unit:M2-PER-SEC-BAR

URI: http://qudt.org/vocab/unit/M2-PER-SEC-BAR

Type
Description

The unit $\textit{Square Metre per Second Bar}$ typically refers to a measure of fluid permeability in the context of materials science or engineering. It is the volume of fluid (in square metres) that can pass through a material in one second under a pressure difference of one bar. This unit is particularly important in fields such as petrophysics, hydrogeology, and materials engineering, where understanding the flow of fluids through porous media is crucial. A $Bar$ is not an SI unit but is a unit of pressure that is widely used in various scientific and engineering contexts. A bar is equal to $100,000\ pascals\(Pa)$, approximately equal to the atmospheric pressure on Earth at sea level.

Properties
qudt:iec61360Code
0112/2///62720#UAB493
qudt:symbol
m²/(s·bar)
qudt:ucumCode
m2.s-1.bar-1
Annotations
dcterms:description
The unit $\textit{Square Metre per Second Bar}$ typically refers to a measure of fluid permeability in the context of materials science or engineering. It is the volume of fluid (in square metres) that can pass through a material in one second under a pressure difference of one bar. This unit is particularly important in fields such as petrophysics, hydrogeology, and materials engineering, where understanding the flow of fluids through porous media is crucial. A $Bar$ is not an SI unit but is a unit of pressure that is widely used in various scientific and engineering contexts. A bar is equal to $100,000\ pascals\(Pa)$, approximately equal to the atmospheric pressure on Earth at sea level.
rdfs:label
square metre per second bar
View as:  CSV

Work in progress

RDF/XML
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    <j.1:description rdf:datatype="http://qudt.org/schema/qudt/LatexString">
  The unit $\textit{Square Metre per Second Bar}$ typically refers to a measure of fluid permeability in the
   context of materials science or engineering.
  It is the volume of fluid (in square metres) that can pass through a material in one second under a pressure difference of one bar. 
  This unit is particularly important in fields such as petrophysics, hydrogeology, and materials engineering,
   where understanding the flow of fluids through porous media is crucial.
  A $Bar$ is not an SI unit but is a unit of pressure that is widely used in various scientific and engineering contexts.
  A bar is equal to $100,000\ pascals\(Pa)$, approximately equal to the atmospheric pressure on Earth at sea level.
  </j.1:description>
    <j.0:ucumCode rdf:datatype="http://qudt.org/schema/qudt/UCUMcs">m2.s-1.bar-1</j.0:ucumCode>
    <j.0:iec61360Code>0112/2///62720#UAB493</j.0:iec61360Code>
    <rdfs:label>square metre per second bar</rdfs:label>
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    <j.0:symbol>m²/(s·bar)</j.0:symbol>
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    <j.0:conversionMultiplierSN rdf:datatype="http://www.w3.org/2001/XMLSchema#double">1.0E-5</j.0:conversionMultiplierSN>
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    <j.0:conversionMultiplier rdf:datatype="http://www.w3.org/2001/XMLSchema#decimal">0.00001</j.0:conversionMultiplier>
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TURTLE
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  rdf:type <http://qudt.org/schema/qudt/Unit> ;
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  The unit $\\textit{Square Metre per Second Bar}$ typically refers to a measure of fluid permeability in the
   context of materials science or engineering.
  It is the volume of fluid (in square metres) that can pass through a material in one second under a pressure difference of one bar. 
  This unit is particularly important in fields such as petrophysics, hydrogeology, and materials engineering,
   where understanding the flow of fluids through porous media is crucial.
  A $Bar$ is not an SI unit but is a unit of pressure that is widely used in various scientific and engineering contexts.
  A bar is equal to $100,000\\ pascals\\(Pa)$, approximately equal to the atmospheric pressure on Earth at sea level.
  """^^<http://qudt.org/schema/qudt/LatexString> ;
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  rdfs:isDefinedBy <http://qudt.org/2.1/vocab/unit> ;
  rdfs:label "square metre per second bar" ;
.
JSON
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    ,"type":"qudt:Unit" 
    ,"ucum code":"m2.s-1.bar-1" 
    ,"unece common code":"G41" 
    ]}
JSON-LD
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