Computer program for modeling anomalous variations in radon volumetric activity based on the mechanism of its injection into the groundwater flow
Vestnik KRAUNC. Fiziko-matematičeskie nauki, Tome 40 (2022) no. 3, pp. 165-178 Cet article a éte moissonné depuis la source Math-Net.Ru

Voir la notice de l'article

Petropavlovsk-Kamchatsky geodynamic testing area has a network of subsoil gas monitoring stations. During the operation of the network, anomalies were registered in the field of subsoil gases, which precede strong earthquakes with a magnitude of M> 5. According to morphological features, they are divided into two types A and B. The paper describes the developed software for modeling the occurrence of radon anomalies based on a mathematical model of isotope injection under the influence of voltage pulses into a groundwater flow with complete transverse mixing.
Mots-clés : radon
Keywords: radon anomaly, precursor anomaly, mathematical modeling, program, earthquake, forecast.
@article{VKAM_2022_40_3_a13,
     author = {G. A. Katkova and E. O. Makarov and R. I. Parovik},
     title = {Computer program for modeling anomalous variations in radon volumetric activity based on the mechanism of its injection into the groundwater flow},
     journal = {Vestnik KRAUNC. Fiziko-matemati\v{c}eskie nauki},
     pages = {165--178},
     year = {2022},
     volume = {40},
     number = {3},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/VKAM_2022_40_3_a13/}
}
TY  - JOUR
AU  - G. A. Katkova
AU  - E. O. Makarov
AU  - R. I. Parovik
TI  - Computer program for modeling anomalous variations in radon volumetric activity based on the mechanism of its injection into the groundwater flow
JO  - Vestnik KRAUNC. Fiziko-matematičeskie nauki
PY  - 2022
SP  - 165
EP  - 178
VL  - 40
IS  - 3
UR  - http://geodesic.mathdoc.fr/item/VKAM_2022_40_3_a13/
LA  - ru
ID  - VKAM_2022_40_3_a13
ER  - 
%0 Journal Article
%A G. A. Katkova
%A E. O. Makarov
%A R. I. Parovik
%T Computer program for modeling anomalous variations in radon volumetric activity based on the mechanism of its injection into the groundwater flow
%J Vestnik KRAUNC. Fiziko-matematičeskie nauki
%D 2022
%P 165-178
%V 40
%N 3
%U http://geodesic.mathdoc.fr/item/VKAM_2022_40_3_a13/
%G ru
%F VKAM_2022_40_3_a13
G. A. Katkova; E. O. Makarov; R. I. Parovik. Computer program for modeling anomalous variations in radon volumetric activity based on the mechanism of its injection into the groundwater flow. Vestnik KRAUNC. Fiziko-matematičeskie nauki, Tome 40 (2022) no. 3, pp. 165-178. http://geodesic.mathdoc.fr/item/VKAM_2022_40_3_a13/

[1] Kobrunov A. I., Matematicheskie metody modelirovaniya v prikladnoi geofizike (izbrannye glavy), Funktsionalno-analiticheskie osnovy, v. 1, UGTU, Ukhta, 2014, 224 pp.

[2] Grammakov A. G., “On the influence of same factors in the spreading of radioactive emanations under natural conditions”, Zhurn. Geofiziki, 6 (1936), 123-148

[3] Grammakov A. G., Nikonov A. I., Tarfeev G. P., Radiometricheskie metody poiskov i razvedki uranovykh rud, Gosgeoltekhizdat, M., 1957, 610 pp.

[4] Novikov G. F., Kapkov Yu. N., Radioaktivnye metody razvedki, Nedra, L., 1965, 759 pp.

[5] Miklyaev P. S., Ziangirov R. S., “Vliyanie prirodnykh faktorov na plotnost potoka radona iz grunta”, Sergeevskie chteniya, v. 3, GEOS, M., 2001, 118-123

[6] Yafasov A. Ya., Mirakhmedova N. M., Yafasov A. A., “Radonovoe pole Tashkentskogo Megapolisa”, ANRI, 32:1 (2003.), 29-33

[7] Tsapalov A. A., “Rezultaty dolgovremennykh issledovanii zakonomernostei povedeniya OA i EROA radona v zdaniyakh moskovskogo regiona”, ANRI, 61:3 (2011), 52-64

[8] Bulashevich Yu. P., Utkin V. I., Yurkov A. K., Nikolaev V. V., “Izmenenie kontsentratsii radona kak predvestnik gornykh udarov v glubokikh shakhtakh”, Gornyi zhurnal, 1996, no. 6, 19-22

[9] Utkin V. I., Yurkov A. K., “Radon i problema tektonicheskikh zemletryasenii”, Vulkanologiya i seismologiya, 1997, no. 4, 82-94

[10] Firstov P. P., “Monitoring ob'emnoi aktivnosti podpochvennogo radona ($^{222}$Rn) na Paratunskoi geotermalnoi sisteme v 1997-1998 gg. s tselyu poiska predvestnikov silnykh zemletryasenii Kamchatki”, Vulkanologiya i seismologiya, 1999, no. 6, 22-31

[11] Yakovleva V. S., Karataev V. D., “Plotnost potoka radona s poverkhnosti zemli kak vozmozhnyi indikator izmenenii napryazhenno-deformirovannogo sostoyaniya geologicheskoi sredy”, Vulkanologiya i seismologiya, 2007., no. 1, 74-77

[12] Firstov P. P., Makarov E. O., Dinamika podpochvennogo radona na Kamchatke i silnye zemletryaseniya, KamGU im. Vitusa Beringa, P.-Kamchatskii, 2018, 147 pp.

[13] Gudzenko V. V., Dubinchuk V. T., Izotopy radiya i radon v prirodnykh vodakh, Nauka, M., 1987, 45 pp.

[14] Bondarenko V. M., Ivanova T. M., “Perenos radona v gornom massive: modeli i eksperimentalnye dannye. Statya I”, Izv. vuzov. Geologiya i razvedka, 1999, no. 4, 96-107

[15] Parovik R. I., Matematicheskoe modelirovanie neklassicheskoi teorii emanatsionnogo metoda, KamGU im. V. Beringa, P.-Kamchatskii, 2014, 80 pp.

[16] Varhegyi A., Baranyi I., Somogyi G. A., “Model for the vertical subsurface radon transport in \guillemotleft geogas\guillemotright microbubbles”, Geophys. Transactions, 32:3 (1986), 235-253

[17] Dubinchuk V. T., “Radon as a precursor of earthquakes”, Isotopic geochemical precursors of earthquakes and volcanic eruption, Proceedings of an Advisory Group Meeting held in Vienna, Vienna, 9-12 September 1991, Vienna, 1991, 6-22

[18] Etiope G., Martinelli G., “Migration of carrier and trace gases in the geosphere: an overview”, Phys. Earth Planet. Inter., 129 (2002), 185-204 | DOI

[19] Yakovleva V. S., Parovik R. I., “Solution of diffusion-advection equation of radon transport in many-layered geological media”, Nukleonika, 55:4 (2010), 601-606

[20] Makarov E. O., Otklik v dinamike podpochvennogo radona na podgotovku silnykh zemletryasenii Kamchatki i severo-zapadnoi okrainy Tikhogo okeana, avtoref. dis. \ldots kand. fiz.-mat. nauk, P.-Kamchatatskii, 2017, 22 pp.

[21] Firstov P. P., Makarov E. O., “Reaktsiya podpochvennogo i rastvorennogo v podzemnykh vodakh radona na izmenenie napryazhenno-deformirovannogo sostoyaniya zemnoi kory”, Seismicheskie pribory, 51:4 (2015), 58-80

[22] Makarov E. O., Firstov P. P., Voloshin V. N., “Apparaturnyi kompleks dlya registratsii kontsentratsii podpochvennykh gazov s tselyu poiska predvestnikovykh anomalii silnykh zemletryasenii Yuzhnoi Kamchatki”, Seismicheskie pribory, 48:1 (2012), 5-14

[23] Firstov P. P., Makarov E. O., Akbashev R. R., “Monitoring kontsentratsii pochvennykh gazov na Petropavlovsk-Kamchatskom geodinamicheskom poligone v svyazi s prognozom silnykh zemletryasenii”, Seismicheskie pribory, 51.:1 (2015), 60-80

[24] Firstov P. P. i dr., “Poisk predvestnikovykh anomalii silnykh zemletryasenii po dannym monitoringa podpochvennykh gazov na Petropavlovsk-Kamchatskom geodinamicheskom poligone”, Geosistemy perekhodnykh zon, 2:1 (2018), 16-32

[25] Ogilvi A. N., “O kaptazhe radioaktivnykh vod i o kolebaniyakh ikh radioaktivnosti v zavisimosti ot debita”, Izd. Balneologich. in-ta KMV, 6 (1928), 85–93