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Heat transmission across fouled tubes analysed by Trefftz approach

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Języki publikacji
EN
Abstrakty
EN
The paper presents application of the Trefftz method for analysis a case of heat conduction problem across two coupled regions - fouling layer of complex form deposited onto the tube wall at its outer periphery. Taken into considerations modes of heat transfer from a hot gas to the outer surface of the fouling layer are: either by pure convection or radiation, and by both the modes combined. A fluid flowing inside the tube exchanges heat by only convection at constant transfer coeffcient. Based on the variational principle and Trefftz method the boundary weighted residual approach has been developed providing in turn an equation system for analysis of the problem under study. Then, results of series of systematic numerical experiments illustrating convergence and accuracy of the approach when applied to the case in point have been shown for a specific input data set assumed. To emphasise practical significance of the method, a calculated temperature distribution 3D chart and thermal resistance of 2D fouling deposits conclude the paper.
Słowa kluczowe
Rocznik
Strony
239--269
Opis fizyczny
Bibliogr. 14 poz., rys., tab., wykr.
Twórcy
autor
  • Politechnika Białostocka, Katedra Termodynamiki i Mechaniki Płynów, ul. Wiejska 45 c, 15-351 Białystok
Bibliografia
  • [1] A.F. Gavrilov, B.M. Malkin. Fouling and Cleaning of Heat Transfer Surfaces in Boilers (translated, in Russian: А.Ф. Гаврилов, Б.М. Малкин, Загрязнение Oчисмка Повертностей Нагрева Котельных Установок). Energija, Moskva, 1980.
  • [2] A. Kneschke. Berechnung stationarer Temperaturverteilungen. Ing. Arch., 30: 117-122, 1961.
  • [3] J. Kołodziej, A. Uścilowska. Trefftz-type procedure for Laplace equation on domains with circular holes, circular inclusions, corners, slits, and symmetry. CA MES, 4(3/4): 501-519, 1997 (Special issue: 1st International Workshop: Trefftz Method — Recent Developments and Perspectives).
  • [4] N.V. Kuznetsov. Operation Processes and Problems of Improvement for Convective Heat Transfer Surfaces in Boilers (translated, in Russian: Рабочие Процессы и Вопросы, Усовершенствения Koнстивных Повертностей Нотельныт Агрегатов). GEI, Moskva, 1958.
  • [5] A.A. Ots. Processes in Boilers at Combustion of Bituminous-Estonian-Shales and Kansko-Atchinski Coals (translated, in Russian: A.A. Отс, Процессы в Парозенераторат при Сжызании Сланцев и Канско-Ачинскит Углей). Energija, Moskva, 1977.
  • [6] W.H. Press, B.P. Flannery, A. Teukolsky, W.T. Vetterling. Numerical Recipes. The Art of Scientific Computing. Cambridge University Press, 1986.
  • [7] W.T. Reid. External Corrosion and Deposits, Boilers and Gas Turbines. American Elsevier Publishing, New York, 1971.
  • [8] T. Skiepko. Temperature field in tube metal of convection surface of steam boiler (in Polish). Archiwum Energetyki PAN, No. 4: 227-242, 1980.
  • 191 T. Skiepko. Variational method of calculation of temperature field in metal tube with an outer fouling layer in a steam boiler (in Polish). Archiwum Energetyki PAN, XIII(2): 133-144, 1984.
  • [10] T. Skiepko. A method of calculation temperature distribution in the wall of a boiler tube and an example of its application (in Polish). Dozór Techniczny, No. 4: 136-140, 1984.
  • [11] T. Skiepko. The temperature field in a metal tube with outer fouling layer (in Polish). Archiwum Termodynamiki, 7(2): 148-160, 1986.
  • [12] T. Skiepko. Fouling shape — yet another factor to mitigate fouling thermal resistance. In: T.R. Bott, A.P. Watkinson, C.B. Panchal, eds., Mitigation of Heat Exchanger Fouling and Its Economic and Environmental Implications. Proceedings of UEF Conference, Banff, Canada, 11-16 July, 1999.
  • [13] E. Trefftz. Ein Gegenstiick zum Ritzschen Verfahren. In: Internat. Kongress fur Technische Mechanik, Verhanl. d.2: 131-137, Zürich, 1926.
  • [14] V.M. Zusman, V.V. Tichonova. On formation of ash deposits on tubes made of 12% chromic steels (translated, in Russian: B.M. 3ycmaH, B.B.Гихонова, Об избирательном образовании золовых отложений из 12%-ных хромистых сталей). Тероепетденка, Мо. 11: 07—61, 1970.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPB2-0006-0065
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