CALCULATION AND ANALYSIS OF OPERATING MODES AND ENERGY CONSUMPTION OF CENTRIFUGAL PUMPS WITH FREQUENCY-CONTROLLED ELECTRIC DRIVE IN WATER SUPPLY SYSTEMS

Main Article Content

I. VOITOV
V. YALOVIK

Abstract

The article discusses examples of calculating the operating modes of a centrifugal pump of a water supply and distribution system using a newly developed methodology by the authors. The main points of calculation and analysis of technological, energy and environmental parameters characterizing the operation of centrifugal pumps of water supply and distribution systems are given.

Article Details

How to Cite
VOITOV, I., & YALOVIK, V. (2022). CALCULATION AND ANALYSIS OF OPERATING MODES AND ENERGY CONSUMPTION OF CENTRIFUGAL PUMPS WITH FREQUENCY-CONTROLLED ELECTRIC DRIVE IN WATER SUPPLY SYSTEMS. Vestnik of Polotsk State University. Part F. Constructions. Applied Sciences, (8), 10-26. https://doi.org/10.52928/2070-1683-2022-31-8-10-26
Section
Construction
Author Biography

I. VOITOV, Belarusian State Technological University, Minsk

д-р техн. наук, проф.

References

Grishin, A.P., Avramenko, M.V., Grishin, V.A., Bolkhovitinov, Yu.B. & Grishin, A.A. (2006). Metodicheskie rekomendatsii po vyboru oborudovaniya dlya chastotno-reguliruemoi nasosnoi stantsii vtorogo pod"ema s kombinirovannoi komponovochnoi skhemoi. Moscow: GNU VIESKh. (In Russ.).

Gurinovich, A.D. (2001). Sistemy pit'evogo vodosnabzheniya s vodozabornymi skvazhinami. Planirovanie, proektirovanie, stroitel'stvo i ekspluatatsiya. Minsk: Tekhnoprint. (In Russ.).

Elovik, V.L. (2019). Metodika rascheta i analiza rezhimov raboty nasosnykh agregatov, oborudovannykh reguliruemym elektroprivodom [Calculation and analyses methodology of the working conditions of pumping units, equipped with adjustable drive]. Trudy BGTU. Ser. 2, Khimicheskie tekhnologii, biotekhnologii, geoekologiya [Proceedings of BSTU. Ser. 2, Chemical technologies, biotechnologies, geoecology], (2), 204–213. (In Russ., abstr. in Engl.).

Elovik, V.L. & Sedlukho, Yu.P. (2010). Metodika pryamogo rascheta potreblyaemoi energii chastotno-reguliruemym nasosom za raschetnyi period [Direct calculation of energy consumption by variable-frequency drive during working period]. Voda: khimiya i ekologiya, (7), 46–50. (In Russ., abstr. in Engl.).

Karasev, B.V. (1990). Nasosy i nasosnye stantsii. Minsk: Vysh. shk. (In Russ.).

Leznov, B.S. (2011). Metodika otsenki effektivnosti primeneniya reguliruemogo elektroprivoda v vodoprovodnykh i kanalizatsionnykh nasosnykh ustanovkakh. Moscow: Mashinostroenie. (In Russ.).

Leznov, B.S. (2006). Energosberezhenie i reguliruemyi privod v nasosnykh i vozdukhoduvnykh ustanovkakh. Moscow: Energo-atomizdat. (In Russ.).

Starinskii, V.P. (1985). Tekhnologicheskie gidravlicheskie i tekhnikoekonomicheskie raschety v vodosnabzhenii. Minsk: Vysh. shk. (In Russ.).

Fisenko, V.N. (2018). Energeticheskaya effektivnost' nasosov v sistemakh vodosnabzheniya i vodootvedeniya [Energy efficiency of pumps in water supply and wastewater disposal systems]. Vodosnabzhenie i sanitarnaya tekhnika [Water Supply and Sanitary Technique], (6), 52–63. (In Russ., abstr. in Engl.).

Chernyakhovskaya, Yu.V. (2017). Vybrosy parnikovykh gazov v elektroenergetike i ikh snizhenie ot vnedreniya rossiiskikh proektov atomnykh elektrostantsii. Vestnik MEI, (3), 46–52. (In Russ.).

Bortoni, E.C., Alves de Almeida, R. & Viana, A.N.C. (2008). Optimization of parallel variable-speed-driven centrifugal pumps operation. Energy efficiency, (1), 167–173.