Efficiency increase of combined power supply systems of remote facilities

Author:

Murovskiy Sergey1,Murovskaya Anna1,Ivanova Ekaterina1

Affiliation:

1. Crimean Federal University of a name of V.I.Vernadsky

Abstract

The paper has examined the outlook for efficiency increase for combined power supply systems of remote facilities on the basis of renewable energy sources. The developed schematic solution of combined power supply for remote facilities on basis of mini HPP, Gas turbine, and thermoelectric generators, installed on the gas outlet pipe of the boiler, will allow to redistribute the energy between consumers inside the facility or accumulate it in the electrochemical storage system when consumption is minimal.

Publisher

BSTU named after V.G. Shukhov

Reference7 articles.

1. Муровский С.П., Курзо А.Н. Система автономного электроснабжения удаленных потребителей на базе возобновляемых источников энергии // Успехи современной науки: Сб. ст. Межд. научно-практ. конф. Белгород: Эпицентр, 2017. С. 54-58., Murovskij, S.P., & Kurzo A.N. (2017). Sistema avtonomnogo elektrosnabzheniya udalennyh potrebitelej na baze vozobnovlyaemyh istochnikov energii [Autonomous power supply system for remote consumers based on renewable energy sources]. Proc. of the Int. Sc. Pract Conf. “Uspekhi sovremennoj nauki” (pp. 54-58). Belgorod: Epicentr, 2017 [In Russian].

2. Поверхностные водные объекты Крыма. Справочник. Симферополь: Рескомводхоз АРК, 2004. 113 с., Poverhnostnye vodnye ob"ekty Kryma. Spravochnik [Surface water bodies of Crimea. Directory]. (2004). Simferopol': Reskomvodhoz [In Russian].

3. Statistical data processing during wind generators operation / M. Zaliskyi, Y. Petrova, M. Asanov, E. Bekirov // International Journal of Electrical and Electronic Engineering and Telecommunications. 2019. Vol. 8(1). P. 33-38., Zaliskyi, M. , Petrova, Y., Asanov, M., & Bekirov E. (2019). Statistical data processing during wind generators operation. International Journal of Electrical and Electronic Engineering and Telecommunications, 8(1), 33-38. Available: https://doi.org/10.18178/ijeetc.8.1.33-38

4. Муровский С.П., Сокут Л.Д. Оптимизация состава и структуры автономных систем энергоснабжения на основе возобновляемых источников энергии // Строительство и техногенная безопасность. 2012. № 44. С. 115-124., Murovskij, S.P., & Sokut, L.D. (2012). Optimizaciya sostava i struktury avtonomnyh sistem energosnabzheniya na osnove vozobnovlyaemyh istochnikov energii [Optimization of the composition and structure of autonomous power supply systems based on renewable energy sources]. Stroitel'stvo i tekhnogennaya bezopasnost', 44, 115-124 [In Russian].

5. Шостаковский П. Современные решения термоэлектрического охлаждения для радиоэлектронной, медицинской, промышленной и бытовой техники // Компоненты и технологии. 2010. № 1. С. 120-126., Shostakovskij, P. (2010). Sovremennye resheniya termoelektricheskogo ohlazhdeniya dlya radioelektronnoj, medicinskoj, promyshlennoj i bytovoj tekhniki [Modern solutions of thermoelectric cooling for radio electronic, medical, industrial and household appliances]. Komponenty i tekhnologii, 1, 120-126 [In Rissian].

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