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         "type" : "Publication",
         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/23886d742461971b380dfbfdfbab7f0bc/mhartmann",         
         "tags" : [
            "volume","in","method","finite","media;","stochastic","porous","Flow","vorlaeufig","Hybrid","Galerkin"
         ],
         
         "intraHash" : "3886d742461971b380dfbfdfbab7f0bc",
         "interHash" : "9edc4b7e189ef751cf0e8c97b22240ef",
         "label" : "Stochastic Modeling for Heterogeneous Two-Phase Flow",
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         "pub-type": "incollection",
         "booktitle": "Finite Volumes for Complex Applications VII-Methods and Theoretical\n\tAspects","series": "Springer Proceedings in Mathematics & Statistics","publisher":"Springer International Publishing",
         "year": "2014", 
         "url": "http://dx.doi.org/10.1007/978-3-319-05684-5_34", 
         
         "author": [ 
            "M. Köppel","I. Kröker","C. Rohde"
         ],
         "authors": [
         	
            	{"first" : "M.",	"last" : "Köppel"},
            	{"first" : "I.",	"last" : "Kröker"},
            	{"first" : "C.",	"last" : "Rohde"}
         ],
         
         "editor": [ 
            "Jürgen Fuhrmann","Mario Ohlberger","Christian Rohde"
         ],
         "editors": [
         	
            	{"first" : "Jürgen",	"last" : "Fuhrmann"},
            	{"first" : "Mario",	"last" : "Ohlberger"},
            	{"first" : "Christian",	"last" : "Rohde"}
         ],
         "volume": "77","pages": "353-361",
         "isbn" : "978-3-319-05683-8",
         
         "owner" : "seusdd",
         
         "language" : "English",
         
         "doi" : "10.1007/978-3-319-05684-5_34",
         
         "bibtexKey": "koppel2014stochastic"

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         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/20292151aa2bb96a8903133be3ddc0c68/mhartmann",         
         "tags" : [
            "method","element","Boundary","vorlaeufig"
         ],
         
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         "interHash" : "6d1c4375c318fb277b3b3e46876b9aad",
         "label" : "Time domain boundary elements for dynamic contact problems",
         "user" : "mhartmann",
         "description" : "",
         "date" : "2018-07-20 10:54:15",
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         "pub-type": "article",
         "journal": "Computer Methods in Applied Mechanics and Engineering",
         "year": "2018", 
         "url": "https://www.sciencedirect.com/science/article/pii/S0045782518300276", 
         
         "author": [ 
            "H. Gimperlein","F. Meyer","C. �zdemir","E. P. Stephan"
         ],
         "authors": [
         	
            	{"first" : "H.",	"last" : "Gimperlein"},
            	{"first" : "F.",	"last" : "Meyer"},
            	{"first" : "C.",	"last" : "�zdemir"},
            	{"first" : "E. P.",	"last" : "Stephan"}
         ],
         "volume": "333","pages": "147 - 175","abstract": "Abstract This article considers a unilateral contact problem for the\n\twave equation. The problem is reduced to a variational inequality\n\tfor the Dirichlet-to-Neumann operator for the wave equation on the\n\tboundary, which is solved in a saddle point formulation using boundary\n\telements in the time domain. As a model problem, also a variational\n\tinequality for the single layer operator is considered. A priori\n\testimates are obtained for Galerkin approximations both to the variational\n\tinequality and the mixed formulation in the case of a flat contact\n\tarea, where the existence of solutions to the continuous problem\n\tis known. Numerical experiments demonstrate the performance of the\n\tproposed mixed method. They indicate the stability and convergence\n\tbeyond flat geometries.",
         "issn" : "0045-7825",
         
         "owner" : "meyerfn",
         
         "doi" : "https://doi.org/10.1016/j.cma.2018.01.025",
         
         "bibtexKey": "gimperlein2018domain"

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         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/2a17f7a5c27d89609dfe41939bfe9c902/mhartmann",         
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            "models,","method","Tumor","iterative","vorlaeufig","multiscale","migration,","cell"
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         "label" : "On a stochastic reaction--diffusion system modeling pattern formation\n\ton seashells",
         "user" : "mhartmann",
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         "date" : "2018-07-20 10:54:15",
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         "count" : 3,
         "pub-type": "article",
         "journal": "Mathematical Biosciences and Engineering","publisher":"Springer-Verlag",
         "year": "2011", 
         "url": "http://dx.doi.org/10.3934/mbe.2011.8.575", 
         
         "author": [ 
            "Jan Kelkel","Christina Surulescu"
         ],
         "authors": [
         	
            	{"first" : "Jan",	"last" : "Kelkel"},
            	{"first" : "Christina",	"last" : "Surulescu"}
         ],
         "volume": "8","number": "2","pages": "575--589",
         "issn" : "0303-6812",
         
         "language" : "English",
         
         "doi" : "10.3934/mbe.2011.8.575",
         
         "bibtexKey": "kelkel2011stochastic"

      }
,
      {
         "type" : "Publication",
         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/2cb88371212f23f2387c876de0c82ad50/mhartmann",         
         "tags" : [
            "method","Adaptive","vorlaeufig"
         ],
         
         "intraHash" : "cb88371212f23f2387c876de0c82ad50",
         "interHash" : "20fdeaf87d8fa0f67305283fd3e0234d",
         "label" : "Distributed Newest Vertex Bisection",
         "user" : "mhartmann",
         "description" : "",
         "date" : "2018-07-20 10:54:15",
         "changeDate" : "2018-07-20 08:54:15",
         "count" : 2,
         "pub-type": "article",
         "journal": "Journal of Parallel and Distributed Computing",
         "year": "2017", 
         "url": "http://www.sciencedirect.com/science/article/pii/S0743731516301782", 
         
         "author": [ 
            "Martin Alkämper","Robert Klöfkorn"
         ],
         "authors": [
         	
            	{"first" : "Martin",	"last" : "Alkämper"},
            	{"first" : "Robert",	"last" : "Klöfkorn"}
         ],
         "volume": "104","pages": "1 - 11","abstract": "Distributed adaptive conforming refinement requires multiple iterations\n\tof the serial refinement algorithm and global communication as the\n\trefinement can be propagated over several processor boundaries. We\n\tshow bounds on the maximum number of iterations. The algorithm is\n\timplemented within the open-source software package Dune-ALUGrid.",
         "issn" : "0743-7315",
         
         "doi" : "http://dx.doi.org/10.1016/j.jpdc.2016.12.003",
         
         "bibtexKey": "alkamper2017distributed"

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