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Featured researches published by D. Węcel.


ASME Turbo Expo 2003, collocated with the 2003 International Joint Power Generation Conference | 2003

Coupled Analysis of Cooled Gas Turbine Blades

T. Chmielniak; Włodzimierz Wróblewski; Grzegorz Nowak; D. Węcel

The paper presents solution aspects of the heat transfer modeling and fluid flow prediction of the convective cooled gas turbine blade. The heat transfer problem within the blade material is solved using finite element method whereas the flow problem employs the finite volume method. The flow field is calculated by solving the Navier-Stokes (NS) equations. The problem can be faced in two ways which are presented in this work. The first one is the uncoupled field method which does not take into consideration the interaction between the flowing medium and the blade. This way of solution is simpler and computationally cheap but has limited accuracy. The other one is the coupled field method (conjugate heat transfer CHT), which resolves iteratively the thermal interaction between the fluid and the blade material. The coupled method is much more accurate but one has to pay for it with longer computations as well as the algorithm stability control. As the fluid flow schemes are very sensitive to boundary condition changes, a fine time stepping with relaxation as well as an adequate mesh were required. The calculations showed another very important problem occurring in the analyses carried out. This is the laminar-turbulent transition which can significantly affect the accuracy of the results. The change of the flow character influences the heat exchange intensity and consequently the temperature distribution within the blade. Nevertheless, the problem is not yet satisfactorily worked out and the criteria of the laminar-turbulent transition are very difficult to build. The problem becomes simpler if the location of the transition point is known (i.e. from experimental data). On the basis of experimental data authors solved the problem of a blade cooling for both uncoupled and coupled method and different flow characters in order to obtain numerical results best matching the real phenomena.Copyright


Energy | 2017

Hydrogen generator characteristics for storage of renewably-generated energy

J. Kotowicz; Łukasz Bartela; D. Węcel; Klaudia Dubiel


Flow Measurement and Instrumentation | 2008

Experimental and numerical investigations of the averaging Pitot tube and analysis of installation effects on the flow coefficient

D. Węcel; T. Chmielniak; J. Kotowicz


Zeszyty Naukowe. Cieplne Maszyny Przepływowe - Turbomachinery / Politechnika Łódzka | 2005

Determination of the Flowmeters Characteristics Based on Computational Fluid Dynamics

D. Węcel; T. Chmielniak


Applied Energy | 2018

Analysis of component operation in power-to-gas-to-power installations

J. Kotowicz; D. Węcel; Michał Jurczyk


Journal of Power of Technologies | 2016

Analysis of Hydrogen Production in Alkaline Electrolyzers

J. Kotowicz; Michał Jurczyk; D. Węcel; W. Ogulewicz


Rynek Energii | 2016

Dynamika pracy elektrolizerów produkujących wodór

D. Węcel; W. Ogulewicz; J. Kotowicz; Michał Jurczyk


Rynek Energii | 2015

Charakterystyki ekonomiczne nadkrytycznego bloku typu oxy zintegrowanego z modułami ORC

J. Kotowicz; Mateusz Brzęczek; Marcin Job; W. Ogulewicz; D. Węcel


Rynek Energii | 2015

Analiza efektywności ekonomicznej nadkrytycznej elektrowni oxy z kotłem cfb i instalacją separacji powietrza z membraną wysokotemperaturową

J. Kotowicz; Adrian Balicki; D. Węcel; W. Ogulewicz


Rynek Energii | 2015

Elektrownia oxy z jonową membraną separacyjną - analiza techniczno-ekonomiczna z oszacowaniem ryzyka inwestycyjnego

J. Kotowicz; Sebastian Michalski; D. Węcel; W. Ogulewicz

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J. Kotowicz

Silesian University of Technology

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T. Chmielniak

Silesian University of Technology

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Michał Jurczyk

Silesian University of Technology

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Grzegorz Nowak

Silesian University of Technology

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Sebastian Michalski

Silesian University of Technology

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Włodzimierz Wróblewski

Silesian University of Technology

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A. Rusin

Silesian University of Technology

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Adrian Balicki

Silesian University of Technology

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Klaudia Dubiel

Silesian University of Technology

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Marcin Job

Silesian University of Technology

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