Test results of a model of a water-jet propulsion of a cargo boat

  • Egor S. Shishov Nizhny Novgorod State Technical University n.a. R.E. Alekseyev, Nizhny Novgorod, Russia
  • Sergey N. Zelenov Volga State University of Water Transport, Nizhny Novgorod, Russia

Abstract

The article discusses the test results of a self-propelled scale model of the КС-110.2-34 water-jet cargo boat. Purpose: to measure and calculate the main characteristics of the model of a water-jet propulsion system installed on a ship for their subsequent comparison with the characteristics of other newly developed water-jet propulsion systems. Results: a large-scale model of the propulsion system was designed and manufactured, consisting of models of a boat hull and a water-jet propulsion system of the original design, installed measuring equipment and a reading recording unit.

A test program and a methodology for processing measurement results are proposed and their reliability is verified. It was found that the test results obtained in open water have low repeatability due to their high dependence on hydro and meteorological conditions, and incorrect placement of pressure sensors in the flowing part of the water cannon reduces the accuracy of the measurements performed.

In order to obtain more reliable and stable results, it is concluded that it is necessary to increase the scale of the model and its speed. Further directions of work on improving the instrument and measuring complex have been determined.

Keywords: water-jet propellers, propulsive complex, model tests, operation parameters

References

Зеленов С.Н., Шишов Е.С. Особенности выбора движительного комплекса речных судов // Сетевой научный журнал «Транспортные системы». Нижний Новгород: НГТУ им. Р.Е. Алексеева, 2023. № 2(28). С. 40-49. URL: https://transport-systems.ru/index.php/arkhiv/44-2023/46-2-2023-g/150-2023-02-4

Катер КС-110.2-34 [Электронный ресурс] - https://boat-ksmz.ru/katera/ks-110-2/ks-110-2-gruzovoy/ (дата обращения – 28.01.2024).

Хорхорин Е.Г. Стационарные водометы. Справочник. М.: «Издательский Дом Рученькиных», 2004. 160 с.

Никитин О.Р. Статистические методы обработки параметров радиосигнналов. Учебное пособие. Владимир: ВлГУ, 2012. 143 с.

Папир А.Н. Водометные движители малых судов. Л.: Судостроение, 1970. 256 с.

Васильев В.Ф. Водометные движители: Учебное пособие. М.: МАДИ, 2006. 45 с.

Куликов С.В., Храмкин М.Ф. Водометные движители (теория и расчет) – 3-е изд., перераб. и доп. Л.: Судостроение, 1980. 312 с.

Author Biographies

Egor S. Shishov , Nizhny Novgorod State Technical University n.a. R.E. Alekseyev, Nizhny Novgorod, Russia

postgraduate student, Nizhny Novgorod State Technical University n.a. R.E. Alekseev (NSTU n.a. R.E. Alekseev), Minina, 24, Nizhny Novgorod, 603155, Russian Federation, e-mail: egor370mv@gmail.com

Sergey N. Zelenov , Volga State University of Water Transport, Nizhny Novgorod, Russia

Ph.D. (eng), Associate Professor of the Power Plants and Heat Engines, Nizhny Novgorod State Technical University n.a. R.E. Alekseev (NSTU n.a. R.E. Alekseev), Minina, 24, Nizhny Novgorod, 603155, Russian Federation, e-mail: zelenov.52@yandex.ru

Published
14-03-2025
How to Cite
Shishov, E. S., & Zelenov, S. N. (2025). Test results of a model of a water-jet propulsion of a cargo boat. Russian Journal of Water Transport, (82), 124-134. https://doi.org/10.37890/jwt.vi82.571
Section
Ship power equipment