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[1] Marshak A., Davis A., Cahalan R. F., and Wiscombe W. J., “Bounded cascade models as non-stationary multifractals”, Phys. Rev. E, 49 (1994), 55–69 | DOI
[2] Resnick S., Samorodnitsky G., Gilbert A., and Willinger W., “Wavelet analysis of conservative cascades”, Bernoulli J., 9:1 (2003), 97–135 | DOI | MR | Zbl
[3] Kuzmin G. A., Soboleva O. N., “Podsetochnoe modelirovanie filtratsii v poristykh avtomodelnykh sredakh”, Prikladnaya mekhanika i tekhnicheskaya fizika, 43:4 (2002), 115–126 | MR
[4] Cahalan R. F., Ridgway W., Wiscombe W. J., Bell T. L., and Snider J. B., “The albedo of fractal stratocumulus clouds”, J. Atmos. Sci., 51:16 (1994), 2434–2455 | 2.0.CO;2 class='badge bg-secondary rounded-pill ref-badge extid-badge'>DOI
[5] Marshak A., Davis A., Wiscombe W. J., and Titov G., “The verisimilitude of the independent pixel approximation used in cloud remote sensing”, Remote Sens. Environ., 52 (1995), 71–78 | DOI
[6] Schertzer D., Lovejoy S., “Physical modeling and analysis of rain and clouds by anisotropic scaling multiplicative processes”, J. Geophys. Res., 92 (1987), 9693–9714 | DOI
[7] Barker H. W., Davies J. A., “Cumulus cloud radiative properties and the characteristics of satellite radiance wavenumber spectra”, Remote Sens. Environ., 42 (1992), 51–64 | DOI | MR
[8] Cahalan R. F., “Bounded cascade clouds: albedo and effective thickness”, Nonlinear Proc. Geophys., 1 (1994), 156–176
[9] Marshak A., Davis A., Wiscombe W. J., and Cahalan R. F., “Scale invariance in liquid water distribution in marine stratocumulus. Part I: Spectral properties and stationarity issues”, J. Atmos. Sci., 53:11 (1996), 1538–1558 | 2.0.CO;2 class='badge bg-secondary rounded-pill ref-badge extid-badge'>DOI
[10] Marshak A., Davis A., Wiscombe W. J., and Cahalan R. F., “Scale invariance in liquid water distribution in marine stratocumulus. Part II: Multifractal properties and intermittency issues”, J. Atmos. Sci., 54:11 (1997), 1423–1444 | 2.0.CO;2 class='badge bg-secondary rounded-pill ref-badge extid-badge'>DOI
[11] Zhuravleva T. B., Marshak A. L., “K voprosu o validatsii puassonovskoi modeli razorvannoi oblachnosti”, Izvestiya RAN. Fizika atmosfery i okeana, 41:6 (2005), 783–797
[12] Ogorodnikov V. A., Prigarin S. M., Numerical Modelling of Random Processes and Fields: Algorithms and Applications, VSP, Utrecht, 1996 | MR | Zbl
[13] Prigarin S. M., Metody chislennogo modelirovaniya sluchainykh protsessov i polei, Izd-vo IVMiMG SO RAN, Novosibirsk, 2005
[14] Mikhailov G. A., Voitishek A. V., Chislennoe statisticheskoe modelirovanie. Metody Monte-Karlo, Izd. tsentr “Akademiya”, M., 2006
[15] Piranashvili Z. A., “Nekotorye voprosy statistiko-veroyatnostnogo modelirovaniya sluchainykh protsessov”, Voprosy issledovaniya operatsii, Metsniereba, Tbilisi, 1966, 53–91
[16] Mikhailov G. A., “Modelirovanie sluchainykh protsessov i polei na osnove tochechnykh potokov Palma”, Dokl. AN SSSR, 262:3 (1982), 531–535 | MR
[17] Mikhailov G. A., Voytishek A. V., “Numerical constructing of special non-Gaussian fields in solving problems of the radiation transfer theory for stochastically inhomogeneous media”, Russian J. of Numer. Analysis and Mathematical Modelling, 10:3 (1995), 213–232 | DOI | MR | Zbl
[18] Prigarin S. M., Gubina N. I., and Oppel U. G., “Numerical modelling of stochastic fields of vertical optical thickness for stratocumulus clouds”, Current Problems in Atmospheric Radiation, IRS 2000, eds. W. L. Smith and Yu. M. Timofeyev, Deepak Publishing, Hampton, Virginia, 2001, 257–260