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1

Sherzod, TOSHEV Sherzod TOSHEV. "ERKIN OQIMLI SUVLARDAN SAMARALI ELEKTR ENERGIYA ISHLAB CHIQARISHGA MO'LJALLANGAN MIKRO GES TO'G'RISIDA." "O'ZBEKGIDROENERGETIKA" ilmiy-texnik jurnal 6, no. 3 (2025): 16–24. https://doi.org/10.5281/zenodo.14675513.

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Ushbu maqolada erkin oqimli suvlardan samarali elektr energiya ishlab chiqarishga mo‘ljallangan mikro GESni takomillashtirish, kichik tezlikka ega sinxron generatorni qo‘llash masalalari tadqiq etilgan. Kichik tezlikka ega sinxrongenerator uchun mo‘ljallangan mikro GES fizik tajriba qurilmasi yasalgan. Mikro GES fizik tajriba qurilmasining erkin oqimli suvlarda samarali elektr energiya ishlab chiqarishi uchun tuzilishini takomillashtirish masalasi ko‘rib chiqilgan. Mikro GES fizik tajribaqurilmasining erkin oqimli suvlarda samarali elektr energiya ishlab chiqarish jaray
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2

Xasanov, Diyorjon Ramish o'g'li. "O'ZBEKISTONDA KICHIK GES LAR ISTIQBOLLARI. GES ISHLASH PRINSTIPI." Innovative Development in Educational Activities 2, no. 13 (2023): 107–11. https://doi.org/10.5281/zenodo.8151143.

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<em>Ushbu maqolada O&lsquo;zbekistonda kichik GES lar istiqbollari. GES ishlash</em><strong><em> <em>prinstipi Gidro elektr stanstiyalar jihozlari etarli darajada puxta ishlab</em></em></strong> <strong><em><em>chiqarilgan bo&lsquo;lib, nisbatan oddiy va ishonchliligi ko&lsquo;rib chiqilgan.</em></em></strong>
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3

Matyoqubov, Fayzullo Ortiqboy o`g`li. "SUSTAINABILITY OF HYDROPOWER IS RESOURCE SAVING." Multidisciplinary Journal of Science and Technology 5, no. 5 (2025): 1470–73. https://doi.org/10.5281/zenodo.15561773.

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Qayd etish joiz, keyingi paytda mamlakatimizda energetika sohasini diversifikatsiya qilishga, xususan, quyosh, shamol, suvdan elektr energiyasi olishga katta eʼtibor qaratilmoqda. Viloyatda kichik GESlar qurish orqali elektr energiyasi yetishmovchiligini kamaytirish, energiya mustaqilligini ta&rsquo;minlash va atrof-muhitga salbiy ta&rsquo;sirni kamaytirish mumkin. 1 megavattgacha quyosh va shamol, 5 megavattgacha mikro GESlarning ortiqcha elektr energiyasi kamida 15 yil davomida &ldquo;Hududiy elektr tarmoqlari&rdquo; AJ va davlat tomonidan kafolatli xarid qilinadi
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4

Og'abek, Xamrayev, and I.Y. Davletov. "Kam quvvatli gidroelektr stansiya uchun mos bo'lgan invertor, reduktor, akkumulyator va generatorni tanlash." «Muhandislik va Iqtisodiyot» jurnali 3, no. 4 (2025): 6–15. https://doi.org/10.5281/zenodo.15242520.

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Kam quvvatli gidroelektr stansiyalar (GES) energiya ishlab chiqarishda ekologik toza va iqtisodiy samaralialternativ hisoblanadi. Ushbu maqolada kichik va mikro GESlar uchun optimal texnologik yechimlar &ndash; invertor, reduktor,akkumulyator va generatorlarning tanlovi ilmiy-texnik mezonlar asosida tahlil qilindi. Ishlash prinsipiga ko&lsquo;ra gidravlikturbinalar aktiv va reaktiv turlarga bo&lsquo;linadi, ularning har biri uchun mos qurilma komponentlari aniqlanadi. Xususan,aktiv turdagi chelakli turbinalarning yuqori bosimli sharoitlarda qo&lsquo;llanishi, shuningdek, zamonaviy invertorlar
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5

Abdujolol, BOQIYEV "TIQXMMI" Milliy tadqiqot universiteti Elektr texnologiyalar va elektr uskunalar kafedrasi professori t.f.d. Matkarim IBRAGIMOV "TIQXMMI" Milliy tadqiqot universiteti Elektr texnologiyalar va elektr uskunalar kafedrasi dotsenti t.f.n. Sanjarbek SULTONOV "TIQXMMI" Milliy tadqiqot universiteti Elektr texnologiyalar va elektr uskunalar kafedrasi tayanch doktoranti Sirojiddin NAMOZOV "O'zbekgidroenergo" AJ Atrof-muhit muhofazasi va kadastr xizmati bo'limi boshlig'i. "TOG' VA TOG' OLDI AHOLISI ELEKTR ENERGIYA TA'MINOTIDA GIRLYANDLI MOBIL MIKROGESLARDAN FOYDALANISH." "O'ZBEKGIDROENERGETIKA" ilmiy-texnik jurnal 6, no. 2 (2024): 19–28. https://doi.org/10.5281/zenodo.13989453.

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Maqolada tog&lsquo; va tog&lsquo; oldi hududlarida yashovchi aholi turar joy-larida elektr iste&rsquo;moli uchun shu hududlardan oqib o&lsquo;tuvchi soylar va kichik daryolar-ning suv energiyasidan foydalanib elektr energiyasini ishlab chiqarish ko&lsquo;zda tutilgan.Buning uchun bitta xonadonda mavjud elektr qurilmalarning quvvatlari aniqlangan.Kun davomida kerak bo&lsquo;ladigan quvvatlarning maksimal va minimal quvvatlarihisoblangan. MikroGES quvvatini hisoblash bo&lsquo;yicha nazariy tadqiqotlar olib borilgan vaunga ta&rsquo;sir ko&lsquo;rsatuvchi omillar aniqlangan. Aniqlangan kattaliklar
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6

Yuldashev, Furqat Nurilloyevich. "KICHIK BIZNES VA XUSUSIY TADBIRKORLIKDA XODIMLAR FAOLIYATINING AXBOROT TIZIMLARINI SAMARALI TASHKIL QILISH." YASHIL IQTISODIYOT VA TARAQQIYOT 1, no. 10 (2023): 521–23. http://dx.doi.org/10.55439/ged/vol1_iss10/a99.

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Ushbu maqolada kichik biznes va xususiy tadbirkorlik subyektlari faoliyatida axborot tizimidan samarali foydalanish yo‘llari ochib berilgan. Bu mamlakatda esa kichik biznes va xususiy tadbirkorlik subyektlarida axborot tizimidan samarali foydalanish masalasi ko‘rib chiqilmoqda. Ushbu maqolada kichik biznes va xususiy tadbirkorlikda axborot tizimidan samarali foydalanish haqida so‘z boradi.
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7

Shodmonqulov, Kamoliddin Murodillayevich. "KICHIK SANOAT ZONALARIDAGI KORXONALAR RAQOBATBARDOSHLIGINI OSHIRISH." YASHIL IQTISODIYOT VA TARAQQIYOT 1, no. 10 (2023): 774–77. http://dx.doi.org/10.55439/ged/vol1_iss10/a145.

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Hozirgi vaqtda kichik sanoat zonalari (KSZ) va ulardagi korxonalar raqobatbardoshligini oshirish muhimhisoblanadi. Maqolada kichik sanoat zonalaridagi korxonalar va ular raqobatbardoshligini oshirish yoritilgan. Shuningdek,korxonaning raqobatbardoshligini baholash, raqobat strategiyasini ishlab chiqish va amalga oshirish o‘rganilgan.
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8

Ruziyeva, Dilobar Isomjonovna. "KICHIK BIZNES SUBYEKTLARINI SAMARALI INVESTITSIYALASHNING ILG‘OR XORIJIY DAVLATLAR TAJRIBASI." YASHIL IQTISODIYOT VA TARAQQIYOT 1, no. 10 (2023): 471–80. http://dx.doi.org/10.55439/ged/vol1_iss10/a91.

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Ushbu maqolada kichik bznes subyektlari faoliyatini investitsiyalash va bunda xorijiy davlatlarning tajribalari keltirib o‘tilgan. Ayniqsa, kichik biznes subyektlari faoliyatini tashkil qilish, uni boshqarish va investitsiyalashga oid ma’lumotlar bazasi keltirilgan. Bunda Italiya, Yaponiya, Hindiston, Fransiya kabi mamlakatlarining tajribalari o‘rganilgan.
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9

Qurbonov, Jasurbek Pozilovich. "KICHIK BIZNES VA TADBIRKORLIKNI RIVOJLANTIRISHNING NAZARIY JIHATLARI." YASHIL IQTISODIYOT VA TARAQQIYOT 1, no. 10 (2023): 537–39. http://dx.doi.org/10.55439/ged/vol1_iss10/a102.

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10

Shavqiyev, Erkin. "O‘ZBEKISTON SANOATINING RIVOJLANISH TENDENSIYALARI, MUAMMO VA YECHIMLARI." YASHIL IQTISODIYOT VA TARAQQIYOT 1, no. 10 (2023): 559–64. http://dx.doi.org/10.55439/ged/vol1_iss10/a107.

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Ushbu maqolada sanoat ishlab chiqarishining O‘zbekiston iqtisodiyotida tutgan o‘rni, rivojlanish tendensiyalari, kichik sanoat korxonalari va mikrofirmalarning iste’mol tovarlarini ishlab chiqarishdagi roli yoritilgan.
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11

Kabulova, Nurgo'zal Umirbek qizi. "https://yashil-iqtisodiyot-taraqqiyot.uz/journal/index.php/GED/article/view/1957." Yashil iqtisodiyot va taraqqiyot 1, no. 5 (2024): 9–11. https://doi.org/10.5281/zenodo.12798174.

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Ushbu maqolada kichik va o&lsquo;rta biznesning faoliyatida muhim o&lsquo;rin tutuvchi omillarni belgilash va ularni baholashmetodlari tadqiq qilinadi. Tadqiqot natijalariga ko&lsquo;ra, adabiyotlarda qayd etilgan va empiric tahlil qilingan kichik vao&lsquo;rta biznes faoliyatidagi muhim muvaffaqiyat omillarini quyidagicha: starategik rejalashtirish, boshqaruv layoqati (boshqaruvchitajribasi va malakasi), moliyaviy nazorat, inson resurslari, innovatsiyalarni qo&lsquo;llash, sheriklik munosabatlari.
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12

Amonov, Alisher. "BANKLARARO TO‘LOV TIZIMINI RAQAMLI IQTISODIYOTDAGI ROLINI OSHIRISH CHORALARI." YASHIL IQTISODIYOT VA TARAQQIYOT 1, no. 10 (2023): 244–47. http://dx.doi.org/10.55439/ged/vol1_iss10/a45.

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Bugungi kunda korxona, tashkilot, kichik biznes va tadbirkorlik subyektlarining salmog‘i ortib bormoqda.Bunday holatda esa, ijorat banklarimiz tomonidan taqdim etilayotgan arzon bo‘lgan moliyaviy xizmatlarga talab ortmoqda.Maqolada banklar to‘lov tizimidagi naqdsiz pul o‘tkazmalarini takomillashtirish to‘g‘risida so‘z yuritilgan hamda tegishlixulosalar berilgan.
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13

Avelar, Carolina S., Paulo R. Ribeiro, and Kamy Sepehrnoori. "Deepwater gas kick simulation." Journal of Petroleum Science and Engineering 67, no. 1-2 (2009): 13–22. http://dx.doi.org/10.1016/j.petrol.2009.03.001.

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14

Keller, Alice S. "First GIA Gemological Research Conference Will Kick Off 2006 International Gemological Symposium." Gems & Gemology 40, no. 4 (2004): 283. http://dx.doi.org/10.5741/gems.40.4.283.

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15

Hakimova, S.Z, N.Sh Muzaffarova, and Sh.Sh Gadayev. "GUILLAIN-BARRE SINDROMI VA UNI TASHXISLASHGA ZAMONAVIY YONDASHUV." INTERNATIONAL SCIENTIFIC JOURNAL: LEARNING AND TEACHING 1, no. 2 (2024): 65–69. https://doi.org/10.5281/zenodo.10895189.

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<em>Guillain-Barre&nbsp;&nbsp; (Giyen-Barre)&nbsp;&nbsp; sindromi&nbsp;&nbsp; (GBS)-periferik&nbsp;&nbsp; nerv sistemasining yallig&lsquo;lanish&nbsp; kasalligi&nbsp; bo&lsquo;lib,&nbsp; o&lsquo;tkir&nbsp; bo&lsquo;shashgan&nbsp; falajlikning&nbsp; eng&nbsp; keng&nbsp; tarqalgan sababi&nbsp; bo&lsquo;lib,&nbsp; yillik&nbsp; global&nbsp; kasallanish&nbsp; taxmin&nbsp; erkaklarda&nbsp; ayollarga&nbsp; qaraganda tez-tez&nbsp; uchraydi&nbsp; va&nbsp; kasallanish&nbsp; bemor&nbsp; yoshi&nbsp; kattalashishi&nbsp; bilan&nbsp; ortadi,&nbsp; ammo barcha&nbsp; yosh&nbsp; guruhlariga ta&rsquo;sir&nbsp; q
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16

Sun, Shihui, Zhaokai Hou, Jinyu Feng, and Guoqing Yu. "Research on gas bubble formation using CFD during gas kick." Integrated Ferroelectrics 199, no. 1 (2019): 179–92. http://dx.doi.org/10.1080/10584587.2019.1592612.

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17

Cruz Verdugo, Andrea, and María Eugenia Reyes Escobar. "Análisis de idoneidad didáctica sobre la geometría espacial en el currículo nacional intercultural bilingüe de Ecuador." Revista Anales 1, no. 376 (2019): 67–80. http://dx.doi.org/10.29166/anales.v1i376.1766.

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e presenta el uso de la Noción de Idoneidad Didáctica, específi camente la Guía de Valoración (GVID) (Godino, 2013) compuesta por un sistema de indicadores o criterios adaptados a la geometría espacial por Cruz, Gea y Giacomone (2017). Se presenta la aplicación de esta herramienta en el análisis epistémico del currículo de Educación Intercultural Bilingüe (EIB) Kichwa, para esclarecer si su contenido matemático sobre la visualización espacial tridimensional en los primeros niveles educativos contiene elementos necesarios para promover un aprendizaje idóneo. Se realizan sugerencias de mejora, l
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18

Haciislamoglu, M., and J. Langlinais. "Smearing of a Kick While Being Displaced From a Well." Journal of Energy Resources Technology 113, no. 3 (1991): 154–56. http://dx.doi.org/10.1115/1.2905796.

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Well control operations while drilling with an oil-base mud can suffer several unexpected phenomena. One of these is the dispersion (smearing) of the gas in solution whenever a gas kick is being circulated from the well. If the gas influx has gone into solution, it is very important to predict the movement of this gas-contaminated mud as it is circulated from the well. A computer model of non-Newtonian fluids flowing in an annulus of any eccentricity has been developed with which to accurately model this dispersion. The movement of the gas-contaminated mud is predicted as a consequence of the
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19

Shihui, Sun, Yan Tie, Bi Xueliang, Chen Xun, and Zhang Nan. "Wellbore Flow Analysis of a Gas-Kick Well During Shut-In." Open Fuels & Energy Science Journal 8, no. 1 (2015): 63–67. http://dx.doi.org/10.2174/1876973x01508010063.

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Due to the effects of wellbore storage, shut-in period allows additional inflow of gas bubbles into the annulus. Wellbore and casing pressures rise during shut-in of a gas kick as a consequence of gas upward migration and gas compressibility, which will threaten the safety of well control. Therefore, the variation law of surface and wellbore pressures for a gas kick well during shut-in should be investigated. Based on wellbore storage effect, a new model to the wellbore and casing pressure build-up during shut-in for a gas kick well is developed in this paper. Simulation results show that at d
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20

Zhu, Zhaopeng, Detao Zhou, Donghan Yang, et al. "Early Gas Kick Warning Based on Temporal Autoencoder." Energies 16, no. 12 (2023): 4606. http://dx.doi.org/10.3390/en16124606.

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The timing of the data is not taken into account by the majority of risk warnings today. However, identifying temporal fluctuations in data, which is a vital method for detecting risk, is neglected by the majority of intelligent gas kick warning models now in use. To accurately and early detect the gas kick risk, a temporal series gas kick detection method based on sequence-to-sequence depth autoencoder is proposed in this paper. A depth autoencoder model based on bidirectional long short-term memory (BiLSTM-AE) network is established to encode and compress input series, and decode and reconst
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21

Bybee, Karen. "Simulation and Analysis of a Shallow Gas Kick." Journal of Petroleum Technology 53, no. 01 (2001): 40–41. http://dx.doi.org/10.2118/0101-0040-jpt.

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22

Starrett, Michael P., A. Dan Hill, and Kamy Sepehrnoori. "A Shallow-Gas-Kick Simulator Including Diverter Performance." SPE Drilling Engineering 5, no. 01 (1990): 79–85. http://dx.doi.org/10.2118/18019-pa.

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23

Wang, Zhi-yuan, and Bao-jiang Sun. "Deepwater gas kick simulation with consideration of the gas hydrate phase transition." Journal of Hydrodynamics 26, no. 1 (2014): 94–103. http://dx.doi.org/10.1016/s1001-6058(14)60011-1.

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24

Li, Changsheng, Zhaopeng Zhu, Yueqi Cui, et al. "Intelligent Kick Warning Model Based on Machine Learning." Processes 13, no. 7 (2025): 2162. https://doi.org/10.3390/pr13072162.

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With the expansion of oil and gas exploration and development to complex oil and gas resource areas such as deep and ultra-deep formation onshore and offshore, the kick is one of the high drilling risks, and timely and accurate early kick detection is increasingly important. Based on the kick generation mechanism, kick characterization parameters are preliminarily selected. According to the characteristics of the data and previous research progress, Random Forest (RF), Support Vector Machine (SVM), Feedforward Neural Network (FNN), and Long Short-term Memory Neural Network (LSTM) are establish
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25

KATO, Shohei. "A new two phase simulation of gas kick control." Journal of the Japanese Association for Petroleum Technology 54, no. 6 (1989): 463–73. http://dx.doi.org/10.3720/japt.54.463.

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26

Yudha Halilintar, Sandy Candra, KRT Nur Suhascaryo, and AM Suranto. "Management Of Shallow Gas Kick At Syh-05 Well In West Java Area." Journal of Petroleum and Geothermal Technology 3, no. 1 (2022): 1. http://dx.doi.org/10.31315/jpgt.v3i1.6297.

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SYH-05 Well Drilling Operation West Java Area, was planned to be drilled with a final depth of 1694.65 mMD / 1500 mbpl by directional well drilling. Drilling hazards on the 17½” trajectory were shallow gas, gumbo, and bit balling. Furthermore, on this trajectory, shallow gas handling and optimization of drilling were going to be executed through shallow gas kick countermeasures in the SYH-05 Well. The high gas readings from the SYH-03 Well and the SYH-04 Well are 867 units and 1275 units, respectively, at a depth of 500-520 mMD intervals.After carrying out mitigation for shallow gas mitigation
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27

VV, Srimannarayana,. "Revitalizing Reservoirs Nitrogen Kick-off Techniques for Reactivating Inactive Wells." INTERANTIONAL JOURNAL OF SCIENTIFIC RESEARCH IN ENGINEERING AND MANAGEMENT 08, no. 05 (2024): 1–5. http://dx.doi.org/10.55041/ijsrem34476.

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This study explores the use of nitrogen (N2) injection to rejuvenate inactive wells and enhance reservoir productivity. We analyze the mechanism of N2 injection and its effectiveness in stimulating production from dormant wells through case studies and field applications. Our findings highlight the cost-effectiveness and environmental benefits of N2 kickoff in extending the life of mature reservoirs and maximizing hydrocarbon recovery. By examining operational conditions such as gas injection rate and pressure, we identify optimal conditions using Wellflo® simulations. Key factors like water c
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28

Guo, Yanli, Weiqi Liu, Chaojie Song, Qingtao Gong, and Yao Teng. "Seepage–Diffusion Mechanism of Gas Kick Considering the Filtration Loss of Oil-Based Muds During Deepwater Drilling." Journal of Marine Science and Engineering 12, no. 11 (2024): 2035. http://dx.doi.org/10.3390/jmse12112035.

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As oil and gas exploration gradually advances into deep waters, the combined effects of various types of gas kick and the accurate calculation of the gas-kick volume have gained increasing attention. This study focused on gas kicks from permeable gas-bearing formations, considering the mass transfer of gas in the filtration region of the drilling fluids and revealed the mechanisms of seepage-driven and diffusion-driven gas kicks. Based on seepage mechanics and diffusion theory, a comprehensive model for calculating gas-kick volume was established, considering the synergistic effect of gas-conc
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29

Yin, Hu, Menghan Si, Hongwei Cui, Qian Li, and Wei Liu. "Combining Knowledge and a Data Driven Method for Identifying the Gas Kick Type in a Fractured Formation." Applied Sciences 12, no. 21 (2022): 10912. http://dx.doi.org/10.3390/app122110912.

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The main forms of gas kicks into the wellbore during drilling in fractured carbonate reservoirs are underbalanced pressure and gravity displacement. These two forms of gas kicks have different mechanisms of gas entry into the wellbore and different well control measures, which require the timely identification of the type of gas kick when it occurs. A two-phase flow model with a wellbore-formation coupling was developed, based on the gas kick rate models. The variation characteristics of the bottomhole gas influx rate, the wellbore free gas, the bottomhole pressure, the bottomhole pressure cha
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30

Sule, Idris O., Faisal Khan, and Stephen Butt. "Experimental investigation of gas kick effects on dynamic drilling parameters." Journal of Petroleum Exploration and Production Technology 9, no. 1 (2018): 605–16. http://dx.doi.org/10.1007/s13202-018-0510-z.

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31

Zachopoulos, Fotios N., and Nikolaos C. Kokkinos. "Detection methodologies on oil and gas kick: a systematic review." International Journal of Oil, Gas and Coal Technology 1, no. 1 (2022): 1. http://dx.doi.org/10.1504/ijogct.2022.10052066.

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32

GUO, Yanli, Baojiang SUN, Yonghai GAO, Hao LI, and Changfu WU. "Gas kick during carbonate reservoirs drilling and its risk assessment." Petroleum Exploration and Development 44, no. 3 (2017): 462–69. http://dx.doi.org/10.1016/s1876-3804(17)30053-8.

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33

Zachopoulos, Fotios N., and Nikolaos C. Kokkinos. "Detection methodologies on oil and gas kick: a systematic review." International Journal of Oil, Gas and Coal Technology 33, no. 1 (2023): 1. http://dx.doi.org/10.1504/ijogct.2023.130372.

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34

Carpenter, Chris. "Fiber-Optic Sensing System Allows Real-Time Visualization of Gas-Kick Dynamics." Journal of Petroleum Technology 74, no. 07 (2022): 62–64. http://dx.doi.org/10.2118/0722-0062-jpt.

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This article, written by JPT Technology Editor Chris Carpenter, contains highlights of paper SPE 201539, “Distributed Sensing and Real-Time Visualization of Gas-Kick Dynamics in a Full-Scale Wellbore,” by W.C. Williams, SPE, C.E. Taylor, and M.A. Almeida, SPE, Louisiana State University, et al. The paper has not been peer reviewed. The project described in the complete paper used a 9⅝-in., 5,200-ft-deep wellbore retrofit with distributed fiber optics [distributed temperature sensing (DTS) and distributed acoustic sensing (DTS)] and four permanent pressure/temperature (P/T) gauges to sense and
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35

Evje, Steinar. "Weak Solutions for a Gas-Liquid Model Relevant for Describing Gas-Kick in Oil Wells." SIAM Journal on Mathematical Analysis 43, no. 4 (2011): 1887–922. http://dx.doi.org/10.1137/100813932.

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36

Yin, Hu, Pu Liu, Qian Li, Qiang Wang, and Dewei Gao. "A new approach to risk control of gas kick in high-pressure sour gas wells." Journal of Natural Gas Science and Engineering 26 (September 2015): 142–48. http://dx.doi.org/10.1016/j.jngse.2015.06.014.

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37

Xu, Yang, Jin Yang, Zhiqiang Hu, Dongsheng Xu, Lei Li, and Chao Fu. "A Pattern Recognition Method for Offshore Drilling Gas Kick and Overflow Diagnosis." Processes 11, no. 7 (2023): 1997. http://dx.doi.org/10.3390/pr11071997.

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In offshore drilling, accidents such as gas invasion, overflow, and kicks are unavoidable, and they can escalate into blowouts and other catastrophic events, resulting in casualties and significant economic losses. Therefore, ensuring drilling safety requires precise monitoring of gas invasion and overflow. Currently, most overflow monitoring methods used at drilling sites are based on threshold criteria. However, the monitoring parameters obtained during actual drilling operations often contain noise signals, which makes it challenging for threshold-based methods to achieve a balance between
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38

Jamaludeen, Muhammad Fadrul, and Muhammad Aslam Md Yusof. "MULTIPHASE DRILLING KICK ANNULAR FLOW BEHAVIOUR IN VERTICAL AND INCLINED WELL PROFILES." Platform : A Journal of Engineering 5, no. 3 (2021): 23. http://dx.doi.org/10.61762/pajevol5iss3art14873.

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One of the exponentially important drilling parameter has many misconceptions, and prompt confusion is the drilling kick. The current conventional approach assume a single-phase bubble model and neglect the multiphase flow in the drilling kick calculations, which lead to diversified solutions and misconceptions in well design. Hence, this study presents a mathematical model to analyse the behaviour of gas-liquid flow in different well profiles, which are vertical and deviated wells up to 60 degree inclination. The model analysed the annular pressure and temperature profiles as the influx rise
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Luan, Shi Zhu, Xiao Feng Sun, Ke Lin Wang, and A. Xin Geng. "Summary in Research on Kick Detection Technology." Advanced Materials Research 821-822 (September 2013): 1422–25. http://dx.doi.org/10.4028/www.scientific.net/amr.821-822.1422.

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The complexity and depth of drilling are increasing constantly, so an advanced well control technology is required, and early kick detection as the key to well control is very important. Rapid and accurate kick detection helps to eliminate kick and rebalance the wellbore pressure, which not only improves drilling operation efficiency, but also reduces the probability of blowout, well collapse and other accidents. Accordingly, this paper has analyzed the applicable conditions, advantages and shortcomings, and field applications of the existing kick detection technology including mud pit surface
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Nara, Masaatsu, and Hiraku Sawamura. "New advisory system for shalow gas kick handling and diverter sizing." Journal of the Japanese Association for Petroleum Technology 61, no. 5 (1996): 419–24. http://dx.doi.org/10.3720/japt.61.419.

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Galdino, Jonathan F., Gabriel M. Oliveira, Admilson T. Franco, and Cezar O. R. Negrão. "Gas kick detection and pressure transmission in thixotropic, compressible drilling fluids." Journal of Petroleum Science and Engineering 180 (September 2019): 138–49. http://dx.doi.org/10.1016/j.petrol.2019.05.029.

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Sun, Bao-jiang, Pei-bin Gong, and Zhi-yuan Wang. "Simulation of gas kick with high H2S content in deep well." Journal of Hydrodynamics 25, no. 2 (2013): 264–73. http://dx.doi.org/10.1016/s1001-6058(13)60362-5.

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43

Ling, Kegang, Jun He, Jun Ge, Peng Pei, and Zheng Shen. "A rigorous method to calculate the rising speed of gas kick." Journal of Petroleum Exploration and Production Technology 5, no. 1 (2014): 81–89. http://dx.doi.org/10.1007/s13202-014-0111-4.

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Liu, Pu, Hu Yin, Tian Xiang Wang, and Meng Han Si. "Analysis of the Pressure Response of Kick Control in MPD." Advanced Materials Research 997 (August 2014): 713–16. http://dx.doi.org/10.4028/www.scientific.net/amr.997.713.

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With narrow Density Windows wells and high pressure oil and gas well drilling growing in number, the kick risks becoming increasingly prominent and higher requirements for well control technology being needed, the manage pressure drilling (MPD) technology is used more and more widely. The problems like how to effectively find gas overflowand how to effectively control the overflow in the MPD must be solved.Well must be shuted timely in conventional drilling when overflow happens.The special characteristics of overflow control equipment determines the diversity and effectiveness of its overflow
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Gu, Qifan, Amirhossein Fallah, Tianheng Feng, et al. "A novel dilution control strategy for gas kick handling and riser gas unloading mitigation in deepwater drilling." Journal of Petroleum Science and Engineering 196 (January 2021): 107973. http://dx.doi.org/10.1016/j.petrol.2020.107973.

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Sleiti, Ahmad K., Wahib A. Al-Ammari, Motasem Abdelrazeq, et al. "Comprehensive assessment and evaluation of correlations for gas-oil ratio, oil formation volume factor, gas viscosity, and gas density utilized in gas kick detection." Journal of Petroleum Science and Engineering 207 (December 2021): 109135. http://dx.doi.org/10.1016/j.petrol.2021.109135.

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Sun, Xiaohui, Baojiang Sun, Shuai Zhang, Zhiyuan Wang, Yonghai Gao, and Hao Li. "A new pattern recognition model for gas kick diagnosis in deepwater drilling." Journal of Petroleum Science and Engineering 167 (August 2018): 418–25. http://dx.doi.org/10.1016/j.petrol.2018.04.035.

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Sun, Baojiang, Xiaohui Sun, Zhiyuan Wang, and Yuanhang Chen. "Effects of phase transition on gas kick migration in deepwater horizontal drilling." Journal of Natural Gas Science and Engineering 46 (October 2017): 710–29. http://dx.doi.org/10.1016/j.jngse.2017.09.001.

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Shihui, Sun, Yan Tie, Bi Xueliang, Chen Xun, and Zhang Nan. "Retraction Notice: Wellbore Flow Analysis of a Gas-Kick Well During Shut-In." Open Fuels & Energy Science Journal 9, no. 1 (2016): 138. http://dx.doi.org/10.2174/1876973x01609010138.

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Zhang, Ziheng, Xiaokang Yin, Chaoqiang Sun, et al. "Gas kick monitoring in deep-water drilling risers based on ultrasonic Doppler spectroscopy." Ocean Engineering 321 (March 2025): 120457. https://doi.org/10.1016/j.oceaneng.2025.120457.

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