Otwarty dostęp

Research into Deposits Accumulating on Heat Exchange Surfaces Due to the Thermal Degradation of Heat Exchange Apparatus in Steam Power Plants: A Study of Model Deposits

  
05 mar 2025

Zacytuj
Pobierz okładkę

Brahim F, Augustin W, Bohnet M. Numerical simulation of the fouling structured heat transfer surfaces. ECI Conference on Heat Exchanger Fouling and Cleaning. Fundamentals and Applications, pp. 121-129, 2003. Search in Google Scholar

Butrymowicz D. Influence of fouling and inert gases on the performance of regenerative feedwater heaters. Archives of Thermodynamics, Vol. 23, No. 1-2, pp. 127-140, 2001. Search in Google Scholar

Dobosiewicz J. Korozja mosiężnych rurek skraplaczy od strony pary wodnej [The Corrosion of the steam side brass condenser tubes]. Energetyka, Vol. L, No. 5, pp. 300-301, 1996. Search in Google Scholar

Filipczyk K, Bania A. Chemiczne oczyszczanie regeneracyjnych podgrzewaczy wysokoprężnych z osadów eksploatacyjnych [Chemical cleaning of regenerative high-pressure heat exchangers from operational deposits]. Energetyka, Vol. LIII, No. 3, pp. 152-154, 1999. Search in Google Scholar

Förster M, Bohnet M. Modification of the interface crystal/heat transfer surface to reduce heat exchanger fouling. Heat Exchanger Fouling. Fundamental Approaches & Technical Solutions, pp. 27-34, 2002. Search in Google Scholar

Hajduk T. Research of deposit accumulated on heat exchange surfaces in the light of thermal degradation of heat exchange apparatus of steam power plants. Part I. Study of real sediments. Polish Maritime Research, 1 (97), Vol. 25; pp. 99-107, 2018. https://doi.org/10.2478/pomr-2018-0012. Search in Google Scholar

Knudsen JG. Fouling of Heat Transfer Surfaces. An Overview. Power Condenser Heat Transfer Technology, Hemisphere Publishing Co., pp. 375-424, 1981. Search in Google Scholar

Krzyżanowski JA, Głuch J. Diagnostyka cieplnoprzepływowa obiektów energetycznych [Thermal and flow diagnostics of power facilities]. Wydawnictwo IMP PAN, Gdańsk, 2004. Search in Google Scholar

Kukulka DJ, Devgun M. Fouling surface finish evaluation. Applied Thermal Engineering, Vol. 27, pp. 1165-1172, 2007. https://doi.org/10.1016/j.applthermaleng.2006.02.041. Search in Google Scholar

Łodej M. Nowa metoda chemicznego oczyszczania regeneracyjnych podgrzewaczy wysokoprężnych po stronie parowej [New method for chemical cleaning of regenerative high-pressure heat exchangers on the steam side]. Energetyka, rok XLVII, nr 10/11, pp. 809-811, 2002. Search in Google Scholar

Maciejko M, Twardowski S. Metoda oczyszczania skraplaczy turbinowych z osadów eksploatacyjnych [Method of turbine condensers cleaning from operational deposits]. Energetyka, Vol. XLV, nr 10, pp. 363-365, 1991. Search in Google Scholar

Penrose, R. Droga do rzeczywistości [The road to reality]. Prószyński i S-ka, Warszawa, 2011. Search in Google Scholar

Rusowicz A. Analiza powstających osadów w rurach skraplacza energetycznego [Analysis of deposits formed in power condenser tubes]. XII Sympozjum Wymiany Ciepła i Masy, Kraków, tom 2, pp. 753-761, 2004. Search in Google Scholar

Stewart J. Calculus. Rachunek różniczkowy i całkowy funkcji jednej zmiennej [Calculus. Differential and integral calculus of one variable functions]. PWN, Warszawa, 2020. Search in Google Scholar

Taborek J. Effects of Fouling and Related Comments on Marine Condenser Design. Power Condenser Heat Transfer Technology, Hemisphere Publishing Co., pp. 425-430, 1981. Search in Google Scholar

Twardowski S. Ilość osadów jako kryterium chemicznego oczyszczania rur ekranowych kotłów [Ilość osadów jako kryterium chemicznego oczyszczania rur ekranowych kotłów]. Energetyka, nr 10/11, pp. 711-714, 2003. Search in Google Scholar

Taylor J. Wstęp do analizy błędu pomiarowego [An introduction to error analysis]. Wydawnictwo Naukowe PWN, Warszawa, 2011. Search in Google Scholar

Wajs J, Mikielewicz D. Influence of metallic porous microlayer on pressure drop and heat transfer of stainless steel plate heat exchanger. Applied Thermal Engineering, Vol. 93, pp. 1337-1346, 2016. https://doi.org/10.1016/j.applthermaleng.2015.08.101. Search in Google Scholar

Webb RL. The use of enhanced surface geometries in condensers. An overview. Power Condenser Heat Transfer Technology, pp. 353-366, 1981. Search in Google Scholar

Xu ZM, Wang JG, Chen F. A new predictive model for particulate fouling. Understanding Heat Exchanger Fouling and Its Mitigation, New York, pp. 185-192, 1999. Search in Google Scholar

Zbroińska-Szczechura E, Dobosiewicz J. Uszkodzenia i diagnostyka wymienników ciepła w elektrociepłowniach [Damage and diagnostics of heat exchangers in heat and power plants]. Energetyka, nr 12, pp. 796-800, 2004. Search in Google Scholar

Leksykon materiałoznawstwa. Program komputerowy [Computer - aided materials science lexicon], Wydawnictwo Verlag Dashofer, ver. 1.26, 2007. Search in Google Scholar

https://www.zywicesarzyna.pl/produkty, accessed on 2024-06-22. Search in Google Scholar

https://www.energo.com.pl, accessed on 2024-08-07. Search in Google Scholar

https://www.korund.pl/granulacje/, accessed on 2024-06-19. Search in Google Scholar

https://mathworld.wolfram.com/Wedge.html, accessed on 2024-07-17. Search in Google Scholar