Open Access
Issue
E3S Web of Conf.
Volume 452, 2023
XV International Online Conference “Improving Farming Productivity and Agroecology – Ecosystem Restoration” (IPFA 2023)
Article Number 02025
Number of page(s) 10
Section Geology and Hydrology, Wastewater Treatment
DOI https://doi.org/10.1051/e3sconf/202345202025
Published online 30 November 2023
  1. A. Arifjanov, L. N. Samiev, Z. Abdulkhaev, D. Abduraimova, S. Yusupov, and T. Kaletová, “Modelof urban groundwater level management in drainage systems,” Acta Hydrol. Slovaca, 23(2), 172–179 (2022) doi: 10.31577/ahs-2022-0023.02.0019. [CrossRef] [Google Scholar]
  2. I.P. Kusakin, “Artificiallowering ofgroundwater levels” (M.-L. ONTI, 1935) [Google Scholar]
  3. M. Masket, Flow of homogeneous liquids in a porous medium (2004) [Google Scholar]
  4. G. N. Kamensky, “Fundamentalsofgroundwater dynamics. Second revised and expanded edition,” M. State PublishingHouse ofGeologicalLiterature of the Committee for Geological Affairs under the Council of People's Commissars of the USSR (1943) [Google Scholar]
  5. I. K. Gavich, Theory and practice of using modeling in hydrogeology (Nedra, 1980) [Google Scholar]
  6. B. M. Degtyarev, Drainage in industrial and civil construction (Stroyizdat, 1990) [Google Scholar]
  7. A. Zh. Muftakhov, “Hydrodynamic principles offorecastingflooding ofindustrial sites and filtration calculations of protective drainage in complex hydrogeological conditions,” (Moscow, VNII VODGEO, 1975) [Google Scholar]
  8. A. Zh. Muftakhov, I. V. Korinchenko, N. M. Grigorieva, V. I. Sologaev, and A. P. Shevchik, Forecasts of flooding and calculation of drainage systems in built-up and built-up areas: Reference manual for SNiP VNII VODGEO (AJ Muftakhov Publishing House VNII VODGEO Gosstroy USSR, 1991) [Google Scholar]
  9. A. Arifjanov, L. Samiev, S. Yusupov, D. Khusanova, Z. Abdulkhaev, S. Tadjiboyev, Groundwater Level Analyse In Urgench City With Using Modflow Modeling And Forecasting System in E3S Web of Conferences, 263, 1–8 (2021) [Google Scholar]
  10. Z. Abdulkhaev, M. Madraximov, A. Akramov, A. Arifjanov, Groundwater flow modeling in urban areas in AIP Conference Proceedings, 2789, 1 (2023) [Google Scholar]
  11. A. Arifjanov, M. Otaxonov, and Z. Abdulkhaev, “Model ofgroundwater level control using horizontaldrainage,” Irrig. Melior, 4, 21–26 (2021) [Google Scholar]
  12. A. Z. Erkinjonovich, M. M. Mamadaliyevich, S. M. Axmadjon o’g’li, Reducing the Level of Groundwater In The City of Fergana, Int. J. Adv. Res. Sci. Commun. Technol., 2(2), 67–72 (2021) doi: 10.48175/ijarsct-791. [CrossRef] [Google Scholar]
  13. M. M. Madrakhimov, Z. E. Abdulkhaev, N. E. Tashpulatov, “Farghona Shahar Er Osti Sizot SuvlariSathiniPasaitirish,” Farghona PolitekhnikaInstituti Ilmiy–Tekhnika Journals, 23(1), 54–58 (2019). [Google Scholar]
  14. Z. Abdulkhaev, M. Madraximov, A. Arifjanov, N. Tashpulotov, Optimal methods of controlling centrifugal pumps in AIP Conference Proceedings, 2612(1), 30004. (2023) [Google Scholar]
  15. Z. Abdulkhaev, M. Madraximov, J. Orzimatov, and A. Abdurazaqov, Transition processes during the start-up of the pumping unit of HAPP (2023) [Google Scholar]
  16. J. Dupuit, Études théoriques et pratiques sur le mouvement des eaux dans les canaux découverts et à travers les terrains perméabls: avec des considérations relatives au régime des grandes eaux, au débouché à leur donner, et à la marche des alluvions dans les rivière (Dunod, 1863) [Google Scholar]
  17. M. M. Madraximov, Z. E. Abdulxayev, E. M. Yunusaliev, and A. A. Akramov, “Suyuqlik Va Gaz MexanikasiFanidan Masalalar To’plami. Oliyo‘quvyurtlari talabalari uchun o‘quv qo‘llanma,” Farg’ona, 285–291 (2020) [Google Scholar]
  18. A. Arifjanov, S. Jurayev, T. Qosimov, S. Xoshimov, Z. Abdulkhaev, Investigation of the interaction of hydraulic parameters of the channel in the filtration process, in E3S Web of Conferences, 401, 3074 (2023) [Google Scholar]
  19. M. A. Mirzajanov, M. M. Ergashev, B. A. Otakulov, Steam structure and thermal conductivity of lightweight concrete aggregate in E3S Web of Conferences, 401, 5043 (2023) [Google Scholar]
  20. M. E. U. Madaliev, Z. E. Abdulkhaev, N. E. Toshpulatov, A. A. Sattorov, Comparison of finite-difference schemes for the first order wave equation problem in AIP Conference Proceedings, 2637(1), 40022 (2022) [Google Scholar]
  21. А. Аkrаmоv, S. Jurаеv, S. Xоshimоv, D. Аxаtоv, U. Pаthidinоvа, Оptimum plасеmеnt оf thin-lаyеr еlеmеnts in а hоrizоntаl sеdimеntаtiоn tаnk purifiсаtiоn оf drinking wаtеr. Pаpеr prеsеntеd аt thеIОPСоnfеrеnсеSеriеs: Еаrth аndЕnvirоnmеntаl Sсiеnсе, 1112(1) (2022) http://dоi:10.1088/1755-1315/1112/1/012139 [Google Scholar]
  22. B. A. Abdukarimov, A. A. Kuchkarov, Research of Hydrodynamic Processes Occurring in Solar Air Heater Collectors with a Concave Air Duct Absorber, Applied Solar Energy (English translation of Geliotekhnika), 58(6), 847–853 (2022) [CrossRef] [Google Scholar]
  23. B. A. Abdukarimov, A. Kuchkarov, A Numerical Solution of the Mathematical Model of Air Flow Movement in a Solar Air Heater with a Concave Tube Applied Solar Energy, 58(1), 109–115 (2022) [Google Scholar]
  24. B. Abdukarimov, S. O'tbosarov, A. Abdurazakov, Investigation of the use of new solar air heaters for drying agricultural products. E3S Web of Conferences, 264 EDP Sciences (2021) [Google Scholar]
  25. Y. K. Rashidov, J. T. Orzimatov, K. Y. Rashidov, Z. X. Fayziev, The Method of Hydraulic Calculation of a Heat Exchange Panel of a Solar Water-Heating Collector of a Tube–Tube Type with a Given Nonuniform Distribution of Fluid Flow Along Lifting Pipes Applied Solar Energy (English translation of Geliotekhnika), 56(1), 30–34 (2020) [Google Scholar]
  26. Y. K. Rashidov, K. Y. Rashidov, I. I. Mukhin, Main Reserves for Increasing the Efficiency of Solar Thermal Energy in Heat Supply Systems (Review). Appl. Sol. Energy, 55, 91–100 (2019) https://doi.org/10.3103/S0003701X19020099 [CrossRef] [Google Scholar]

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