Cite

Gerasimov, A.A., Aleksandrov, I.S., & Dorokhov, P.I. (2015). Energy Efficiency in Engineering Systems: Module Reference Book. Kaliningrad. Search in Google Scholar

Siegenthaler, J. (January, 2011). How to Improve the Energy Efficiency of Boiler Systems. Available at https://www.weilmclain.com/news/boiler-systems-and-energy-saving Search in Google Scholar

Laptev, A.G., Nikolaev, N.A., & Basharov, M.M. (2011). Methods of Intensification and Modelling of Heat and Mass Transfer Processes: Educational and Reference Manual. Moscow. [in Russian] Search in Google Scholar

Stehlik, P., Jegla, Z., & Kilkovsky, B. (2013). Possibilities of Intensifying Heat Transfer in Heat Exchangers for High Temperature Applications. Chemical Engineering Transactions, 35, 439–444. doi:10.3303/CET1335073 Search in Google Scholar

Zhang, T. (2020). Methods of Improving the Efficiency of Thermal Power Plants. Journal of Physics: Conference Series, 1449, 012001. doi:10.1088/1742-6596/1449/1/012001 Search in Google Scholar

Nussupbekov, B.R., Sakipova, S.E., Ospanova, D.A., Kutum, B.B., Shaimerdenova, K.M., & Bekturganov, Zh.S. (2022). Some Technological Aspects of Cleaning Pipes of Heat Exchangers from Solid Scale Deposits. Bulletin of the Karaganda University. Physics Series, 4 (108), 106–114. doi: 10.31489/2022PH4/106-114. Search in Google Scholar

Liu, Y., Wang, H., Ayub, I., Yang, F., Wu, Z., & Zhang, Z. (2021). A Variable Cross-section Annular Fins Type Metal Hydride Reactor for Improving the Phenomenon of Inhomogeneous Reaction in the Thermal Energy Storage Processes. Applied Energy, 295, 117073. https://doi.org/10.1016/j.apenergy. Search in Google Scholar

Laptev, A.G., Basharov, M.M., & Farakhov, T.M. (2017). Determination of Heat Transfer Coefficients in Channels with Process Intensifiers. Energy Problems, 19, (11–12), 112–118. Search in Google Scholar

Wajs, J., Bajor, M., & Mikielewicz, D. (2019). Thermal-Hydraulic Studies on the Shell-and-Tube Heat Exchanger with Minijets. Energies, 2, 3276. https://doi.org/10.3390/en12173276 Search in Google Scholar

Rydalina, N., Antonova, E., Akhmetova, I., Ilyashenko, S., Afanaseva, O., Bianco, V., & Fedyukhin, A. (2020). Analysis of the Efficiency of Using Heat Exchangers with Porous Inserts in Heat and Gas Supply Systems. Energies, 13 (22), 5854. https://doi.org/10.3390/en13225854. Search in Google Scholar

Popov, I.A., Shchelchkov, A.V., Yarkaev, M.Z., Al-Janabi, A.Kh.A., Skrypnik, A.N. (2014). Heat exchangers with heat transfer intensification. Energy of Tatarstan, 1 (19), 10–16. Search in Google Scholar

Brodov, Yu.M., Aronson, K.E., Ryabchikov, A.Yu., Blinkov S.N., Kuptsov V.K., Murmansky I.B. (2016). Increasing the Efficiency of Heat Exchangers of Steam Turbine Installations through the Use of Profile Twisted Tubes. News of Universities. Energy problems, (7–8), 72–78. Search in Google Scholar

Kutum, B.B., Ospanova, D.A., Nussupbekov, B.R., & Oshanov, Y.Z. (2023). Research of Process Water of a Thermal Power Plant. Eastern-European Journal of Enterprise Technologies, 2 (6–122), 53–61. doi: 10.15587/1729-4061.2023.276486. Search in Google Scholar

Ospanova, D. A., Kutum, B. B., & Nusupbekov, B. R. (2022). Features of Nutrient Water Purification in Thermal Power Facilities. Actual Scientific Research in the Modern World. International Science Journal, 10 (90), 138–144. Search in Google Scholar

Tekhnologicheskie resheniya proekta 09L129 “Ustanovka t.a. st. no. 5 Vodopodgotovka podpitki teploseti s predochistkoy” razrabotany dlya JSC Institut KazNIPIEnergoprom (2019). Karaganda, 187. [in Russian] Search in Google Scholar

Karabelas, A. J. (2002). Scale Formation in Tubular Heat Exchangers. International Journal of Thermal Sciences, 41 (7), 682–692. https://doi.org/10.1016/S1290-0729(02)01363-7 Search in Google Scholar

Sakipova, S.E. (2009). Study of the Structure of Scale Deposits on Heat Transfer Surfaces and Technology for their Destruction. Bulletin of KarSU. Physical Series, 1 (53), 66–71. Search in Google Scholar

Ivakhnenko, A.G. (1975). Long-term Control and Forecasting of Complex Systems. Kyiv. [in Russian] Search in Google Scholar

Sakipova, S.E., Shaimerdenova, K.M., Nussupbekov, B.R., Ospanova, D.A., & Kutum, B.B. (2023). Modeling the Dynamics of Heat and Mass Transfer Processes in a Tubular Heat Exchanger under Pulsed Influences. Eurasian Phys. Tech. J., 20 (1(43), 51–55. doi.org/10.31489/2023No1/51-55 Search in Google Scholar

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