8 research outputs found

    Symulacje przep艂ywu metod膮 siatkow膮 Boltzmanna w o艣rodku porowatym o geometrii zale偶nej od temperatury

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    The Lattice Boltzmann method (LBM) has been applied for flow and heat transfer computations. The simulations have been performed with the single-relaxation time model and an advanced formulation of boundary conditions for LBM. For nonsothermal cases, a second distribution function has been used. First, validation tests are reported for heated flow past a single obstacle as well as over a set of regularly and randomly arranged obstacles (grains) that make up a simplified model of a porous medium. The Nusselt number for heat transfer in flow past a single obstacle has been computed. Next, novel simulations of non-isothermal flow in a porous medium of temperature-affected geometry have been undertaken. For the purpose, the thermal dilatation of grains has been accounted for. Results are presented for the pressure head loss and time-varying temperature profiles in the medium. Qualitative computations accomplished to date constitute an encouraging first step to proceed further towards the impact of temperature-affected geometry in such flows, in particular for the coking process.Metoda siatkowa Boltzmanna (LBM) zosta艂a zastosowana do oblicze艅 przep艂ywu i wymiany ciep艂a. Symulacje zosta艂y przeprowadzone dla modelu z pojedynczym czasem relaksacji oraz zaawansowanego schematu warunk贸w brzegowych metody LB. Dla przep艂yw贸w nieizotermicznych, u偶yto dw贸ch funkcji rozk艂adu. Przedstawiono obliczenia testowe nieizotermicznego op艂ywu pojedynczej przeszkody, jak r贸wnie偶 op艂ywu regularnie oraz losowo rozmieszczonych przeszk贸d (ziaren), kt贸re tworz膮 uproszczony model o艣rodka porowatego. Wyznaczono liczb臋 Nusselta dla przep艂ywu ciep艂a w op艂ywie pojedynczej przeszkody. Podj臋to symulacje po艂膮czonych zjawisk (przep艂yw i wymiana ciep艂a) dla o艣rodka porowatego o zmiennej geometrii przeszk贸d. W tym przypadku uwzgl臋dniono rozszerzalno艣膰 termiczn膮 ziaren. Zaprezentowano wyniki dla straty ci艣nienia oraz zmienne w czasie profile temperatury dla przep艂ywu przez o艣rodek. Uzyskane dot膮d jako艣ciowe wyniki stanowi膮 pierwszy krok do dalszych bada艅 wp艂ywu zale偶nej od temperatury geometrii ziaren o艣rodka na przebieg takich przep艂yw贸w, a w szczeg贸lno艣ci na proces koksowania

    Transient one-dimensional model of coal carbonization in a stagnant packed bed

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    In the present paper, the one-dimensional model for heat and mass transfer in fixed coal bed was proposed to describe the thermal and flow characteristics in a coke oven chamber. For the purpose of the studied problem, the analysis was limited to the calculations of temperature field and pyrolytic gas yield. In order to verify the model, its theoretical predictions for temperature distribution during wet coal charge carbonization were compared with the measurement results found in the literature. In general, the investigation shows good qualitative agreement between numerical and experimental data. However, some discrepancy regarding the temperature characteristics at the stage of evaporation was observed
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