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Wyszukujesz frazę "underground coal gasification" wg kryterium: Temat


Wyświetlanie 1-5 z 5
Tytuł:
CFD simulation of temperature variation in carboniferous rock strata during UCG
Autorzy:
Janoszek, T.
Sygała, A.
Bukowska, M.
Powiązania:
https://bibliotekanauki.pl/articles/92018.pdf
Data publikacji:
2013
Wydawca:
Główny Instytut Górnictwa
Tematy:
underground coal gasification
computational fluid dynamics (CFD)
CFD
modelling
podziemne zgazowanie węgla
numeryczna mechanika płynów
modelowanie
Opis:
The numerical simulation was based on the computational fluid dynamics formalism in order to identify the change of temperature in rock strata during underground coal gasification (UCG). The calculations simulated the coal gasification process using oxygen and water vapour as a gasification agent in 120 hours. Based on the selected software (Ansys-Fluent) a model of underground coal gasification (UCG) process was developed. The flow of the gasification agent, the description of the turbulence model, the heat-exchange model and the method of simulation of chemical reactions of gasification are presented herein.
Źródło:
Journal of Sustainable Mining; 2013, 12, 4; 34-44
2300-1364
2300-3960
Pojawia się w:
Journal of Sustainable Mining
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Determination of kinetic parameters of coal pyrolysis to simulate the process of underground coal gasification (UCG)
Autorzy:
Urych, B.
Powiązania:
https://bibliotekanauki.pl/articles/92059.pdf
Data publikacji:
2014
Wydawca:
Główny Instytut Górnictwa
Tematy:
underground coal gasification
pyrolysis
thermogravimetric analysis
kinetic parameters
podziemne zgazowanie węgla
piroliza
analiza termograwimetryczna
parametry kinetyczne
Opis:
Purpose The aim of the research presented in this paper was to determine the values of the kinetic parameters of coal pyrolysis from two areas of the planned experiment, UCG, i.e. the Barbara Experimental Mine of the Central Mining Institute and the Wieczorek Mine. Methods The thermal decomposition of coal analysis used the thermogravimetric technique. The test was carried out in a temperature range of 298-1173 K in a nitrogen atmosphere for three fixed heating rates, β – 5, 10, and 15 K/min. A selection of sample heating rates of coal and reaction environments were designed to reflect the conditions seen during the process of underground coal gasification. The kinetic parameters were determined by using modified Coats-Redfern, Kissinger and Mianowski-Radko methods. Results The values of the activation energy, E, and the pre-exponential factor, A, were determined for a given model of the first order decomposition reaction of coal. The study successfully compared kinetic parameters of the tested coals. Practical implications Designated kinetic parameters may be used to model the process of pyrolysis and – as preliminary data – for installation design of pilot underground coal gasification. Originality/ value The devolatilization of a homogenous lump of coal is a complex issue. Currently, the CFD technique (Computational Fluid Dynamics) is commonly used for the multi-dimensional and multiphase phenomena modelling. The mathematical models, describing the kinetics of the decomposition of coal, proposed in the article can, therefore, be an integral part of models based on numerical fluid mechanics.
Źródło:
Journal of Sustainable Mining; 2014, 13, 1; 3-9
2300-1364
2300-3960
Pojawia się w:
Journal of Sustainable Mining
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Deformation properties of sedimentary rocks in the process of underground coal gasification
Autorzy:
Bukowska, M.
Sygała, A.
Powiązania:
https://bibliotekanauki.pl/articles/92007.pdf
Data publikacji:
2015
Wydawca:
Główny Instytut Górnictwa
Tematy:
high temperature
underground coal gasification
residual strain
Poisson's ratio
wysoka temperatura
podziemna gazyfikacja węgla
odkształcenie trwałe
współczynnik Poissona
Opis:
The article presents results of research into changes in deformation properties of rocks, under influence of temperature, during the process of underground coal gasification. Samples of carboniferous sedimentary rocks (claystones and sandstones), collected in different areas of Upper Silesian Coal Basin (GZW), were heated at the temperature of between 100 and 1000-1200°C, and then subjected to uniaxial compression tests to obtain a full stress-strain curves of the samples and determine values of residual strain and Poisson's ratio. To compare the obtained values of deformation parameters of rocks, tested in dry-air state and after heating in a given range of temperature, normalised values of residual strain and Poisson's ratio were determined. Based on them, coefficient of influence of temperature on tested deformation parameters was determined. The obtained values of the coefficient can be applied in mining practice to forecast deformability of gangue during underground coal gasification, when in the direct surrounding of a georeactor there are claystones or sandstones. The obtained results were analysed based on classification of uniaxial compression strength of GZW gangue, which formed the basis for dividing claystones and sandstones into very low, low, medium and high uniaxial compression strength rocks. Based on the conducted tests it was concluded that the influence of uniaxial compression strength on the value of residual strain, unlike the influence of grain size of sandstones, is unambiguous within the range of changes in the parameter. Among claystones changes in the value of Poisson's ratio depending on their initial strength were observed. Sandstones of different grain size either increased or decreased the value of Poisson's ratio in comparison with the value determined at room temperature in dry-air conditions.
Źródło:
Journal of Sustainable Mining; 2015, 14, 3; 144-156
2300-1364
2300-3960
Pojawia się w:
Journal of Sustainable Mining
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Material and Energy Flow Analysis (MEFA) of the unconventional method of electricity production based on underground coal gasification
Autorzy:
Czaplicka-Kolarz, K.
Korol, J.
Ludwik-Pardała, M.
Ponikiewska, K.
Powiązania:
https://bibliotekanauki.pl/articles/970691.pdf
Data publikacji:
2014
Wydawca:
Główny Instytut Górnictwa
Tematy:
material flow analysis
underground coal gasification
electricity production
Umberto NXT LCA
analiza przepływu materiałów
podziemna gazyfikacja węgla
produkcja energii elektrycznej
Opis:
Purpose In this paper, the application of Umberto NXT LCA software to devise a Material and Energy Flow Analyses (MEFA) for the technology of producing electricity from gas extracted in the process of shaftless underground coal gasification is presented. The Material Flow Analyses of underground coal gasification includes a range of technology, through obtaining process gas and its purification, to electricity production, and, additionally, the capture of carbon dioxide. Methods To evaluate electricity production based on Underground Coal Gasification, Material and Energy Flow Analyses (MEFA) was used. Modeling material and energy flow helps a high level of efficiency or technology of a given process to be reached, through the effective use of resources and energy, or waste management. The applied software for modeling material flow enables, not only, the simulation of industrial processes, but also the simulation of any process with a material or energy flow, e.g. in agriculture. Results MEFA enabled the visualization of material and energy flow between individual unit processes of the technology of electricity production from UCG gas. An analysis of material and energy flow networks presented in the form of Sankey diagrams enabled the identification of unit processes with the biggest consumption of raw materials and energy, and the greatest amount of emissions to the environment. Practical implications Thanks to applying material and energy flow networks with Umberto software, it is possible to visualize the flow of materials and energy in an analyzed system (process/technology). The visualization can be presented in the form of an inventory list of input and output data, or in the form of a Sankey diagram. In the article, a Sankey diagram has been utilized. MEFA is first stage of the plan to conduct analyses using Umberto software. The analyses performed so far will be used in the following stages of the research to assess the environmental impact using the LCA (Life Cycle Assessment) technique, to analyze costs using the LCC (Life Cycle Cost) technique, and to analyze eco-efficiency. It is important to highlight the fact that this is the first attempt of material and energy flow analysis of electricity production from UCG gas. Originality/ value This is the first approach which contains a whole chain of electricity production from Underground Coal Gasification, including stages of gas cleaning, electricity production and the additional capture of carbon dioxide.
Źródło:
Journal of Sustainable Mining; 2014, 13, 3; 41-47
2300-1364
2300-3960
Pojawia się w:
Journal of Sustainable Mining
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Modelling of gas flow in the underground coal gasification process and its interactions with the rock environment
Modelowanie przepływu gazu w procesie podziemnego zgazowania węgla i ich interakcja ze środowiskiem skalnym
Autorzy:
Janoszek, T.
Łączny, M. J.
Stańczyk, K.
Smoliński, A.
Wiatowski, M.
Powiązania:
https://bibliotekanauki.pl/articles/1205399.pdf
Data publikacji:
2013
Wydawca:
Główny Instytut Górnictwa
Tematy:
underground coal gasification
numerical modelling
computational fluid dynamics (CFD)
geochemical modelling
podziemne zgazowanie węgla
modelowanie numeryczne
numeryczna mechanika płynów
modelowanie geochemiczne
Opis:
The main goal of this study was the analysis of gas flow in the underground coal gasification process and interactions with the surrounding rock mass. The article is a discussion of the assumptions for the geometric model and for the numerical method for its solution as well as assumptions for modelling the geochemical model of the interaction between gas-rock-water, in terms of equilibrium calculations, chemical and gas flow modelling in porous mediums. Ansys-Fluent software was used to describe the underground coal gasification process (UCG). The numerical solution was compared with experimental data. The PHREEQC program was used to describe the chemical reaction between the gaseous products of the UCG process and the rock strata in the presence of reservoir waters.
W niniejszym artykule dokonano analizy badanego zjawiska pod kątem zrozumienia zagadnienia przepływu gazów i ich interakcji z warstwą mineralną w oparciu o dostępne narzędzia informatyczne oraz wyniki eksperymentów. Zakres pracy obejmuje opracowanie modelu geometrycznego i założeń do modelu numerycznego georeaktora oraz zdefiniowanie układu trójfazowego gaz – skała – płyn w aspekcie obliczeń równowagowych, chemicznych oraz możliwości modelowania przepływu gazów w ośrodku porowatym. W prezentowanej pracy pakiet Ansys-Fluent został zaadaptowany do modelowania przepływu gazów i procesu podziemnego zgazowania węgla (PZW). Przeprowadzone symulacje oraz weryfikacje uzyskanych wyników odniesiono do dostępnych danych eksperymentalnych. Program PHREEQC został wykorzystany do analizy interakcji zachodzących między gazowymi produktami podziemnego zgazowania węgla a środowiskiem skalnym.
Źródło:
Journal of Sustainable Mining; 2013, 12, 2; 8-20
2300-1364
2300-3960
Pojawia się w:
Journal of Sustainable Mining
Dostawca treści:
Biblioteka Nauki
Artykuł
    Wyświetlanie 1-5 z 5

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