Ontology type: schema:ScholarlyArticle
2003-05
AUTHORSK. A. Sørensen, O. Hassan, K. Morgan, N. P. Weatherill
ABSTRACTA cell vertex finite volume method for the solution of steady compressible turbulent flow problems on unstructured hybrid meshes of tetrahedra, prisms, pyramids and hexahedra is described. These hybrid meshes are constructed by firstly discretising the computational domain using tetrahedral elements and then by merging certain tetrahedra. A one equation turbulence model is employed and the solution of the steady flow equations is obtained by explicit relaxation. The solution process is accelerated by the addition of a multigrid method, in which the coarse meshes are generated by agglomeration, and by parallelisation. The approach is shown to be effective for the simulation of a number of 3D flows of current practical interest. More... »
PAGES101-114
http://scigraph.springernature.com/pub.10.1007/s00466-002-0397-9
DOIhttp://dx.doi.org/10.1007/s00466-002-0397-9
DIMENSIONShttps://app.dimensions.ai/details/publication/pub.1004220116
JSON-LD is the canonical representation for SciGraph data.
TIP: You can open this SciGraph record using an external JSON-LD service: JSON-LD Playground Google SDTT
[
{
"@context": "https://springernature.github.io/scigraph/jsonld/sgcontext.json",
"about": [
{
"id": "http://purl.org/au-research/vocabulary/anzsrc-for/2008/09",
"inDefinedTermSet": "http://purl.org/au-research/vocabulary/anzsrc-for/2008/",
"name": "Engineering",
"type": "DefinedTerm"
},
{
"id": "http://purl.org/au-research/vocabulary/anzsrc-for/2008/0915",
"inDefinedTermSet": "http://purl.org/au-research/vocabulary/anzsrc-for/2008/",
"name": "Interdisciplinary Engineering",
"type": "DefinedTerm"
}
],
"author": [
{
"affiliation": {
"alternateName": "Aerodynamics-MT632, EADS, Military Aircraft, 81663 M\u00fcnchen, Germany, DE",
"id": "http://www.grid.ac/institutes/None",
"name": [
"Aerodynamics-MT632, EADS, Military Aircraft, 81663 M\u00fcnchen, Germany, DE"
],
"type": "Organization"
},
"familyName": "S\u00f8rensen",
"givenName": "K. A.",
"id": "sg:person.011657122525.00",
"sameAs": [
"https://app.dimensions.ai/discover/publication?and_facet_researcher=ur.011657122525.00"
],
"type": "Person"
},
{
"affiliation": {
"alternateName": "Civil & Computational Engineering Centre, University of Wales, Swansea SA2 8PP, Wales, UK, GB",
"id": "http://www.grid.ac/institutes/grid.8155.9",
"name": [
"Civil & Computational Engineering Centre, University of Wales, Swansea SA2 8PP, Wales, UK, GB"
],
"type": "Organization"
},
"familyName": "Hassan",
"givenName": "O.",
"id": "sg:person.01105464164.77",
"sameAs": [
"https://app.dimensions.ai/discover/publication?and_facet_researcher=ur.01105464164.77"
],
"type": "Person"
},
{
"affiliation": {
"alternateName": "Civil & Computational Engineering Centre, University of Wales, Swansea SA2 8PP, Wales, UK, GB",
"id": "http://www.grid.ac/institutes/grid.8155.9",
"name": [
"Civil & Computational Engineering Centre, University of Wales, Swansea SA2 8PP, Wales, UK, GB"
],
"type": "Organization"
},
"familyName": "Morgan",
"givenName": "K.",
"id": "sg:person.014565152133.18",
"sameAs": [
"https://app.dimensions.ai/discover/publication?and_facet_researcher=ur.014565152133.18"
],
"type": "Person"
},
{
"affiliation": {
"alternateName": "Civil & Computational Engineering Centre, University of Wales, Swansea SA2 8PP, Wales, UK, GB",
"id": "http://www.grid.ac/institutes/grid.8155.9",
"name": [
"Civil & Computational Engineering Centre, University of Wales, Swansea SA2 8PP, Wales, UK, GB"
],
"type": "Organization"
},
"familyName": "Weatherill",
"givenName": "N. P.",
"id": "sg:person.013270563126.27",
"sameAs": [
"https://app.dimensions.ai/discover/publication?and_facet_researcher=ur.013270563126.27"
],
"type": "Person"
}
],
"citation": [
{
"id": "sg:pub.10.1007/bf00350098",
"sameAs": [
"https://app.dimensions.ai/details/publication/pub.1022287272",
"https://doi.org/10.1007/bf00350098"
],
"type": "CreativeWork"
}
],
"datePublished": "2003-05",
"datePublishedReg": "2003-05-01",
"description": "Abstract\u2002A cell vertex finite volume method for the solution of steady compressible turbulent flow problems on unstructured hybrid meshes of tetrahedra, prisms, pyramids and hexahedra is described. These hybrid meshes are constructed by firstly discretising the computational domain using tetrahedral elements and then by merging certain tetrahedra. A one equation turbulence model is employed and the solution of the steady flow equations is obtained by explicit relaxation. The solution process is accelerated by the addition of a multigrid method, in which the coarse meshes are generated by agglomeration, and by parallelisation. The approach is shown to be effective for the simulation of a number of 3D flows of current practical interest.",
"genre": "article",
"id": "sg:pub.10.1007/s00466-002-0397-9",
"inLanguage": "en",
"isAccessibleForFree": false,
"isPartOf": [
{
"id": "sg:journal.1127263",
"issn": [
"0178-7675",
"1432-0924"
],
"name": "Computational Mechanics",
"publisher": "Springer Nature",
"type": "Periodical"
},
{
"issueNumber": "1",
"type": "PublicationIssue"
},
{
"type": "PublicationVolume",
"volumeNumber": "31"
}
],
"keywords": [
"cell-vertex finite volume method",
"steady flow equations",
"turbulent flow problems",
"unstructured mesh methods",
"hybrid meshes",
"unstructured hybrid meshes",
"equation turbulence model",
"finite volume method",
"compressible turbulent flow",
"multigrid method",
"flow problems",
"flow equations",
"current practical interest",
"turbulence model",
"turbulent flow",
"coarse mesh",
"volume method",
"computational domain",
"mesh method",
"tetrahedral elements",
"explicit relaxation",
"practical interest",
"solution process",
"mesh",
"equations",
"flow",
"solution",
"hexahedra",
"parallelisation",
"agglomeration",
"tetrahedra",
"simulations",
"method",
"problem",
"relaxation",
"model",
"process",
"approach",
"elements",
"number",
"prism",
"pyramid",
"domain",
"addition",
"interest"
],
"name": "A multigrid accelerated hybrid unstructured mesh method for 3D compressible turbulent flow",
"pagination": "101-114",
"productId": [
{
"name": "dimensions_id",
"type": "PropertyValue",
"value": [
"pub.1004220116"
]
},
{
"name": "doi",
"type": "PropertyValue",
"value": [
"10.1007/s00466-002-0397-9"
]
}
],
"sameAs": [
"https://doi.org/10.1007/s00466-002-0397-9",
"https://app.dimensions.ai/details/publication/pub.1004220116"
],
"sdDataset": "articles",
"sdDatePublished": "2022-05-10T09:49",
"sdLicense": "https://scigraph.springernature.com/explorer/license/",
"sdPublisher": {
"name": "Springer Nature - SN SciGraph project",
"type": "Organization"
},
"sdSource": "s3://com-springernature-scigraph/baseset/20220509/entities/gbq_results/article/article_375.jsonl",
"type": "ScholarlyArticle",
"url": "https://doi.org/10.1007/s00466-002-0397-9"
}
]
Download the RDF metadata as: json-ld nt turtle xml License info
JSON-LD is a popular format for linked data which is fully compatible with JSON.
curl -H 'Accept: application/ld+json' 'https://scigraph.springernature.com/pub.10.1007/s00466-002-0397-9'
N-Triples is a line-based linked data format ideal for batch operations.
curl -H 'Accept: application/n-triples' 'https://scigraph.springernature.com/pub.10.1007/s00466-002-0397-9'
Turtle is a human-readable linked data format.
curl -H 'Accept: text/turtle' 'https://scigraph.springernature.com/pub.10.1007/s00466-002-0397-9'
RDF/XML is a standard XML format for linked data.
curl -H 'Accept: application/rdf+xml' 'https://scigraph.springernature.com/pub.10.1007/s00466-002-0397-9'
This table displays all metadata directly associated to this object as RDF triples.
131 TRIPLES
22 PREDICATES
72 URIs
63 LITERALS
6 BLANK NODES