Modeling I

Thursday, 27 July 2017: 14:00-17:40
Atlantic Ballroom 1/2 (The Diplomat Beach Resort)
Chairs:
Brian J Koeppel and Naoki Shikazono
14:00
256
Effect of Carbon-Neutral Fuel Fed Solid Oxide Fuel Cell System on CO2 Emission Reduction
Y. Tachikawa (Next generation fuel cell research center, Center for Co-Evolutional Social Systems, Kyushu Univ.), Y. Matsuzaki (Kyushu University), Y. Kawabata (Tokyo Gas Co., Ltd.), M. Sugahara (Kyushu University), T. Somekawa (kyushu University), S. Taniguchi (Next-Generation Fuel Cell Research Center (NEXT-FC)), and K. Sasaki (Department of Hydrogen Energy Systems, Kyushu University)
14:20
257
Numerical Investigation for 1kW-Class FT-SOFC System to Evaluate the Compact Size Integrated Hotbox Design
K. Rashid (University of Science and Technology (UST), South Korea, Korea Institute of Energy research (KIER)), S. K. Dong (Korea Institute of Energy Research (KIER)), and M. T. Mehran (Korea Institute of Energy Research)
14:40
258
Modeling of Methanol-Fueled SOFC with Anode Offgas Recycling for Simplified System Design
S. Larose (Industrial Research Chair on Bioeconomy and Bioenergy, Université du Québec à Trois-Rivières), R. Labrecque (Institut de Recherche d'Hydro-Québec, Laboratoire des Technologies de l'Énergie), and P. J. Mangin (Université du Québec à Trois-Rivières, Industrial Research Chair on Bioeconomy and Bioenergy)
15:00
259
Use of a Reduced Order Model (ROM) to Simulate SOFC Performance in System Models
B. J. Koeppel, C. Lai (Pacific Northwest National Laboratory), A. K. S. Iyengar (KeyLogic Systems Inc.), Z. Xu, C. Wang (Pacific Northwest National Laboratory), and G. A. Hackett (U.S. DOE National Energy Technology Laboratory)
15:20
260
Automated SOFC Design Exploration
C. A. Lueth (Siemens PLM Software) and C. F. Walchshofer (Siemens Industry Software GmbH)
15:40
Break
16:00
261
A Multi-Scale Modelling Approach and Experimental Calibration Applied to Commercial SOFCs
L. Mastropasqua, A. Donazzi, and S. Campanari (Politecnico di Milano)
16:20
262
Three-Dimensional Modelling of a Microtubular SOFC: A Multiphysics Approach
O. Hodjati-Pugh (Uiniversity of Birmingham), A. Dhir (University of Wolverhampton), and R. Steinberger-Wilckens (University of Birmingham)
16:40
263
A Non-Isothermal 2D Stationary FEM Model for Hydrocarbon Fueled SOFCs Stack Layers
N. Russner, H. Geisler, S. Dierickx, A. Weber, and E. Ivers-Tiffée (IAM-WET, Karlsruhe Institute of Technology (KIT))
17:00
264
Computational Analysis of Dynamic Tubular SOFC with a Built-in Chemical Iron Bed
X. Jin, M. Guo, R. E. White, and K. Huang (University of South Carolina)
17:20
265
Multi-Physics Simulation of SOFC Button Cell with Multi-Step Charge Transfer Model in Composite LSM/YSZ Cathode
T. Yang, J. Liu (U.S. DOE National Energy Technology Laboratory), H. O. Finklea (Chemistry Department, West Virginia University, USA, U.S. DOE, National Energy Technology Laboratory), H. Abernathy (AECOM, U.S. DOE National Energy Technology Laboratory), and G. A. Hackett (U.S. DOE National Energy Technology Laboratory)