| contributor author | S. Kapadia |  | 
| contributor author | W. K. Anderson |  | 
| contributor author | L. Elliott |  | 
| contributor author | C. Burdyshaw |  | 
| date accessioned | 2017-05-09T00:33:27Z |  | 
| date available | 2017-05-09T00:33:27Z |  | 
| date copyright | May, 2009 |  | 
| date issued | 2009 |  | 
| identifier issn | 2381-6872 |  | 
| identifier other | JFCSAU-28937#021010_1.pdf |  | 
| identifier uri | http://yetl.yabesh.ir/yetl/handle/yetl/140863 |  | 
| description abstract | Sensitivity  analysis  and  design  optimization  of  solid  oxide  fuel  cells  are  presented.  Multispecies  diffusion,  low  speed  convection,  and  chemical  kinetics  are  included  in  a  two-dimensional  numerical  model,  and  sensitivity  derivatives  are  computed  using  both  discrete  adjoint  method  and  direct  differentiation.  The  implementation  of  the  discrete  adjoint  method  is  validated  by  comparing  sensitivity  derivatives  obtained  using  the  adjoint  with  results  obtained  using  direct  differentiation  and  finite-difference  methods.  For  optimization,  cost  functions  describing  hydrogen  concentration  along  the  anode-electrolyte  interface,  hydrogen  concentration  at  the  channel  outlet,  and  standard  deviation  of  temperature  inside  the  anode  are  considered.  Material  properties  of  the  anode,  operating  conditions,  and  a  shape  parameter  are  selected  as  design  variables.  The  development  of  an  initial  design  environment  to  automate  the  flowfield  solution,  sensitivity  computation,  optimization,  and  mesh  movement  is  also  described.  Finally,  an  adjoint-based  error  correction  method  is  implemented  and  demonstrated  to  provide  accurate  estimations  for  a  desired  objective  function  on  a  fine  mesh  by  combining  information  obtained  from  analysis  and  adjoint  solutions  on  a  coarser  one. |  | 
| publisher | The American Society of Mechanical Engineers (ASME) |  | 
| title | Adjoint-Based Sensitivity Analysis and Error Correction Methods Applied to Solid Oxide Fuel Cells |  | 
| type | Journal Paper |  | 
| journal volume | 6 |  | 
| journal issue | 2 |  | 
| journal title | Journal of Fuel Cell Science and Technology |  | 
| identifier doi | 10.1115/1.3005579 |  | 
| journal fristpage | 21010 |  | 
| identifier eissn | 2381-6910 |  | 
| keywords | Anodes |  | 
| keywords | Design |  | 
| keywords | Solid oxide fuel cells |  | 
| keywords | Errors |  | 
| keywords | Sensitivity analysis |  | 
| keywords | Channels (Hydraulic engineering) |  | 
| keywords | Optimization |  | 
| keywords | Hydrogen |  | 
| keywords | Functions |  | 
| keywords | Electrolytes AND Equations |  | 
| tree | Journal of Fuel Cell Science and Technology:;2009:;volume( 006 ):;issue: 002 |  | 
| contenttype | Fulltext |  |