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@article{INTO_2018_154_a1, author = {A. A. Adzhieva and V. A. Shapovalov}, title = {Mathematical {Modeling} in the {Problem} of {Detecting} {Hazardous} {Weather}}, journal = {Itogi nauki i tehniki. Sovremenna\^a matematika i e\"e prilo\v{z}eni\^a. Temati\v{c}eskie obzory}, pages = {10--21}, publisher = {mathdoc}, volume = {154}, year = {2018}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/INTO_2018_154_a1/} }
TY - JOUR AU - A. A. Adzhieva AU - V. A. Shapovalov TI - Mathematical Modeling in the Problem of Detecting Hazardous Weather JO - Itogi nauki i tehniki. Sovremennaâ matematika i eë priloženiâ. Tematičeskie obzory PY - 2018 SP - 10 EP - 21 VL - 154 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/INTO_2018_154_a1/ LA - ru ID - INTO_2018_154_a1 ER -
%0 Journal Article %A A. A. Adzhieva %A V. A. Shapovalov %T Mathematical Modeling in the Problem of Detecting Hazardous Weather %J Itogi nauki i tehniki. Sovremennaâ matematika i eë priloženiâ. Tematičeskie obzory %D 2018 %P 10-21 %V 154 %I mathdoc %U http://geodesic.mathdoc.fr/item/INTO_2018_154_a1/ %G ru %F INTO_2018_154_a1
A. A. Adzhieva; V. A. Shapovalov. Mathematical Modeling in the Problem of Detecting Hazardous Weather. Itogi nauki i tehniki. Sovremennaâ matematika i eë priloženiâ. Tematičeskie obzory, Proceedings of the International Conference “Actual Problems of Applied Mathematics and Physics,” Kabardino-Balkaria, Nalchik, May 17–21, 2017, Tome 154 (2018), pp. 10-21. http://geodesic.mathdoc.fr/item/INTO_2018_154_a1/
[1] Adzhieva A. A, Rogozina A. I., Shapovalov V. A., Chochaev Kh. Kh., “Metody obnaruzheniya i borby s opasnymi konvektivnymi protsessami na territorii Severnogo Kavkaza”, Bezopasnost zhiznedeyatelnosti, v. 6, Izd-vo «Novye tekhnologii», 2009, 12–16
[2] Adzhieva A. A., Shapovalov V. A., “Klasternyi analiz v avtomaticheskom vyyavlenii i soprovozhdenii grozovykh ochagov po dannym grozopelengatsionnoi seti”, Inzh. vestn. Dona, 2016, no. 2, 164–171
[3] Ashabokov B. A., Kagermazov A. Kh., Shapovalov A. V., Shapovalov V. A., “Ob odnom podkhode k formirovaniyu nachalnykh uslovii pri modelirovanii konvektivnykh oblakov”, Tr. GGO im. A. I. Voeikova, 2016, no. 582, 159–173
[4] Adzhieva A. A., Shapovalov V. A., Mashukov I. Kh., Skorbezh N. N., Shapovalov M. A., “Obnaruzhenie i raspoznavanie opasnykh konvektivnykh protsessov radiotekhnicheskimi sredstvami”, Izv. vuzov. Sev.-Kav. region. Estestv. nauki, 2014, no. 1 (179), 59–62
[5] Ashabokov B. A., Shapovalov A. V., Kuliev D. D., Prodan K. A., Shapovalov V. A., “Chislennoe modelirovanie termodinamicheskikh, mikrostrukturnykh i elektricheskikh kharakteristik konvektivnykh oblakov na stadii rosta i maksimalnogo razvitiya”, Izv. vuzov. Radiofizika, 56:11—12 (2013), 900–907
[6] Ashabokov B. A., Shapovalov A. V., Konvektivnye oblaka: chislennye modeli i rezultaty modelirovaniya v estestvennykh usloviyakh i pri aktivnom vozdeistvii, Izd-vo KBNTs RAN, Nalchik, 2008
[7] Brylev G. B., Gashina S. B., Nizdoiminoga G. L., Radiolokatsionnye kharakteristiki oblakov i osadkov, Gidrometeoizdat, L., 1986
[8] Vager B. G., “Stokhasticheskoe modelirovanie v meteorologii”, Matematicheskoe modelirovanie, chislennye metody i kompleksy programm, Mezhvuz. temat. sb. tr., SPbGASU, SPb., 2013, 34–39
[9] Penenko V. V., Metody chislennogo modelirovaniya atmosfernykh protsessov, Gidrometeoizdat, L., 1981 | MR
[10] Razumov V. V., Adzhiev A. Kh., Razumova N. V., Glushko A. Ya., Shagin S. I., Kondrateva N. V., Pritvorov A. P., Kolychev A. G., Shapovalov M. A., Opasnye prirodnye protsessy Severnogo Kavkaza, Feoriya, M., 2013
[11] Rusin I. N., Tarakanov G. G., Sverkhkratkosrochnye prognozy pogody, RGGMU, SPb., 1996
[12] Shmeter S. M., Termodinamika i fizika konvektivnykh oblakov, Gidrometeoizdat, L., 1987
[13] Shapovalov V. A., Mashukov I. Kh., Prodan K. A., Skorbezh N. N., Shapovalov M. A., “Nekotorye rezultaty chislennogo modelirovaniya mikrostrukturnykh i elektricheskikh kharakteristik konvektivnykh oblakov”, Mat. Mezhdunar. simp. «Ustoichivoe razvitie: problemy, kontseptsii, modeli», posv. 20-letiyu KBNTs RAN (Nalchik, 2013), v. 2, 216–219
[14] Shapovalov A. V., Stasenko V. N., Kravchenko N. A., Lashmanov Yu. K., Shapovalov V. A., Skorbezh N. N., “Kompleksnaya obrabotka informatsii meteorologicheskikh radiolokatorov i sistem grozopelengatsii”, Sb. tr. II Mezhdunar. nauch. konf. «Innovatsionnye metody i sredstva issledovanii v oblasti fiziki atmosfery, gidrometeorologii, ekologii i izmeneniya klimata», Izdatelstvo SKFU, Stavropol, 2015, 285–289
[15] Conway B. J., “An overview of nowcasting techniques”, Nowcasting and Very Short Range Forecasting/ Proc. of the SAF Training Workshop (EUMETSAT, 1993), 34–43 | Zbl
[16] Dixon M., Wiener G., “TITAN: Thunderstorm identification, tracking, analysis, and nowcasting. A radar-based methodology”, J. Atm. Oceanic Technol., 10 (1993), 785-–797 | 2.0.CO;2 class='badge bg-secondary rounded-pill ref-badge extid-badge'>DOI
[17] Mass C., Mass C. F., “Nowcasting: The next revolution in weather prediction”, Bull. Am. Meteorol. Soc., 2011, 1–23
[18] Mueller C., Saxen T., Roberts R., Wilson J., Betancourt T., Dettling S., Oien N., Yee J., “NCAR auto-nowcast system”, Weather Forecasting, 18 (2003), 545–561 | 2.0.CO;2 class='badge bg-secondary rounded-pill ref-badge extid-badge'>DOI
[19] Wilson J. W., Feng Y., Chen M., Roberts R. D., “Nowcasting challenges during the Beijing Olympics: successes, failures, and implications for future nowcasting systems”, Weather Forecasting, 25 (2010), 1691–1714 | DOI
[20] Xue M., Wang D. H., Gao J. D., Brewster K., Droegemeier K. K., “The advanced regional prediction system (ARPS), storm-scale numerical weather prediction and data assimilation”, Meteorol. Atm. Phys., 82 (2003), 139–170 | DOI