METHODOLOGY FOR ASSESSING THE INTERACTION OF RUNNING SYSTEMS OF SPRINKLERS WITH WATERLOGGED SOIL
Abstract and keywords
Abstract (English):
The operation of wide-range sprinklers on waterlogged soils is associated with a serious problem of intensive rutting, leading to disruption of irrigation technology, degradation of the soil structure and significant economic losses. This problem becomes particularly acute in the conditions of modern intensive agriculture, where the requirements for the preservation of soil fertility become a priority. The existing disparate methods for assessing the interaction of running systems with the soil do not allow for an adequate comparative analysis and selection of optimal modes of operation of equipment. In the course of the study, a comprehensive comparative analysis of two main groups of techniques was carried out: approaches based on assessing changes in soil bearing capacity under the influence of irrigation regime, and WES models using the cone index as an integral indicator of soil strength. Mathematical statistics were used to verify the results, including the calculation of the mean square deviation, coefficient of variation, Student's t-test, as well as methods of dimensionless parameter transformation and regression analysis. The conducted research made it possible to identify the structural commonality of existing computational dependencies, which became the basis for the development of a fundamentally new approach. The scientific novelty of the work is the proposal of a generalized soil strength parameter that comprehensively takes into account the bearing capacity after irrigation, the cone index, humidity and soil density. Based on this parameter, a universal calculation model has been developed that demonstrates increased accuracy in predicting track depth compared to existing analogues. For the practical application of the model, the weighting coefficients for the main types of soil conditions are determined. The proposed unified approach ensures comparability of results for different types of soils and designs of running systems, which is confirmed by high convergence with the results of previous studies. An important advantage of the model is its adaptability – the ability to adjust coefficients based on field tests for specific operating conditions.

Keywords:
irrigation machine, running system, trafficability, rutting, soil bearing capacity, WES-model, cone index, wide-span equipment
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References

1. Ageykin Ya. S. «Vezdehodnye kolesnye i kombinirovannye dvizhiteli». M., «Mashinostroenie», 1972, 184 str.

2. Analiz zarubezhnyh razrabotok po povysheniyu prohodimosti mnogoopornyh dozhdeval'nyh mashin / A. I. Ryazancev, A. O. Antipov, E. Yu. Evseev, A. A. Ahtyamov // Vestnik Gosudarstvennogo social'no-gumanitarnogo universiteta. – 2019. – № 3(35). – S. 57-62. – EDN DFJRQI.

3. Andreeva, E. V. Povyshenie tyagovo-scepnyh svoystv hodovyh sistem shirokozahvatnyh dozhdeval'nyh mashin krugovogo deystviya "Fregat" / E. V. Andreeva // Inzhenerno-tehnicheskoe obespechenie APK. Referativnyy zhurnal. – 2010. – № 4. – S. 1056. – EDN MWIGPB.

4. Vol'skaya, N. S. Razrabotka metodov rascheta oporno-tyagovyh harakteristik kolesnyh mashin po zadannym dorozhno-gruntovym usloviyam v rayonah ekspluatacii : special'nost' 05.05.03 "Kolesnye i gusenichnye mashiny" : avtoreferat dissertacii na soiskanie uchenoy stepeni doktora tehnicheskih nauk / Vol'skaya Natal'ya Stanislavovna. – Moskva, 2008. – 32 s. – EDN NKKNPN.

5. Vyalov S.S. Reologicheskie osnovy mehaniki gruntov: Ucheb. posobie dlya stroitel'nyh vuzov. – M.: Vysshaya shkola, 1978. – 447 s., il.

6. Gus'kov, A. V. Tyagovo-scepnye svoystva i prohodimost' kolesnyh mashin po gruntam so slaboy nesuschey sposobnost'yu / A. V. Gus'kov // Vestnik Polockogo gosudarstvennogo universiteta. Seriya B: Prikladnye nauki. Promyshlennost'. – 2008. – № 2. – S. 7-15. – EDN UYZXSJ.

7. Zhuravleva, L. A. Snizhenie vozdeystviya hodovyh sistem dozhdeval'nyh mashin na pochvu / L. A. Zhuravleva // Agrarnyy nauchnyy zhurnal. – 2020. – № 5. – S. 82-87. – DOIhttps://doi.org/10.28983/asj.y2020i5pp82-87. – EDN ZMJYFU.

8. K probleme uplotneniya pochvy hodovymi sistemami mnogoopornoy dozhdeval'noy mashiny "Kuban'-LK1" / A. I. Smirnov, A. I. Ryazancev, E. Yu. Evseev, A. O. Antipov // Vserossiyskaya nauchno-prakticheskaya konferenciya, posvyaschennaya 85-letiyu so dnya rozhdeniya professora Anatoliya Mihaylovicha Lopatina (1939-2007) "Inzhenernye resheniya dlya APK", Ryazanskiy gosudarstvennyy agrotehnologicheskiy universitet im. P.A. Kostycheva, 13 noyabrya 2024 goda. – Ryazan', 2024. – S. 46-50. – EDN WSSSKO.

9. Matematicheskaya model' koleobrazovaniya v pochvogruntah pod vozdeystviem lesnyh mashin / S. M. Bazarov, I. A. Barashkov, A. I. Nikiforova, A. M. Hahina // Izvestiya Sankt-Peterburgskoy lesotehnicheskoy akademii. – 2012. – № 198. – S. 86-95. – EDN REJXUL.

10. Nekotorye puti snizheniya soprotivleniya kacheniyu mnogoopornyh elektrificirovannyh dozhdeval'nyh mashin / A. I. Smirnov, A. I. Ryazancev, E. Yu. Evseev [i dr.] // Razvitie nauchno-resursnogo potenciala agrarnogo proizvodstva: prioritety i tehnologii : Materialy I Nacional'noy nauchno-prakticheskoy konferencii s mezhdunarodnym uchastiem, posvyaschennoy pamyati doktora tehnicheskih nauk, professora Nikolaya Vladimirovicha Byshova, Ryazan', 23 noyabrya 2021 goda. Tom Chast' I. – Ryazan': Ryazanskiy gosudarstvennyy agrotehnologicheskiy universitet im. P.A. Kostycheva, 2021. – S. 271-274. – EDN DOOSJR.

11. Obosnovanie trebovaniy na hodovye sistemy mnogoopornyh dozhdeval'nyh mashin / A. I. Ryazancev, S. S. Turapin, S. A. Shlenov [i dr.] // Vestnik meliorativnoy nauki. – 2020. – № 3. – S. 47-52. – EDN YUOWIU.

12. Ocenka parametrov hodovoy sistemy "Kuban'-LK1" pri zaravnivanii kolei / A. I. Ryazancev, A. N. Zazulya, E. Yu. Evseev [i dr.] // Nauka v central'noy Rossii. – 2023. – № 1(61). – S. 116-123. – DOIhttps://doi.org/10.35887/2305-2538-2023-1-116-123. – EDN QERBKM.

13. Ocenka parametrov hodovoy sistemy "Kuban'-LK1" pri zaravnivanii kolei / A. I. Ryazancev, A. N. Zazulya, E. Yu. Evseev [i dr.] // Nauka v central'noy Rossii. – 2023. – № 1(61). – S. 116-123. – DOIhttps://doi.org/10.35887/2305-2538-2023-1-116-123. – EDN QERBKM.

14. Patent № 2782270 C2 Rossiyskaya Federaciya, MPK A01G 25/09, B60B 15/26. mnogoopornaya dozhdeval'naya mashina krugovogo deystviya : № 2020142412 : zayavl. 21.12.2020 : opubl. 25.10.2022 / A. I. Ryazancev, S. S. Turapin, A. O. Antipov [i dr.] ; zayavitel' Federal'noe gosudarstvennoe byudzhetnoe nauchnoe uchrezhdenie "Vserossiyskiy nauchno-issledovatel'skiy institut sistem orosheniya i sel'hozvodosnabzheniya "Raduga". – EDN OGLVIQ.

15. Patent na poleznuyu model' № 183135 U1 Rossiyskaya Federaciya, MPK A01G 25/09. Mnogoopornaya dozhdeval'naya mashina krugovogo deystviya : № 2018116248 : zayavl. 28.04.2018 : opubl. 12.09.2018 / A. I. Ryazancev, G. K. Rembalovich, A. O. Antipov [i dr.] ; zayavitel' Federal'noe gosudarstvennoe byudzhetnoe obrazovatel'noe uchrezhdenie vysshego obrazovaniya "Ryazanskiy gosudarstvennyy agrotehnologicheskiy universitet imeni P.A. Kostycheva" (FGBOU VO RGATU). – EDN OOCXTS.

16. Patent na poleznuyu model' № 203931 U1 Rossiyskaya Federaciya, MPK G01N 3/42, G01N 11/10, E02D 1/00. Samopogruzhnoy pochvomer-penetrometr : № 2020139710 : zayavl. 01.12.2020 : opubl. 28.04.2021 / A. I. Ryazancev, S. S. Turapin, E. Yu. Evseev, A. O. Antipov ; zayavitel' Federal'noe gosudarstvennoe byudzhetnoe nauchnoe uchrezhdenie "Vserossiyskiy nauchno-issledovatel'skiy institut sistem orosheniya i sel'hozvodosnabzheniya "Raduga". – EDN TKNVFL.

17. Patent na poleznuyu model' № 217249 U1 Rossiyskaya Federaciya, MPK A01G 25/09, B62D 57/02. Hodovaya sistema mnogoopornoy dozhdeval'noy mashiny : № 2023102306 : zayavl. 02.02.2023 : opubl. 23.03.2023 / A. I. Ryazancev, S. S. Turapin, E. Yu. Evseev [i dr.] ; zayavitel' Federal'noe gosudarstvennoe byudzhetnoe nauchnoe uchrezhdenie "Vserossiyskiy nauchno-issledovatel'skiy institut sistem orosheniya i sel'hozvodosnabzheniya "Raduga". – EDN CKZDFE.

18. Povyshenie nadezhnosti dvizheniya dozhdeval'noy mashiny "Kuban' - LK1" / A. I. Ryazancev, E. Yu. Evseev, O. V. Antipov, A. O. Antipov // Vestnik meliorativnoy nauki. – 2020. – № 2. – S. 35-38. – EDN WFVFBH.

19. Povyshenie opornyh svoystv mnogoopornoy mashiny "Kuban'-LK1" / A. I. Ryazancev, A. N. Zazulya, E. Yu. Evseev [i dr.] // Nauka v central'noy Rossii. – 2022. – № 6(60). – S. 35-41. – DOIhttps://doi.org/10.35887/2305-2538-2022-6-35-41. – EDN AFIZJD.

20. Ryazancev, A. I. Povyshenie ekspluatacionnyh pokazateley transportnyh sistem mnogoopornyh mashin : uchebnoe posobie dlya studentov vuzov po napravleniyu 23.03.03 "Ekspluataciya transportno-tehnologicheskih mashin i kompleksov", profil' "Avtomobil'nyy servis" / A. I. Ryazancev, A. O. Antipov, E. A. Smirnova. – Kolomna : Gosudarstvennoe obrazovatel'noe uchrezhdenie vysshego obrazovaniya Moskovskoy oblasti "Gosudarstvennyy social'no-gumanitarnyy universitet", 2018. – 246 s. – ISBN 978-5-98492-365-1. – EDN UPCUNE.

21. Ryazancev, A. I. Povyshenie ekspluatacionnyh pokazateley transportnyh sistem mnogoopornyh mashin : uchebnoe posobie dlya studentov vuzov po napravleniyu 23.03.03 "Ekspluataciya transportno-tehnologicheskih mashin i kompleksov", profil' "Avtomobil'nyy servis" / A. I. Ryazancev, A. O. Antipov, E. A. Smirnova. – Kolomna : Gosudarstvennoe obrazovatel'noe uchrezhdenie vysshego obrazovaniya Moskovskoy oblasti "Gosudarstvennyy social'no-gumanitarnyy universitet", 2018. – 246 s. – ISBN 978-5-98492-365-1. – EDN UPCUNE.

22. Tehnologicheskie osobennosti poliva i pokazateli ocenki effektivnosti hodovoy sistemy dozhdeval'noy mashiny "Kuban'-LK1" / A. I. Ryazancev, A. O. Antipov, A. I. Smirnov [i dr.] // Vestnik Ryazanskogo gosudarstvennogo agrotehnologicheskogo universiteta im. P.A. Kostycheva. – 2019. – № 4(44). – S. 110-113. – DOIhttps://doi.org/10.36508/RSATU.2019.10.48.019. – EDN ATAGWG.

23. Hitrov E. G., Hahina A. M., Luhminskiy V. A., Kazakov D. P. Issledovanie svyazi konusnogo indeksa i modulya deformacii razlichnyh tipov gruntov // Resources and Technology. 2017. T. 14, № 4. S. 1-16.

24. Hodovye sistemy shirokozahvatnyh dozhdeval'nyh mashin / L. A. Zhuravleva, O. M. Kuzina, M. V. Karpov [i dr.]. – Moskva : Rossiyskiy gosudarstvennyy agrarnyy universitet - MSHA im. K.A. Timiryazeva, 2023. – 150 s. – ISBN 978-5-00207-258-3. – EDN KUQKSQ.

25. Hodovye sistemy shirokozahvatnyh dozhdeval'nyh mashin / L. A. Zhuravleva, O. M. Kuzina, M. V. Karpov [i dr.]. – Moskva : Rossiyskiy gosudarstvennyy agrarnyy universitet - MSHA im. K.A. Timiryazeva, 2023. – 150 s. – ISBN 978-5-00207-258-3. – EDN KUQKSQ.

26. Reducing Energy Costs in Sprinkler Machine Operation / A. Ryazantsev, A. Smirnov, E. Evseev [et al.] // Innovations in Sustainable Agricultural Systems, Agriculture 4.0 and Precision Agriculture. Volume 1 : Conference Proceedings, Stavropol, Russia Samarkand, Uzbekistan, 05–06 marta 2025 goda. – Cham, Switzerland: Springer Nature Switzerland AG, 2026. – P. 59-68. – DOIhttps://doi.org/10.1007/978-3-031-94098-9_5. – EDN WLMHUJ.

27. Experimental evaluation of traction characteristics of the multi-support irrigation machine "Kuban-LK1" / A. Ryazantsev, E. Evseev, A. Antipov, I. Malko // EPJ Web of Conferences. – 2025. – Vol. 318. – P. 01008. – DOIhttps://doi.org/10.1051/epjconf/202531801008. – EDN WZFQTT.

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