Immersed boundary method (original) (raw)

Property Value
dbo:abstract In computational fluid dynamics, the immersed boundary method originally referred to an approach developed by Charles Peskin in 1972 to simulate fluid-structure (fiber) interactions. Treating the coupling of the structure deformations and the fluid flow poses a number of challenging problems for numerical simulations (the elastic boundary changes the flow of the fluid and the fluid moves the elastic boundary simultaneously). In the immersed boundary method the fluid is represented in an Eulerian coordinate system and the structure is represented in Lagrangian coordinates. For Newtonian fluids governed by the Navier–Stokes equations, the fluid equations are and if the flow is incompressible, we have the further condition that The immersed structures are typically represented as a collection of one-dimensional fibers, denoted by . Each fiber can be viewed as a parametric curve where is the Lagrangian coordinate along the fiber and is time. The physics of the fiber is represented via a fiber force distribution function . Spring forces, bending resistance or any other type of behavior can be built into this term. The force exerted by the structure on the fluid is then interpolated as a source term in the momentum equation using where is the Dirac δ function. The forcing can be extended to multiple dimensions to model elastic surfaces or three-dimensional solids. Assuming a massless structure, the elastic fiber moves with the local fluid velocity and can be interpolated via the delta function where denotes the entire fluid domain. Discretization of these equations can be done by assuming an Eulerian grid on the fluid and a separate Lagrangian grid on the fiber. Approximations of the Delta distribution by smoother functions will allow us to interpolate between the two grids. Any existing fluid solver can be coupled to a solver for the fiber equations to solve the Immersed Boundary equations.Variants of this basic approach have been applied to simulate a wide variety of mechanical systems involving elastic structures which interact with fluid flows. Since the original development of this method by Peskin, a variety of approaches have been developed to simulate flow over complicated immersed bodies on grids that do not conform to the surface of the body. These include methods such as the immersed interface method, the Cartesian grid method, the ghost fluid method and the cut-cell method. Mittal and Iaccarino refer to all these (and other related) methods as Immersed Boundary Methods and provide various categorizations of these methods. From the point of view of implementation, they categorize immersed boundary methods into continuous forcing and discrete forcing methods. In the former, a force term is added to the continuous Navier-Stokes equations before discretization, whereas in the latter, the forcing is applied (explicitly or implicitly) to the discretized equations. Under this taxonomy, Peskin's original method is a continuous forcing method whereas Cartesian grid, cut-cell and the ghost-fluid methods are discrete forcing methods. (en) 埋め込み境界法(うめこみきょうかいほう、英: immersed boundary method)または境界埋め込み法とは、流体が弾性構造体や膜と相互作用している力学系をコンピュータシミュレーションする手法である。構造体の変形と流体の運動の連成問題は、数値計算上の課題を多く含んでいる。埋め込み境界法では、流体はオイラー座標系で、構造物はラグランジュ座標系で表現する。この方法の様々な改良形は、弾性構造体と流体の相互作用を伴う力学系のシミュレーションに広く応用されている。 (ja)
dbo:wikiPageExternalLink http://www.math.utah.edu/IBIS/ http://mango-selm.org/ http://software.atzberger.org/ https://openfoamwiki.net/index.php/Extend-bazaar/Toolkits/ImmersedBoundary https://www.simscale.com/docs/analysis-types/immersed-boundary-analysis/ https://github.com/ChenguangZhang/sdfibm https://github.com/IBAMR/IBAMR https://github.com/nickabattista/ib2d https://web.archive.org/web/20200101024645/http:/pdfs.semanticscholar.org/403c/254279691bf111f8a0605e09615825ccda96.pdf http://espressomd.org/html/doc/advanced_methods.html%23immersed-boundary-method-for-soft-elastic-objects https://www.mentor.com/products/mechanical/floefd/ http://pdfs.semanticscholar.org/403c/254279691bf111f8a0605e09615825ccda96.pdf
dbo:wikiPageID 17943941 (xsd:integer)
dbo:wikiPageLength 10263 (xsd:nonNegativeInteger)
dbo:wikiPageRevisionID 1117708112 (xsd:integer)
dbo:wikiPageWikiLink dbr:Level-set_method dbr:Computational_fluid_dynamics dbr:Computer_simulation dbr:Marker-and-cell_method dbr:Advanced_Simulation_Library dbr:Charles_S._Peskin dbc:Computational_fluid_dynamics dbc:Numerical_differential_equations dbc:Fluid_mechanics dbr:Stochastic_Eulerian_Lagrangian_method dbr:Dirac_delta_function dbr:Navier–Stokes_equations dbr:Newtonian_fluids dbr:Volume_of_fluid_method dbr:Stokesian_dynamics dbr:Lagrangian_and_Eulerian_coordinates
dbp:wikiPageUsesTemplate dbt:Citation dbt:Cite_journal dbt:More_footnotes dbt:Mvar dbt:Reflist dbt:Numerical_PDE
dct:subject dbc:Computational_fluid_dynamics dbc:Numerical_differential_equations dbc:Fluid_mechanics
rdf:type yago:WikicatNumericalDifferentialEquations yago:Abstraction100002137 yago:Communication100033020 yago:DifferentialEquation106670521 yago:Equation106669864 yago:MathematicalStatement106732169 yago:Message106598915 yago:Statement106722453
rdfs:comment 埋め込み境界法(うめこみきょうかいほう、英: immersed boundary method)または境界埋め込み法とは、流体が弾性構造体や膜と相互作用している力学系をコンピュータシミュレーションする手法である。構造体の変形と流体の運動の連成問題は、数値計算上の課題を多く含んでいる。埋め込み境界法では、流体はオイラー座標系で、構造物はラグランジュ座標系で表現する。この方法の様々な改良形は、弾性構造体と流体の相互作用を伴う力学系のシミュレーションに広く応用されている。 (ja) In computational fluid dynamics, the immersed boundary method originally referred to an approach developed by Charles Peskin in 1972 to simulate fluid-structure (fiber) interactions. Treating the coupling of the structure deformations and the fluid flow poses a number of challenging problems for numerical simulations (the elastic boundary changes the flow of the fluid and the fluid moves the elastic boundary simultaneously). In the immersed boundary method the fluid is represented in an Eulerian coordinate system and the structure is represented in Lagrangian coordinates. For Newtonian fluids governed by the Navier–Stokes equations, the fluid equations are (en)
rdfs:label Immersed boundary method (en) 埋め込み境界法 (ja)
owl:sameAs freebase:Immersed boundary method yago-res:Immersed boundary method wikidata:Immersed boundary method dbpedia-ja:Immersed boundary method https://global.dbpedia.org/id/BpMc
prov:wasDerivedFrom wikipedia-en:Immersed_boundary_method?oldid=1117708112&ns=0
foaf:isPrimaryTopicOf wikipedia-en:Immersed_boundary_method
is dbo:wikiPageRedirects of dbr:Immersed_Boundary_Method
is dbo:wikiPageWikiLink of dbr:Meshfree_methods dbr:Particle_method dbr:Index_of_physics_articles_(I) dbr:List_of_numerical_analysis_topics dbr:Boundary_element_method dbr:Level-set_method dbr:Computational_fluid_dynamics dbr:Faxén's_law dbr:Marker-and-cell_method dbr:Agent-based_model_in_biology dbr:Advanced_Simulation_Library dbr:Fluid_dynamics dbr:Cell-based_models dbr:Charles_S._Peskin dbr:Fluid–structure_interaction dbr:Immersed_Boundary_Method dbr:Stochastic_Eulerian_Lagrangian_method dbr:Brownian_dynamics dbr:Volume_of_fluid_method dbr:Stokesian_dynamics dbr:Rajat_Mittal dbr:Systolic_hypertension
is foaf:primaryTopic of wikipedia-en:Immersed_boundary_method