Page 153 - New Trends In Coal Conversion
P. 153

116                                            New Trends in Coal Conversion

         Yin, C., Rosendahl, L., Clausen, S., Hvid, S.L., 2012. Characterizing and modeling of an 88
             MW grate-fired boiler burning wheat straw: experience and lessons. Energy 41, 473e482.
         Yin, C., 2015. On gas and particle radiation in pulverized fuel combustion furnaces. Applied
             Energy 157, 554e561.
         Yin, C., 2016. Effects of moisture release and radiation properties in pulverized fuel combustion:
             a CFD modelling study. Fuel 165, 252e259.
         Yin, C., Yan, J., 2016. Oxy-fuel combustion of pulverized fuels: combustion fundamentals and
             modeling. Applied Energy 162, 742e762.
         Yin, C., 2017. Prediction of air-fuel and oxy-fuel combustion through a generic gas radiation
             property model. Applied Energy 189, 449e459.
         Yin, C., Li, S., 2017. Advancing grate-firing for greater environmental impacts and efficiency for
             decentralized biomass/waste combustion. Energy Procedia 120, 373e379.
         Yu, J., Lucas, J.A., Wall, T.F., 2007. Formation of the structure of chars during devolatilization
             of pf pulverized coal and its thermoproperties: a review. Progress in Energy and Com-
             bustion Science 33, 135e170.
         Zeldovich, Y.B., 1946. The oxidation of nitrogen in combustion and explosions. Acta Phys-
             icochem USSR 21, 577e628.
         Zhou, H., Jensen, A.D., Glarborg, P., Jensen, P.A., Kavaliauskas, A., 2005. Numerical modeling
             of straw combustion in a fixed bed. Fuel 84, 389e403.
         Zhou, H., Jensen, P.A., Frandsen, F.J., 2007. Dynamic mechanistic model of superheater deposit
             growth and shedding in a biomass fired grate boiler. Fuel 86, 1519e1533.
   148   149   150   151   152   153   154   155   156   157   158