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13篇 您的检索式:作者名="FRANZ WINTER"
    题名 作者 年代 出处 被引量
1Decomposition of nitrous oxide at medium temperatures显示文摘Loffler Gerhard Wargadalam Verina J Winter Franz 2000Combustion and Flame2000,120,4:1
2Decomposition of nitrous oxide at medium temperatures显示文摘Loffler Gerhard Wargadalam Verina J Winter Franz 2000Combustion and Flame2000,120,4:1
3The No and N2O formation mechanism under Circulating Fluidized Bed eombustor conditions, from the single particle to the pilo Scale显示文摘Franz Winter Gerhard Loffler 1999Canadian Journal of Chemical Engineering1999,77,:1
4Heavy metal removal from sewage sludge ash and municipal solid waste fly ash — A comparison显示文摘Benedikt Nowak Philipp Aschenbrenner Franz Winter 2013Fuel Processing Technology2013,,:1
5Heavy metal removal from MSW fly ash by means of chlorination and thermal treatment: Influence of the chloride type显示文摘Benedikt Nowak Sandra Frías Rocha Philipp Aschenbrenner Helmut Rechberger Franz Winter 2011Chemical Engineering Journal2011,,:1
6Catalytic effect of biomass ash on CO, CH4 and HCN oxidation under fluidized bed com- bustor conditions显示文摘GERHARD LOFFLER VERINA J WARGADALAM FRANZ WINTER 2002Fuel2002,81,6:1
7N 2 O emission under fluidized bed combustion condition显示文摘B.X Shen T Mi D.C Liu B Feng Q Yao Franz Winter 2002Fuel Processing Technology2002,,1:1
8The NO and N2O formation mechanism under circulating fluidized bed combustor conditions: from the single particle to the pilot-scale显示文摘Franz Winter Gerhard Loffler 1999The Canadian Journal of Chemical Engineering1999,77,:1
9Reduction Behavior of Hematite to Magnetite Under Fluidized Bed Conditions 显示文摘Christoph Feilmayr Albin Thumhofer Franz Winter 2004ISIJ Int2004,44,7:1
10Theoretical analysis on the injection of H2 ,CO, CH4 rich gases into the blast furnace 显示文摘DietmarAndahazy Gerhard Loffler Franz Winter 2005ISIJ International2005,45,2:1
11Reducing ability of CO and I-I2 of gases formed in the lower part of the blast furnace by gas and oil injection 显示文摘Sabine Slaby Dietmar Andahazy Franz Winter 2006ISIJ International2006,146,7:1
12Reducing Ability of CO and H2 of Gases Formed in the Lower Part of the Blast Furnace by Gas and Oil Injection显示文摘Slaby Sabine Andahazy Dietmar Winter Franz 0,,07:1
13Design and simulation of gas burner ejectors显示文摘Ignition within gas burner ejectors can lead to off design conditions and has significant influence on the burner behavior.Thus ignition in the ejector should be prevented.In the present study the influence of combustion reactions on the performance of gas burner injectors is investigated.To investigate if ignition is possible,simulated ignition delay times,using a detailed reaction mechanism,are compared to predicted mean residence times of the gas in the ejector.Gas burner ejectors are designed using one dimensional analytic equations,based on energy and momentum conservation equations and conventional isentropic equations.1D results are compared to 2D computational fluid dynamics(CFD)simulations,to take into account non-ideal mixing effects along the ejector.Results are validated with experiments with air at room temperature.1D results show very good agreement not only with CFD simulations for the case of non-reactive flows,but also with performed experiments.It is shown that the assumption of ideal mixing along the ejector and thus the comparison of the ignition delay time to the gas mean residence time,to predict ignition in the ejector,is not valid.Ignition in the ejector is possible,even if the ignition delay time is more than thirty times higher than the mean residence time.In addition to that,it is shown,that ignition and the choice of reaction mechanism have significant influence on the predicted gas burner ejector performance.Thus,the accurate prediction of ignition delay time and the use of a detailed reaction kinetic are mandatory to correctly predict the burner ejector behavior.Mario Pichler Florian Wesenauer Christian Jordan Stefan Puskas Bernhard Streibl Franz Winter Michael Harasek 2021Carbon Resources Conversion2021,4,1:0
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