L* L simple cubic lattices are performed, forL up to 960 on a CRAY-YMP supercomputer. The exponentk for the rms displacementr witht inrt
k
is found to bek=0.190±0.003. As a second approach, large percolation clusters with chemical shells up to 300 are generated on a simple cubic lattice at criticality. The diffusion equation is then solved by using the exact enumeration technique. The corresponding critical exponentd
w
is found to be 1/d
w
=0.250±0.003.On leave from I. Institut für Theoretische für Physik, Universität Hamburg, D-2000 Hamburg, Federal Republic of Germany. 相似文献
94.
I discuss the experiments of Joseph Weber (1919-2000) of the University of Maryland between
1960 and 1973 that were aimed at the detection of gravity waves. He used throughout a quadratic
detector to demodulate his antenna signal, which I analyze and compare to a linear detector.The
latter was used by all of the other groups that entered the field. Of these, Richard Garwin and I at
IBM were one of the first groups to publish, and I discuss in detail our experiments between 1973
and 1975. I then discuss the experiments that were carried out at Bell Labs-Rochester, Glasgow,
Munich-Frascati,Moscow, and Tokyo. I compare the results, all of which were negative, with Webers
claimed detection of large numbers of gravity-wave events, as many as seven per day. I conclude
that these were not in fact gravity waves, but artifacts of his extremely hands-on data-analysis procedures,
which I discuss in detail. Finally, I speculate on how this came about. 相似文献
95.
HT-7U等离子体位移快控电源设计 总被引:1,自引:0,他引:1
针对HT-7U装置等离子体位移快控电源大电流快速响应要求,提出了一种基于电流型变流器的快控电源(FCPS)设计新方案。该方案采用交-直-交拓扑结构,即网侧采用电流型PWP整流器设计。以获得稳定的直流电流及网侧单位功率因数正弦波电流控制;负载侧则采用电流型H桥逆变器设计以实现负载电流的快速跟踪控制。移相PWM控制策略在实现多组变流器并联运行的同时,提高了变流器的等效开关频率控制,从而改善了电流波形品质。模拟系统实验论证了方案的正确性。 相似文献
96.
The design requirement and principle of the deflection magnet for Magnetron and Penning H- ion source are discussed.It is proved that there exists a maximum emittance for the beam that may be transformed by the magnet into a state with equal Twiss parameters of αr=αy and βr =βy,which is the requisite condition to get a minimum emittance at the entrance of RFQ after transporting by a LEBT with solenoids.For this maximum emittance,the corresponding magnetic field gradient index is 1. 相似文献
97.
Quanhua Liu Fuzhong Weng 《Journal of Quantitative Spectroscopy & Radiative Transfer》2008,109(10):1943-1950
Microwave radiances are usually converted into brightness temperatures for data assimilation and retrievals. The Rayleigh-Jeans approximation has been believed to be a good approximation for the conversion at low frequencies, but inaccurate at high frequencies. However, the simplified radiative transfer models under the Rayleigh-Jeans approximation (hereafter referred as BT-RTE) have been successfully applied in radiance simulations for frequencies below 183 GHz, which has somewhat puzzled the radiative transfer community. This paper clarifies the confusion. In addition, the conversion formula for the third and the fourth Stokes components are derived.Simulations for a polarized sensor, the Special Sensor Microwave Imager and Sounder, show that the BT-RTE is generally accurate. Results for a polarimetric sensor, WINDSAT, show that the third and the fourth Stokes radiances should be converted using the exact conversion formula given in this study rather than using a direct Planck function conversion. 相似文献
98.
99.
100.