Comparative characteristics of diesel engines and gas turbine power plants for mobile vehicles
V. A Gusarov , Z. A Godzhaev
Izvestiya MGTU MAMI ›› 2020, Vol. 14 ›› Issue (3) : 7 -13.
Comparative characteristics of diesel engines and gas turbine power plants for mobile vehicles
The paper considers the use of diesel-electric power plants on mobile vehicles, analyzes their use and application. Comparative power and mass characteristics of diesel and gas turbine power units are given; the positive and negative aspects of their use are shown. The efficiency of the introduction of gas turbine engines on tractors of various traction classes for agricultural purposes has been determined and a new kinematic diagram of the power plant of a mobile vehicle has been developed. An analysis was carried out and it was established that gas turbine agricultural equipment was never produced in Russia. There were carried out the individual experimental studies of not of a systemic nature, which were terminated for reasons independent of the result. The aim of the work is to develop an innovative kinematic diagram with an electric drive and a power unit based on a gas turbine engine for a mobile agricultural vehicle, using the latest advances in science and technology in terms of the development of gas turbine technologies. It has been established that the mass-energy characteristics of gas turbine plants are much better than diesel ones: the level of vibration is significantly lower, the torque of the power plant at low speeds is higher, the operation of the tractor is simpler. All these open up wide prospects for their use on mobile agricultural vehicles. Experimental studies on the processing of 1 hectare of area in terms of economic efficiency have shown the indisputable advantage of an almost laboratory model of a tractor with a gas turbine engine, relative to the same tractor with a diesel engine, which has been produced for many years, expressed, despite a slightly higher fuel consumption, in the use of cheaper kerosene.
gas turbine engine / diesel engine / mobile vehicle / generator / tractor with gas turbine engine
| [1] |
Ahmad, Mubarik; Brimmers, Jens; Brecher, Christian. Influence of long-wave deviations on the quasi-static and dynamic excitation behavior at higher speeds. APPLIED ACOUSTICS. 2020. N 8. Т. 16. UNSP 107307. |
| [2] |
De Pinto, Stefano; Camocardi, Pablo; Chatzikomis, Christoforos; On the Comparison of 2-and 4-Wheel-Drive. Electric. Vehicle Layouts with Central Motors and Single- and 2-Speed Transmission Systems. ENERGIES. 2020. N 6. Т. 13. Выпуск: 13 UNSP 3328. |
| [3] |
Schroeders, Simon; Maier, Clemens C.; Ebner, Wolfgang; Two-degree-of-freedom MIMO control for hydraulic servo-systems with switching properties. CONTROL ENGINEERING PRACTICE. 2020. N 2. Т. 95 UNSP 104246. |
| [4] |
Lion A.; Johlitz M. A mechanical model to describe the vibroacoustic behaviour of elastomeric engine mounts for electric vehicles. MECHANICAL SYSTEMS AND SIGNAL PROCESSING. 2020. N 10. T 144. UNSP 106874. |
| [5] |
Хазин М.Л., Штыков С.О. Карьерный электрифицированный транспорт // Вестник МГТУ им. Г.И. Носова. 2018. Т. 16. № 1. С. 11-18. |
| [6] |
Галкин В. И., Шешко Е. Е. Проблемы совершенствования транспортных систем в горной промышленности России // Горный информационно-аналитический бюллетень (научно-технический журнал). 2011. №1. С. 485-507. |
| [7] |
Никитин О. Микротурбины в борьбе за потребителя // Экологические системы № 11, сентябрь 2012 |
| [8] |
Фаворский О.Н. Газотурбинные установки в энергетике - важнейший путь экономии топливно-энергетических ресурсов России // Двигатель. 2011. № 4. |
| [9] |
Панькив В. Когенерация: как это работает. Обзор рынка // Сети и Бизнес. 2010. № 4(53). |
| [10] |
Гусаров В.А., Кулагин Я.В. Газотурбинные технологии для автономного электроснабжения // Газотурбинные технологии. 2012. № 7(108) |
| [11] |
Гусаров В.А., Годжаев З.А. Разработка газотурбинных установок малой мощности для использования на промышленных предприятиях // Проблемы машиностроения и надежности машин. 2018. Т. 47 № 6. С. 27-33. |
| [12] |
https://sites.google.com/view/yak-nebo/двигатели/тс-21-газо-турбостартер |
| [13] |
https://klimov.ru/production/aircraft/apu/ |
| [14] |
https://www.grandmotors.ru/cummins_c66d5e.php |
| [15] |
Шкрабак В.С., Вьюгин А.М., Калюжный И.Г. и др. Газотурбинный трактор: результаты исследований // Техника в сельском хозяйстве. 1979. № 9. С. 57-58. |
| [16] |
Агеев Л.Е., Шкрабак В.С., Моргулис-Якушев В.Ю. Л.: Агропромиздат. Ленингр. отдие, 1986. 415 с. |
Gusarov V.A., Godzhaev Z.A.
/
| 〈 |
|
〉 |