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Academic literature on the topic 'Насосний режим'
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Journal articles on the topic "Насосний режим"
Bosak, M. P., M. S. Odukha, O. H. Hvozdetskiy, and V. Ye Fasuliak. "Дослідження експлуатаційного режиму свердловин водозабору та водогону." Scientific Bulletin of UNFU 29, no. 9 (December 26, 2019): 126–31. http://dx.doi.org/10.36930/40290922.
Full textЯшин, Антон Николаевич, and Марат Ильгизович Хакимьянов. "УРАВНОВЕШЕННОСТЬ УСТАНОВОК СКВАЖИННЫХ ШТАНГОВЫХ НАСОСОВ НА ОСНОВЕ АНАЛИЗА ВАТТМЕТРОГРАММ." Izvestiya Tomskogo Politekhnicheskogo Universiteta Inziniring Georesursov 332, no. 8 (August 22, 2021): 36–44. http://dx.doi.org/10.18799/24131830/2021/8/3303.
Full text(Anatoliy M. Zyuzev), Зюзев Анатолий Михайлович, and Бубнов Матвей Владимирович (Matvei V. Bubnov). "ДИАГНОСТИКА УРАВНОВЕШЕННОСТИ ШТАНГОВОЙ ГЛУБИННОЙ НАСОСНОЙ УСТАНОВКИ ПО ВАТТМЕТРОГРАММЕ." Izvestiya Tomskogo Politekhnicheskogo Universiteta Inziniring Georesursov 330, no. 4 (April 22, 2019): 178–87. http://dx.doi.org/10.18799/24131830/2019/4/226.
Full textЦвіркун, Леонід, Лілія Бешта, and Сергій Ткаченко. "АЛГОРИТМИ ЕНЕРГОЕФЕКТИВНОГО ВИКОРИСТАННЯ ШАХТНИХ ВОДОВІДЛИВНИХ УСТАНОВОК ІЗ ЗАСТОСУВАННЯМ МЕТОДУ ПЕРЕДПІКОВОГО ВМИКАННЯ." System technologies 5, no. 136 (May 29, 2021): 88–97. http://dx.doi.org/10.34185/1562-9945-5-136-2021-09.
Full textБахтизин, Рамиль Назифович, Камил Рахматуллович Уразаков, Салават Фаритович Исмагилов, and Филюс Фанизович Давлетшин. "ДВУХУРОВНЕВЫЙ МЕТОД ДИАГНОСТИКИ ТЕХНИЧЕСКОГО СОСТОЯНИЯ ШТАНГОВЫХ НАСОСНЫХ УСТАНОВОК." Izvestiya Tomskogo Politekhnicheskogo Universiteta Inziniring Georesursov 331, no. 2 (February 18, 2020): 188–98. http://dx.doi.org/10.18799/24131830/2020/2/2505.
Full textПачин, Максим Гелиевич, Антон Николаевич Яшин, Андрей Сергеевич Бодылев, and Марат Ильгизович Хакимьянов. "РАЗРАБОТКА ИНТЕЛЛЕКТУАЛЬНОЙ СТАНЦИИ УПРАВЛЕНИЯ ДЛЯ УСТАНОВОК ШТАНГОВЫХ ГЛУБИННЫХ НАСОСОВ." Bulletin of the Tomsk Polytechnic University Geo Assets Engineering 333, no. 3 (March 10, 2022): 68–75. http://dx.doi.org/10.18799/24131830/2022/3/3465.
Full textТимашев, Эдуард Олегович, Булат Маратович Латыпов, and Камил Рахматуллович Уразаков. "ИССЛЕДОВАНИЕ ТРИБОТЕХНИЧЕСКИХ ХАРАКТЕРИСТИК РАБОЧИХ ОРГАНОВ ВИНТОВОГО НАСОСА." Izvestiya Tomskogo Politekhnicheskogo Universiteta Inziniring Georesursov 332, no. 6 (June 22, 2021): 19–27. http://dx.doi.org/10.18799/24131830/2021/6/3232.
Full textТеряєв, В. І., С. О. Бур’ян, and В. П. Стяжкін. "УЗГОДЖЕНЕ РЕГУЛЮВАННЯ КООРДИНАТ ДВИГУНА-ГЕНЕРАТОРА В РЕЖИМІ ЕЛЕКТРИЧНОГО ГАЛЬМУВАННЯ." Vidnovluvana energetika, no. 3(62) (September 28, 2020): 62–69. http://dx.doi.org/10.36296/1819-8058.2020.3(62).62-69.
Full textЗюзев, Анатолий Михайлович, and Самуэль Исаак Текле. "ДИНАМИЧЕСКИЕ СИМУЛЯТОРЫ В ЗАДАЧАХ ДИАГНОСТИКИ ШТАНГОВЫХ ГЛУБИННО-НАСОСНЫХ УСТАНОВОК." Bulletin of the Tomsk Polytechnic University Geo Assets Engineering 333, no. 1 (January 24, 2022): 168–77. http://dx.doi.org/10.18799/24131830/2022/1/3285.
Full textУразаков, Камил Рахматуллович, Павел Михайлович Тугунов, and Шамиль Агаметович Алиметов. "МОДЕЛИРОВАНИЕ ТЕЧЕНИЯ ГАЗОЖИДКОСТНОГО ПОТОКА НА ПРИЕМЕ ЭЛЕКТРОЦЕНТРОБЕЖНЫХ НАСОСНЫХ УСТАНОВОК С КАРКАСНО-ПРОВОЛОЧНЫМ ФИЛЬТРОМ." Bulletin of the Tomsk Polytechnic University Geo Assets Engineering 332, no. 11 (November 19, 2021): 68–77. http://dx.doi.org/10.18799/24131830/2021/11/2879.
Full textDissertations / Theses on the topic "Насосний режим"
Івченко, Ю. О. "Автоматизоване управління peжимами роботи насосного aгpeгатa АПЕ 720-185-6." Master's thesis, Сумський державний університет, 2021. https://essuir.sumdu.edu.ua/handle/123456789/86777.
Full textГорячев, Г. В., and М. М. Мошноріз. "Оптимізація режимів роботи насосної станції водопостачання." Thesis, Кременчуцький державний політехнічний університет імені Михайла Остроградського, 2006. http://ir.lib.vntu.edu.ua/handle/123456789/3072.
Full textРєзва, Ксенія Сергіївна. "Удосконалення проточних частин високонапірних оборотних гідромашин на основі чисельного моделювання їх гідродинамічних характеристик." Thesis, Національний технічний університет "Харківський політехнічний інститут", 2019. http://repository.kpi.kharkov.ua/handle/KhPI-Press/40009.
Full textThesis for granting the Degree of Candidate of Technical sciences in speciality 05.05.17 – Hydraulic machines and hydropneumatic units. – National Technical University "Kharkiv Polytechnic Institute", 2019. The tеhesis is devoted to the solution of the scientific and practical problem of improvement of the water passages of the high-pressure reversible hydraulic due to calculation and analysis their hydrodynamic characteristics. Based on the review of the trends in the development of hydropower engineering in Ukraine and given the role of high-pressure reversible hydraulic machines in the United Power System, it was noted that the designing a new flow parts is topical task. Advantages and disadvantages of the existing methods for research hydrodynamic processes in water passages of reversible hydraulic machines were identified after their analysis. The results of the calculation of the hydrodynamic characteristics of the elements of the water passages based on the method of averaged dimensionless parameters using the example of reversible hydraulic machines OPO200-B-100 and OPO500-B-100 were demonstrated. The mathematical model of the hydraulic machine working process based on a block-hierarchical approach was used to study the energy balance in the turbine and pump modes of hydraulic machines. The influence of the geometrical parameters of the elements of the water passage on the performance was determined: how the angle of flow in the spiral casing (cп ), the height of the wicket gate (b0 D) and the shape of the wicket gate profile influence the value of the coefficient resistance in the wicket gate. A numerical study of the three-dimensional flow of fluid in the water passage of high-pressure reversible hydraulic machines was carried out using the CFD software. This program allows determining the character of the flow and presenting the fields of distribution of velocity components, pressure and streamlines. The balances of energy were compiled: for the OPO200-B-100 in the turbine and pump operation modes, for the OPO500-B-100 in the turbine operation mode. It is noted that the distribution of losses on the elements of the water passage is not uniform: for the OPO200-B-100, the greatest part of the total losses are losses in the runner (about 56%), for OPO500-B-100 - losses in the inlet (about 62%). The main points for determining the optimal operating mode of the reversible hydraulic machine are described. The modified inlet for low-speed high-pressure hydraulic machine OPO500-B-100 was proposed and investigated to increase energy performance of hydraulic machine. The spiral casing was expanded, the number of stay vane blades and wicket gate blades were reduced to 16. As a result of the calculations of the modified inlet, the obtained results showed that the second variant made it possible to better align the elements of the water passage and the hydraulic efficiency increased by 2 %.
Рєзва, Ксенія Сергіївна. "Удосконалення проточних частин високонапірних оборотних гідромашин на основі чисельного моделювання їх гідродинамічних характеристик." Thesis, Національний технічний університет "Харківський політехнічний інститут", 2018. http://repository.kpi.kharkov.ua/handle/KhPI-Press/40011.
Full textThesis for granting the Degree of Candidate of Technical sciences in speciality 05.05.17 – Hydraulic machines and hydropneumatic units. – National Technical University "Kharkiv Polytechnic Institute", 2019. The tеhesis is devoted to the solution of the scientific and practical problem of improvement of the water passages of the high-pressure reversible hydraulic due to calculation and analysis their hydrodynamic characteristics. Based on the review of the trends in the development of hydropower engineering in Ukraine and given the role of high-pressure reversible hydraulic machines in the United Power System, it was noted that the designing a new flow parts is topical task. Advantages and disadvantages of the existing methods for research hydrodynamic processes in water passages of reversible hydraulic machines were identified after their analysis. The results of the calculation of the hydrodynamic characteristics of the elements of the water passages based on the method of averaged dimensionless parameters using the example of reversible hydraulic machines OPO200-B-100 and OPO500-B-100 were demonstrated. The mathematical model of the hydraulic machine working process based on a block-hierarchical approach was used to study the energy balance in the turbine and pump modes of hydraulic machines. The influence of the geometrical parameters of the elements of the water passage on the performance was determined: how the angle of flow in the spiral casing (cп ), the height of the wicket gate (b0 D) and the shape of the wicket gate profile influence the value of the coefficient resistance in the wicket gate. A numerical study of the three-dimensional flow of fluid in the water passage of high-pressure reversible hydraulic machines was carried out using the CFD software. This program allows determining the character of the flow and presenting the fields of distribution of velocity components, pressure and streamlines. The balances of energy were compiled: for the OPO200-B-100 in the turbine and pump operation modes, for the OPO500-B-100 in the turbine operation mode. It is noted that the distribution of losses on the elements of the water passage is not uniform: for the OPO200-B-100, the greatest part of the total losses are losses in the runner (about 56%), for OPO500-B-100 - losses in the inlet (about 62%). The main points for determining the optimal operating mode of the reversible hydraulic machine are described. The modified inlet for low-speed high-pressure hydraulic machine OPO500-B-100 was proposed and investigated to increase energy performance of hydraulic machine. The spiral casing was expanded, the number of stay vane blades and wicket gate blades were reduced to 16. As a result of the calculations of the modified inlet, the obtained results showed that the second variant made it possible to better align the elements of the water passage and the hydraulic efficiency increased by 2 %.
Товажнянский, Леонид Леонидович, Леонид Михайлович Ульев, and М. Г. Самойленко. "Оптимизация нагрева насосно-компрессорных труб при добыче нефти." Thesis, НТУ "ХПИ", 2013. http://repository.kpi.kharkov.ua/handle/KhPI-Press/8060.
Full textПанченко, Віталій Олександрович, Виталий Александрович Панченко, and Vitalii Oleksandrovych Panchenko. "Регулювання режиму роботи вільновихрового насоса." Thesis, Сумський державний університет, 2016. http://essuir.sumdu.edu.ua/handle/123456789/45558.
Full textДранковский, Виктор Эдуардович, and Михаил Юрьевич Хавренко. "Исследование пространственного течения в рабочих колесах радиально осевых обратимых гидромашин в насосном режиме работы." Thesis, НТУ "ХПИ", 2017. http://repository.kpi.kharkov.ua/handle/KhPI-Press/38447.
Full textВитошкин, А. А., С. В. Ярославцев, and С. А. Дедов. "Неустойчивые режимы работы центробежного насоса с предвключенным шнеком." Thesis, Изд-во СумГУ, 2002. http://essuir.sumdu.edu.ua/handle/123456789/21237.
Full textЛібець, О. С. "Проектування контрроторного осьового ступеня." Thesis, Сумський державний уніеврситет, 2014. http://essuir.sumdu.edu.ua/handle/123456789/40380.
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