<?xml version="1.0" encoding="UTF-8" standalone="yes"?>
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	xsi:schemaLocation="http://www.spase-group.org/data/schema http://www.spase-group.org/data/schema/spase-2_2_2.xsd">
  <Version>2.3.1</Version>
  <NumericalData>
    <ResourceID>spase://NASA/NumericalData/UCLA/Global-MHD-code/PT10S</ResourceID>
    <ResourceHeader>
      <ResourceName>Characteristics of Reconnection Sites and Fast Flow Channels in an MHD Simulation: Simulation Results</ResourceName>
      <DOI>https://doi.org/10.21978/P8RW5G</DOI>
      <ReleaseDate>2020-08-31T00:00:00Z</ReleaseDate>
      <RevisionHistory>
         <RevisionEvent>
            <ReleaseDate>2020-08-31T00:00:00Z</ReleaseDate>
            <Note>
               Initial Release
            </Note>
          </RevisionEvent>
      </RevisionHistory>
      <Description>The simulation outputs are asci files containing out from the MHD simulation mapped to the minimum magnetic field surface in the magnetotail during the March 14,2008 substorms. There is one time in each file and 2161 files each separated by 10s. The results span 6 hours from 0200 to 0800. The results are in GSM coordinates.  
	  </Description>
      <Acknowledgement>Mostafa El-Alaoui, Raymond J. Walker; Robert L. McPherron</Acknowledgement>
	  <PublicationInfo>
		<Authors>R.L. McPherron, M. El-Alaoui, R.J. Walker, and R.L. Richard</Authors>
		<PublicationDate>2020-08-31T00:00:00Z</PublicationDate>
		<PublishedBy>Journal of Geohysical Research - Space Physics</PublishedBy>
	  </PublicationInfo>
	  <Funding>
		<Agency>NASA</Agency>
		<Project>Substorm current wedge development and evolution using THEMIS observation and simulations</Project>
		<AwardNumber>NNX17AB83G</AwardNumber>
	  </Funding>
      <Funding>
		<Agency>NASA</Agency>
		<Project>Structure and evolution of plasma sheet fast flows using THEMIS observation and global MHD simulations</Project>
		<AwardNumber>NNX15AI63G</AwardNumber>
	  </Funding>
      <Funding>
		<Agency>NSF</Agency>
		<Project>GEM: A Statistical Study of the Substorm Sequence and Phenomena Associated with Expansion Onset</Project>
		<AwardNumber>1602588</AwardNumber>
	  </Funding>
	  <Contact>
        <PersonID>spase://SMWG/Person/Mostafa.El-Alaoui</PersonID>
        <Role>PrincipalInvestigator</Role>
      </Contact>
      <Contact>
        <PersonID>spase://SMWG/Person/Robert.L.McPherron</PersonID>
        <Role>GeneralContact</Role>
      </Contact>  
	  <Contact>
        <PersonID>spase://SMWG/Person/James.M.Weygand</PersonID>
        <Role>MetadataContact</Role>
      </Contact>  
      <InformationURL>
        <Name>Journal of Geophysical Research: Characteristics of Reconnection Sites and Fast Flow Channels in an MHD Simulation</Name>
        <URL>https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2019JA027701</URL>
        <Description>Research article associated with these MHD results.</Description>
      </InformationURL>
    </ResourceHeader>  
	
    <AccessInformation>
         <RepositoryID>spase://SMWG/Repository/UCLA</RepositoryID>
         <Availability>Online</Availability>
         <AccessRights>Open</AccessRights>
         <AccessURL>
            <Name>UCLA Data Repositoryfor These MHD model results</Name>
            <URL>http://vmo.igpp.ucla.edu/data1/McPherron/</URL>
            <Description>This site contains the supplementary material for two studies.</Description>
         </AccessURL>
         <Format>Text.ASCII</Format>
         <Acknowledgement>Space Plasma Simulations Group</Acknowledgement>
    </AccessInformation>  	    
	
    <ProcessingLevel>Raw</ProcessingLevel>
	<ProviderName>Space Plasma Simulations Group</ProviderName>
	<ProviderResourceName>Space Plasma Simulations Group Global MHD code</ProviderResourceName>
	<ProviderProcessingLevel>Raw</ProviderProcessingLevel>
    <InstrumentID>spase://SMWG/Instrument/UCLA/Global-MHD-code</InstrumentID>   
    <MeasurementType>MagneticField</MeasurementType>
    <MeasurementType>Ephemeris</MeasurementType>
    <MeasurementType>ElectricField</MeasurementType>
	<MeasurementType>EnergeticParticles</MeasurementType>
    <TemporalDescription>
      <TimeSpan>
        <StartDate>2008-03-14T02:00:00</StartDate>
		<StopDate>2008-03-14T08:00:00</StopDate>
      </TimeSpan>
      <Cadence>PT10S</Cadence>
    </TemporalDescription>
	<ObservedRegion>Earth.Magnetosphere</ObservedRegion>
    <Keyword>UCLA Global MHD code</Keyword>
	<Parameter>
      <Name>X GSM location</Name>
	  <ParameterKey>Column 1</ParameterKey>
	  <Description>X axis location in GSM coordinates.</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>Re</Units>
	  <CoordinateSystem>
	    <CoordinateRepresentation>Cartesian</CoordinateRepresentation>
		<CoordinateSystemName>GSM</CoordinateSystemName>
	  </CoordinateSystem>
	  <Support>
	    <Qualifier>Component.I</Qualifier>
		<SupportQuantity>Positional</SupportQuantity>
	  </Support>
	</Parameter>
	<Parameter>
      <Name>Y GSM location</Name>
	  <ParameterKey>Column 2</ParameterKey>
	  <Description>Y axis location in GSM coordinates.</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>Re</Units>
	  <CoordinateSystem>
	    <CoordinateRepresentation>Cartesian</CoordinateRepresentation>
		<CoordinateSystemName>GSM</CoordinateSystemName>
	  </CoordinateSystem>
	  <Support>
	    <Qualifier>Component.J</Qualifier>
		<SupportQuantity>Positional</SupportQuantity>
	  </Support>
	</Parameter>
	<Parameter>
      <Name>Z GSM location</Name>
	  <ParameterKey>Column 3</ParameterKey>
	  <Description>Z axis location in GSM coordinates.</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>Re</Units>
	  <CoordinateSystem>
	    <CoordinateRepresentation>Cartesian</CoordinateRepresentation>
		<CoordinateSystemName>GSM</CoordinateSystemName>
	  </CoordinateSystem>
	  <Support>
	    <Qualifier>Component.K</Qualifier>
		<SupportQuantity>Positional</SupportQuantity>
	  </Support>
	</Parameter>
	<Parameter>
      <Name>Bx GSM</Name>
	  <ParameterKey>Column 4</ParameterKey>
	  <Description>Magnetic field Bx component in GSM coordinates.</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>nT</Units>
	  <CoordinateSystem>
	    <CoordinateRepresentation>Cartesian</CoordinateRepresentation>
		<CoordinateSystemName>GSM</CoordinateSystemName>
	  </CoordinateSystem>
	  <Field>
	    <Qualifier>Component.I</Qualifier>
		<FieldQuantity>Magnetic</FieldQuantity>
	  </Field>
	</Parameter>
	<Parameter>
      <Name>By GSM</Name>
	  <ParameterKey>Column 5</ParameterKey>
	  <Description>Magnetic field By component in GSM coordinates.</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>nT</Units>
	  <CoordinateSystem>
	    <CoordinateRepresentation>Cartesian</CoordinateRepresentation>
		<CoordinateSystemName>GSM</CoordinateSystemName>
	  </CoordinateSystem>
	  <Field>
	    <Qualifier>Component.J</Qualifier>
		<FieldQuantity>Magnetic</FieldQuantity>
	  </Field>
	</Parameter>
	<Parameter>
      <Name>Bz GSM</Name>
	  <ParameterKey>Column 6</ParameterKey>
	  <Description>Magnetic field Bz component in GSM coordinates.</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>nT</Units>
	  <CoordinateSystem>
	    <CoordinateRepresentation>Cartesian</CoordinateRepresentation>
		<CoordinateSystemName>GSM</CoordinateSystemName>
	  </CoordinateSystem>
	  <Field>
	    <Qualifier>Component.K</Qualifier>
		<FieldQuantity>Magnetic</FieldQuantity>
	  </Field>
	</Parameter>
	
	<Parameter>
      <Name>Vx GSM</Name>
	  <ParameterKey>Column 7</ParameterKey>
	  <Description>Plasma velocity Vx component in GSM coordinates.</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>km/s</Units>
	  <CoordinateSystem>
	    <CoordinateRepresentation>Cartesian</CoordinateRepresentation>
		<CoordinateSystemName>GSM</CoordinateSystemName>
	  </CoordinateSystem>
	  <Particle>
	  <ParticleType>Proton</ParticleType>
	    <Qualifier>Component.I</Qualifier>
		<ParticleQuantity>Velocity</ParticleQuantity>
	  </Particle>
	</Parameter>
	<Parameter>
      <Name>Vy GSM</Name>
	  <ParameterKey>Column 8</ParameterKey>
	  <Description>Plasma velocity Vy component in GSM coordinates.</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>km/s</Units>
	  <CoordinateSystem>
	    <CoordinateRepresentation>Cartesian</CoordinateRepresentation>
		<CoordinateSystemName>GSM</CoordinateSystemName>
	  </CoordinateSystem>
	  <Particle>
	  <ParticleType>Proton</ParticleType>
	    <Qualifier>Component.J</Qualifier>
		<ParticleQuantity>Velocity</ParticleQuantity>
	  </Particle>
	</Parameter>
	<Parameter>
      <Name>Vz GSM</Name>
	  <ParameterKey>Column 9</ParameterKey>
	  <Description>Plasma velocity Vz component in GSM coordinates.</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>km/s</Units>
	  <CoordinateSystem>
	    <CoordinateRepresentation>Cartesian</CoordinateRepresentation>
		<CoordinateSystemName>GSM</CoordinateSystemName>
	  </CoordinateSystem>
	  <Particle>
	  <ParticleType>Proton</ParticleType>
	    <Qualifier>Component.K</Qualifier>
		<ParticleQuantity>Velocity</ParticleQuantity>
	  </Particle>
	</Parameter>
	<Parameter>
      <Name>Number Density</Name>
	  <ParameterKey>Column 10</ParameterKey>
	  <Description>Plasma density.</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>number/cm^3</Units>
	  <Particle>
	  <ParticleType>Proton</ParticleType>
	    <Qualifier>Magnitude</Qualifier>
		<ParticleQuantity>NumberDensity</ParticleQuantity>
	  </Particle>
	</Parameter>
	<Parameter>
      <Name>Plasma Pressure</Name>
	  <ParameterKey>Column 11</ParameterKey>
	  <Description>Plasma pressure.</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>nPa</Units>
	  <Particle>
	  <ParticleType>Proton</ParticleType>
	    <Qualifier>Magnitude</Qualifier>
		<ParticleQuantity>Pressure</ParticleQuantity>
	  </Particle>
	</Parameter>
	
	<Parameter>
      <Name>Current Density in the X GSM direction</Name>
	  <ParameterKey>Column 12</ParameterKey>
	  <Description>Current Density Jx component in GSM coordinates.</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>nA/m^2</Units>
	  <CoordinateSystem>
	    <CoordinateRepresentation>Cartesian</CoordinateRepresentation>
		<CoordinateSystemName>GSM</CoordinateSystemName>
	  </CoordinateSystem>
	  <Support>
	    <Qualifier>Component.I</Qualifier>
		<SupportQuantity>Other</SupportQuantity>
	  </Support>
	</Parameter>
	<Parameter>
      <Name>Current Density in the Y GSM direction</Name>
	  <ParameterKey>Column 13</ParameterKey>
	  <Description>Current Density Jy component in GSM coordinates.</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>nA/m^2</Units>
	  <CoordinateSystem>
	    <CoordinateRepresentation>Cartesian</CoordinateRepresentation>
		<CoordinateSystemName>GSM</CoordinateSystemName>
	  </CoordinateSystem>
	  <Support>
	    <Qualifier>Component.J</Qualifier>
		<SupportQuantity>Other</SupportQuantity>
	  </Support>
	</Parameter>
	<Parameter>
      <Name>Current Density in the Z GSM direction</Name>
	  <ParameterKey>Column 14</ParameterKey>
	  <Description>Current Density Jz component in GSM coordinates.</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>nA/m^2</Units>
	  <CoordinateSystem>
	    <CoordinateRepresentation>Cartesian</CoordinateRepresentation>
		<CoordinateSystemName>GSM</CoordinateSystemName>
	  </CoordinateSystem>
	  <Support>
	    <Qualifier>Component.K</Qualifier>
		<SupportQuantity>Other</SupportQuantity>
	  </Support>
	</Parameter>
	
	<Parameter>
      <Name>Ex GSM</Name>
	  <ParameterKey>Column 15</ParameterKey>
	  <Description>Electric field Ex component in GSM coordinates.</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>mV/m</Units>
	  <CoordinateSystem>
	    <CoordinateRepresentation>Cartesian</CoordinateRepresentation>
		<CoordinateSystemName>GSM</CoordinateSystemName>
	  </CoordinateSystem>
	  <Field>
	    <Qualifier>Component.I</Qualifier>
		<FieldQuantity>Electric</FieldQuantity>
	  </Field>
	</Parameter>
	<Parameter>
      <Name>Ey GSM</Name>
	  <ParameterKey>Column 16</ParameterKey>
	  <Description>Electric field Ey component in GSM coordinates.</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>mV/m</Units>
	  <CoordinateSystem>
	    <CoordinateRepresentation>Cartesian</CoordinateRepresentation>
		<CoordinateSystemName>GSM</CoordinateSystemName>
	  </CoordinateSystem>
	  <Field>
	    <Qualifier>Component.J</Qualifier>
		<FieldQuantity>Electric</FieldQuantity>
	  </Field>
	</Parameter>
	<Parameter>
      <Name>Ez GSM</Name>
	  <ParameterKey>Column 17</ParameterKey>
	  <Description>Electric field Ez component in GSM coordinates.</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>mV/m</Units>
	  <CoordinateSystem>
	    <CoordinateRepresentation>Cartesian</CoordinateRepresentation>
		<CoordinateSystemName>GSM</CoordinateSystemName>
	  </CoordinateSystem>
	  <Field>
	    <Qualifier>Component.K</Qualifier>
		<FieldQuantity>Electric</FieldQuantity>
	  </Field>
	</Parameter>
	
	<Parameter>
      <Name>Volume</Name>
	  <ParameterKey>Column 18</ParameterKey>
	  <Description>Volume. Not clear what this is the volume of.</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>unitless</Units>
	  <Support>
	    <Qualifier>Magnitude</Qualifier>
		<SupportQuantity>Other</SupportQuantity>
	  </Support>
	</Parameter>
	<Parameter>
      <Name>Flux tube Volume</Name>
	  <ParameterKey>Column 19</ParameterKey>
	  <Description>Flux tube Volume.</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>unitless</Units>
	  <Support>
	    <Qualifier>Magnitude</Qualifier>
		<SupportQuantity>Other</SupportQuantity>
	  </Support>
	</Parameter>
	<Parameter>
      <Name>OPCL</Name>
	  <ParameterKey>Column 20</ParameterKey>
	  <Description>Open field line/close field line flag. OPCL (0 for closed field lines, 1 for open field lines, and 2 for IMF field lines)</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>unitless</Units>
	  <Support>
	    <Qualifier>Scalar</Qualifier>
		<SupportQuantity>Other</SupportQuantity>
	  </Support>
	</Parameter>
	<Parameter>
      <Name>Field present (not used)</Name>
	  <ParameterKey>Column 21</ParameterKey>
	  <Description>Not used.</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>unitless</Units>
	  <Support>
	    <Qualifier>Scalar</Qualifier>
		<SupportQuantity>Other</SupportQuantity>
	  </Support>
	</Parameter>
	
	<Parameter>
      <Name>Extend in x (not used)</Name>
	  <ParameterKey>Column 22</ParameterKey>
	  <Description>Not used.</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>unitless</Units>
	  <Support>
	    <Qualifier>Scalar</Qualifier>
		<SupportQuantity>Other</SupportQuantity>
	  </Support>
	</Parameter>
	
	<Parameter>
      <Name>Extend in y (not used)</Name>
	  <ParameterKey>Column 23</ParameterKey>
	  <Description>Not used.</Description>
	  <Cadence>PT10S</Cadence>
	  <Units>unitless</Units>
	  <Support>
	    <Qualifier>Scalar</Qualifier>
		<SupportQuantity>Other</SupportQuantity>
	  </Support>
	</Parameter>
      
  </NumericalData>
</Spase>
