Chichinina Tatiana

Birth place
Novosibirsk
Direction preparation
Tatiana Chichinina graduated from Novosibirsk State University (1990) and received her PhD in the Institute of Numerical Mathematics and Mathematical Geophysics, Novosibirsk, Russia (1998); then worked for ten years at the Trofimuk Institute of Petroleum Geology and Geophysics. In 2001, Tatiana was personally invited to the Mexican Petroleum Institute in Mexico City (that is “Instituto Mexicano del Petroleo, IMP”) as a Seismic-Anisotropy specialist for IMP, and she successfully works there up today.
Qualification
Tat'yana Innokent'evna Chichinina okonchila Novosibirskiy gosudarstvennyy universitet, Geologo-geofizicheskiy fakul'tet (v 1990 g.) po special'nosti «Geofizicheskie metody poiska i razvedki poleznyh iskopaemyh». Zaschitila kandidatskuyu dissertaciyu (v 1998 g.) v Institute vychislitel'noy matematiki i matematicheskoy geofiziki, g. Novosibirsk. Kandidat fiz-mat. nauk. Tema dissertacii «Girotropiya mikroneodnorodnyh sred dissimmetrichnogo stroeniya.» Special'nost' VAK RF04.00.22 S 1990 po 2001 god Tat'yana uspeshno rabotala v Institute neftegazovoy geologii i geofiziki imeni Trofimuka. Poluchila dolzhnost' «Starshiy nauchnyy sotrudnik». S 2001 po nastoyaschee vremya rabotaet v Meksikanskom neftyanom institute v g. Mehiko, Meksika ( «Instituto Mexicano del Petroleo, IMP»). Obschiy stazh raboty – 35 let.
Academic degree
candidate of physical and mathematical sciences from 1998 until now
Science rang
docent, Russian Academy of Sciences from 1999 until now
Academic rank
starshiy nauchnyy sotrudnik from 1997 until now
Education
Workplaces
  1. Mexican Petroleum Institute ,
Scientific interests
VAK Russia 1.1.8 Механика деформируемого твердого тела
VAK Russia 1.1.8 Механика деформируемого твердого тела
VAK Russia 1.1.8 Механика деформируемого твердого тела
Achievements
“Chichinina T., Romero-Salcedo M. and Del Valle R., 2022, Method and parallel processing system to estimate fracture orientation using variation of seismic attenuation. PATENT No. 391961 has been issued by the Mexican Institute of Industrial Property (IMPI). Issue date: April 21, 2022 –Patent Owner: Instituto Mexicano del Petroleo.
Scientific and pedagogical activity
Teaching experience a. Taught the course "Technical assistance on seismic anisotropy applications for fracture characterization", for staff of Ecopetrol, Colombian Petroleum Institute, 12-16 September 2005, Bucaramanga, Colombia. b. Taught the course for PEMEX staff "3D/3C Data Processing: Separation of converted waves PS1 and PS2", February 10, 2012, at the IMP Processing Center in Villahermosa (Tabasco), Mexico. c. Taught the course for PEMEX staff "Analysis of scattered waves in detection of microseisms due to micro-fractures’ growth”. Poza Rica, Mexico, December 17, 2013. Advisor of Master and PhD theses • MSc, 2003, Olimpia Sole Salgado, "HTI Modeling of carbonate reservoirs." Instituto Politecnico Nacional, Escuela superior de Ingeneria y Arquitectura, (IPN ESIA), Unidad Ticoman, Mexico D.F. • MSc, 2007, Erika Jaimes Solis, "Method for estimating the direction of fractures with analysis of seismic quality factor Q". The same institution as in the latter case. • MSc, 2007, Luciano Hidalgo Rosas. “Azimuthal AVO analysis for estimation of the fracture direction in naturally fractured reservoirs." The same institution. • MSc, 2011, Jorge Abraham Camacho Bonilla. “Quality Factor Q in Seismic Reservoir Characterization of Sandstones and Carbonates”. The same institution. • PhD, 2016, Alfonso Reyes Pimentel, "Characterization of unconventional reservoirs in Mexico." Universidad Nacional Autónoma de México (UNAM), Posgrado en Ciencias de la Tierra. LANGUAGES:  English,  Spanish,  Russian. MEMBERSHIP Active Member of the Society of Exploration Geophysicists (SEG), Member of the European Association of Geoscientists and Engineers (EAGE) and Member of the Society of Petroleum Engineering (SPE).
Contribution to science
Glavnyy nauchnyy vklad Tat'yany Chichininoy v razvitie seysmorazvedki sostoit izobretenii metoda QVOA dlya obnaruzhenii treschinovatyh kollektorov nefti i gaza. Ee metod byl zapatentovan v Meksike. V kachestve teoreticheskoy osnovy metoda QVOA, Tat'yana razrabotala matematicheskuyu model' vyazkouprugoy (pogloschayuschey) sredy, v kotoroy proyavlyaetsya Q-anizotropiya. A imenno, ona predlozhila vvesti kompleksnoznachnye (mnimye) dobavki (tak nazyvaemye «kompleksnoznachnye oslablenosti treschin») v tenzor uprugosti (transversal'no-izotropnoy sredy), sdelav etot tenzor kompleksnoznachnym. Ispol'zuya sobstvennuyu matematicheskuyu model', Tat'yana razrabotala metod QVOA dlya opredeleniya napravleniya treschinovatosti na osnove analiza azimutal'nyh izmeneniy v zatuhanii prodol'nyh otrazhennyh voln. Metod nazyvaetsya QVOA po analogii s izvestnym metodom AVOA, kotoryy tozhe prednaznachen dlya opredeleniya azimuta seti treschin po azimutal'nym variaciyam koefficienta otrazheniya prodol'nyh voln: “Q versus offset and azimuth”. Tat'yana izlozhila sut' metoda QVOA v stat'e, opublikovannoy v zhurnale Geophysics (2006) («QVOA analysis: P-wave attenuation anisotropy for fracture characterization», [«Analiz QVOA: anizotropiya zatuhaniya P-voln dlya opredeleniya harakteristik treschin»]). Zatem (v 2009) ona podtverdila teoriyu Q-anizotropii s pomosch'yu dannyh ul'trazvukovogo eksperimenta i opublikovala eti rezul'taty v Geophysics (2009), «Attenuation anisotropy in the linear-slip model: Interpretation of physical modeling data» [«Anizotropiya zatuhaniya v modeli lineynogo skol'zheniya: Interpretaciya dannyh fizicheskogo modelirovaniya»]. Eti dve stat'i imeyut samye vysokie indeksy citirovaniya sredi vseh statey Tat'yany (a imenno, 117 i 87 citirovaniy sootvetstvenno (po rezul'tatam poiska v Google Scholar). S teh por metod postoyanno sovershenstvuetsya, naprimer, nedavno Tat'yanoy s soavtorami byla opublikovana uluchshennaya versiya metoda QVOA (trudy konferencii SEG-2019), "Fracture-direction estimation by QVOA analysis: Validation by physical modeling". A takzhe – dve sovsem svezhie stat'i po QVOA v 2024 godu (opublikovannye v sbornike trudov kitayskoy konferencii “IFEDC”): • “Seismic Characterization of Rock Fractures by Q-Anisotropy Analysis (QVOA) Validated by Numerical Simulation”. https://doi.org/10.1007/978-981-97-0483-5_63 • “Seismic Fracture Characterization by QVOA Analysis Using Simulated Seismic Data by Physical Modeling”. https://doi.org/10.1007/978-981-97-0483-5_65
Participation in
Krome metoda QVOA, v ramkah Proekta po Mnogovolnovoy Seysmorazvedke (v IMP), Tat'yana s soavtorami organizovala obrabotku obmennyh voln (PS) v Meksike (morskie dannye 3D-4C, Kantarel', Meksikanskiy zaliv). Tat'yana s novosibirskimi kollegami primenili metod Obolencevoy-Gorshkaleva dlya razdeleniya poperechnyh voln (PS1 i PS2) posredstvom polyarizacionnogo analiza, to est' «Metod funkcii vzaimnoy korrelyacii dlya razdeleniya poperechnyh voln S1 i S2 v azimutal'no-anizotropnyh sredah i primer ego primeneniya na real'nyh dannyh» (stat'ya SEG-2012), “Cross-correlation-function method for separation of shear waves S1 and S2 in azimuthally anisotropic media and an example of its application with real data”. Krome togo, Tat'yana zanimaetsya modnoy temoy «Machine Learning”, k kotoroy otnosyatsya sleduyuschie (ee s soavtorami) publikacii: «Mashinnoe obuchenie dlya opredeleniya parametrov treschinovatosti porod-kollektorov po seysmicheskim zapisyam otrazhennyh voln» (“Machine learning for fracture parameter estimation in fractured reservoirs from seismic data”). Dopolnitel'no, Tat'yana interesuetsya prognozirovaniem kollektorskih svoystv (FES); po etoy teme u nee s kollegami est' neskol'ko statey (naprimer, «Prognozirovanie fil'tracionno-emkostnyh svoystv porod po dannym seysmorazvedki na osnove mnogomernogo veroyatnostnogo analiza» (“Prediction of Reservoir Properties from Seismic Data by Multivariate Geostatistics Analysis"). Rezul'taty issledovaniy po etim temam opublikovany v dokladah na konferenciyah SPE (2020, 2021), EAGE (2020, 2021) i «Geomodel'» (2024). Teper', pereydem k teme po anizotropii slancev. Zametim, chto pervye dve stat'i Tat'yany po etoy teme byli opublikovany v zhurnale «Geophysics» (2017; 2018); odna iz nih – v soavtorstve so L'vom Vernikom (2018), “Physical bounds on C13 and anisotropy parameter δ for organic mudrocks” [«Fizicheskie granicy oblasti dopustimyh znacheniy dlya komponenty tenzora uprugosti C13 i parametra anizotropii δ v organicheskih glinistyh slancah»]. Zametim, chto eta stat'ya uzhe imeet 19 citirovaniy. Nedavno Tat'yana predlozhila sposob opredeleniya parametrov anizotropii v vertikal'no-treschinovatyh slancah (v ortorombicheskoy modeli), vpervye dolozhennyy eyu na konferencii «Nauka o slancah-2025» (7-8 aprelya 2025, Moskva), doklad «Anizotropiya slancev: ortorombicheskaya model'». Eto tema nastoyaschey stat'i «Ortorombicheskaya model' vertikal'no-treschinovatyh slancev», predstavlennoy dlya opublikovaniya v zhurnale «Vestnik AGGI».
Deputieship
Grants
1999 – Awarded by the First Prize in Young Researchers’ Best Papers Contest organized by the Siberian Branch of the Russian Academy of Sciences (SB RAS, the city of Novosibirsk).
I was reviewed
Location
Mexico, Mexico

Publications

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