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The paper presents designing activities concerning the rating of the values of scalar quantities optimized in accordance with the accepted criteria in designing a condenser of marine steam turbine, which result from the forecasted characteristic, most frequently occurring set points of steam turbine power appearing during the operation of a sea ship. It refers to the method of designing heat exchangers contained in the paper [1] and to the issues raised in the publication [2]. The paper also presents exemplary computational results of the above-mentioned optimized scalar quantities, which refer to designing a shell and tube condenser of marine steam turbine. It was assumed in the paper that the values of mass the mass flow rate of the steam: one p m , 0.75 p m , 0.5 p m , which result from the assumed characteristic set points of marine steam turbine, which occur during the operation of a sea ship. Then, the selected designing activities referring to the above-mentioned optimization were exemplified. On the basis of the computational results, it was shown that the appropriate division of heat exchange area into the definite numbers of condensers, which results from the operation of steam turbine of a definite sea ship, increases operation effectiveness of these condensers in relation to one marine steam turbine condenser. This is a result of optimal values retention: velocity of cooling water of the definite condenser or condensers and temperature of this water on the output of this condenser or condensers during characteristic set points in the operation conditions defined in designing. Next, economic advantages were pointed out, which resulted from the described in the paper, technical solution. These advantages constitute the designing criterion that must be taken into consideration while making a decision about the division of heat exchange area into the definite number of condensers of marine steam turbine. Finally, the conclusions resulting from the paper’s contents are presented.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Strony
193--199
Opis fizyczny
Bibliogr. 14 poz., rys.
Twórcy
autor
- Gdynia Maritime University Faculty of Marine Mechanical Engineering Morska Street 81-87, 81-225 Gdynia, Poland tel.: +48 58 6901304, fax: +48 58 6901399
Bibliografia
- [1] Łukaszewski, K., Metoda projektowania wymienników ciepła technicznych systemów energetycznych ze względu na wymaganą niezawodność tych systemów, Rozprawa doktorska wykonana pod kierunkiem J. Z. Czajguckiego, Gdynia 2011.
- [2] Łukaszewski, K., Factors influencing the precision of optimizing the values of definite scalar ąuantities according to the accepted criteria used in designing heat exchangers, Journal of KONES Powertrain and Transport, Vol. 20, No. 4, pp. 237-244, Warsaw 2013.
- [3] Słupik, T., Zasady optymalnej pracy skraplaczy i wymienników ciepła, Energetyka, No. 9, pp. 555-559, 2012.
- [4] Dobosiewicz, J., Niektóreprzyczyny uszkodzeń łopatek roboczych turbinparowych, Energetyka, No. 1, pp. 395-400, 2003.
- [5] Pakuła, G., Piasecki, W., Szarszewski, A., Regulacja pomp diagonalnych, pracujących jako pompy wody chłodzącej w blokach energetycznych dużej mocy, Pompy Pompownie, No. 1, pp. 22-26, 2012.
- [6] Błaszczyk, A., Głuch, J., Gardzilewicz, A., Operating and economic conditions of cooling water control for Marine steam turbine condensers, Polish Maritime Research, Vol. 18, No. 3, pp. 48-54, Gdańsk 2011.
- [7] Data sweet No. F1 Cu Zn20AI2, 1970 Edition.
- [8] Jankowski, Z., Kurpisz, Ł., Obliczenia hydrauliczne wymienników ciepła, Wydawnictwo Politechniki Warszawskiej, Warszawa 1981.
- [9] Pudlik, W., Wymiana i wymienniki, Wydawnictwo PG, Gdańsk 2008.
- [ 10] www.rynek-bilansujacy.cire.pl.
- [11] www.bankier.pl.
- [12] Werszko, D., Wybrane zagadnienia z techniki cieplnej, Oficyna Wydawnicza Politechniki Wrocławskiej, Wrocław 2003.
- [13] Kmieć, A., Procesy cieplne i aparaty, Wydawnictwo Politechniki Wrocławskiej, Wrocław 2005.
- [14] Wiśniewski, S., Wiśniewski, T. S., Wymianaciepła, WNT, Warszawa 2000.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-fed4db39-fe81-4ab6-ac3f-ae7f9a8557ca
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