Commit 885042018dca95de577ace951b1a49ed9a6ccfe3

Authored by Quentin Brzustowski
1 parent 5326cfe6

removed He3 from STEREO LET ++ added description for dynamic pressure

NumericalData/CDPP-AMDA/ACE/SWEPAM/ace-swe-all.xml
... ... @@ -11,7 +11,8 @@
11 11 Solar Wind Ion parameters from ACE/SWEPAM. Level 2 data, 64-second averages (from AC_H0_SWE dataset). Parameters include proton density,
12 12 temperature (radial component) and flow speed, flow velocity vector in GSE and GSM coordinates, and alpha
13 13 to proton density ratio.
14   - AMDA presents temperature in eV.
  14 + AMDA presents temperature in eV. The ram pressure is calculated using P=rho*Np*Vp², where rho=1.672622*(1+4*(1/(1-He++_ratio)-1)).
  15 + We use rho=2 here, which corresponds to a ratio of He++ between 4% and 5%.
15 16 </Description>
16 17 <Acknowledgement>
17 18 Please acknowledge the ACE/SWEPAM instrument team and the ACE Science Center
... ... @@ -220,7 +221,7 @@
220 221 </Particle>
221 222 </Parameter>
222 223 <Parameter>
223   - <Name>dynamic pressure</Name>
  224 + <Name>ram pressure</Name>
224 225 <ParameterKey>sw_pdyn</ParameterKey>
225 226 <Description>P = 2*10e-6 * Np * Vp^2</Description>
226 227 <Units>nPa</Units>
... ...
NumericalData/CDPP-AMDA/ACE/SWEPAM/ace-swepam-real.xml
... ... @@ -7,7 +7,10 @@
7 7 <ResourceName>sw : real time</ResourceName>
8 8 <AlternateName>Solar wind 60-sec real time data</AlternateName>
9 9 <ReleaseDate>2015-10-19T17:05:29Z</ReleaseDate>
10   - <Description/>
  10 + <Description>
  11 + The ram pressure is calculated using P=rho*Np*Vp², where rho=1.672622*(1+4*(1/(1-He++_ratio)-1)).
  12 + We use rho=2 here, which corresponds to a ratio of He++ between 4% and 5%.
  13 + </Description>
11 14 <Acknowledgement>Please acknowledge the ACE/SWEPAM instrument team and the ACE Science Center.
12 15 The following would be an appropriate acknowledgement: “We thank the ACE SWEPAM instrument team and the ACE Science Center for providing the ACE data.” We would appreciate preprints/reprints of your papers when they become available.
13 16 </Acknowledgement>
... ... @@ -99,7 +102,7 @@
99 102 </Particle>
100 103 </Parameter>
101 104 <Parameter>
102   - <Name>dynamic pressure</Name>
  105 + <Name>ram pressure</Name>
103 106 <ParameterKey>sw_pdyn_real</ParameterKey>
104 107 <Description>P = 2*10e-6 * Np * Vp^2</Description>
105 108 <Units>nPa</Units>
... ...
NumericalData/CDPP-AMDA/ACE/SWEPAM/ace-swp-all.xml
... ... @@ -11,7 +11,8 @@
11 11 Solar Wind Ion parameters from ACE/SWEPAM. Preliminary, 5-min averages.
12 12 Parameters include proton density, temperature (radial component) and flow speed,
13 13 flow velocity vector in GSE, GSM and RTN coordinates, and alpha to proton density ratio.
14   - AMDA presents temperature in eV.
  14 + AMDA presents temperature in eV. The ram pressure is calculated using P=rho*Np*Vp², where rho=1.672622*(1+4*(1/(1-He++_ratio)-1)).
  15 + We use rho=2 here, which corresponds to a ratio of He++ between 4% and 5%.
15 16 </Description>
16 17 <Acknowledgement>Please acknowledge the ACE/SWEPAM instrument team and the ACE Science Center.
17 18 The following would be an appropriate acknowledgement: “We thank the ACE SWEPAM instrument team and the ACE Science Center for providing the ACE data.” We would appreciate preprints/reprints of your papers when they become available.
... ... @@ -155,7 +156,7 @@
155 156 </Particle>
156 157 </Parameter>
157 158 <Parameter>
158   - <Name>dynamic pressure</Name>
  159 + <Name>ram pressure</Name>
159 160 <ParameterKey>swp_pdyn</ParameterKey>
160 161 <Description>P = 2*10e-6 * Np * Vp^2</Description>
161 162 <Units>nPa</Units>
... ...
NumericalData/CDPP-AMDA/DSCOVR/FC/dsc-fc-1m.xml
... ... @@ -7,7 +7,9 @@
7 7 <ResourceName>sw : 1 m</ResourceName>
8 8 <AlternateName>solar wind parameters</AlternateName>
9 9 <ReleaseDate>2017-10-16T15:10:29Z</ReleaseDate>
10   - <Description>Faraday Cup (FC) measures the solar wind bulk properties (wind speed, density and temperature)</Description>
  10 + <Description>Faraday Cup (FC) measures the solar wind bulk properties (wind speed, density and temperature).
  11 + The ram pressure is calculated using P=rho*Np*Vp², where rho=1.672622*(1+4*(1/(1-He++_ratio)-1)).
  12 + We use rho=2 here, which corresponds to a ratio of He++ between 4% and 5%.</Description>
11 13 <Acknowledgement>NOAA Space Weather Prediction Center (2016): Deep Space Climate Observatory (DSCOVR). NOAA National Centers for Environmental Information.</Acknowledgement>
12 14 <Contact>
13 15 <PersonID>spase://CNES/Person/Justin.Kasper</PersonID>
... ... @@ -344,7 +346,7 @@
344 346 </Particle>
345 347 </Parameter>-->
346 348 <Parameter>
347   - <Name>dynamic pressure</Name>
  349 + <Name>ram pressure</Name>
348 350 <ParameterKey>dsc_pdyn</ParameterKey>
349 351 <Description>P = 2*10e-6 * Np * Vp^2</Description>
350 352 <Units>nPa</Units>
... ...
NumericalData/CDPP-AMDA/DSCOVR/FC/dsc-fc-3s.xml
... ... @@ -7,7 +7,9 @@
7 7 <ResourceName>sw : 3 s</ResourceName>
8 8 <AlternateName>solar wind parameters</AlternateName>
9 9 <ReleaseDate>2017-10-16T15:10:29Z</ReleaseDate>
10   - <Description>Faraday Cup (FC) measures the solar wind bulk properties (wind speed, density and temperature)</Description>
  10 + <Description>Faraday Cup (FC) measures the solar wind bulk properties (wind speed, density and temperature).
  11 + The ram pressure is calculated using P=rho*Np*Vp², where rho=1.672622*(1+4*(1/(1-He++_ratio)-1)).
  12 + We use rho=2 here, which corresponds to a ratio of He++ between 4% and 5%.</Description>
11 13 <Acknowledgement>NOAA Space Weather Prediction Center (2016): Deep Space Climate Observatory (DSCOVR). NOAA National Centers for Environmental Information.</Acknowledgement>
12 14 <Contact>
13 15 <PersonID>spase://CNES/Person/Justin.Kasper</PersonID>
... ... @@ -344,7 +346,7 @@
344 346 </Particle>
345 347 </Parameter>-->
346 348 <Parameter>
347   - <Name>dynamic pressure</Name>
  349 + <Name>ram pressure</Name>
348 350 <ParameterKey>dsc_pdyn_3s</ParameterKey>
349 351 <Description>P = 2*10e-6 * Np * Vp^2</Description>
350 352 <Units>nPa</Units>
... ...
NumericalData/CDPP-AMDA/OMNI/omni-1min-all.xml
... ... @@ -9,7 +9,9 @@
9 9 <ReleaseDate>2015-10-15T14:34:00Z</ReleaseDate>
10 10 <Description>1 min averaged, multi-source, near-Earth solar wind magnetic
11 11 field, plasma and energetic proton flux data, plus AE, AU, AL, Kp, ap, and Dst
12   - geomagnetic indices, Polar Cap (Thule) index, F10.7 index, and Rz (sunspot number).
  12 + geomagnetic indices, Polar Cap (Thule) index, F10.7 index, and Rz (sunspot number).
  13 + The ram pressure is calculated using P=rho*Np*Vp², where rho=1.672622*(1+4*(1/(1-He++_ratio)-1)).
  14 + We use rho=2 here, which corresponds to a ratio of He++ between 4% and 5%.
13 15 </Description>
14 16 <Acknowledgement>We acknowledge the experiment teams that acquired, processed
15 17 and provided the OMNI-included data, and J.H. King and N.E. Papitashvili of NASA/GSFC
... ... @@ -190,8 +192,9 @@ for creating the OMNI data set.&lt;/Acknowledgement&gt;
190 192 </Particle>
191 193 </Parameter>
192 194 <Parameter>
193   - <Name>sw dynamic pressure</Name>
  195 + <Name>sw ram pressure</Name>
194 196 <ParameterKey>omni1_sw_pdyn</ParameterKey>
  197 + <Description>P=2*10e-6*Np*Vp^2</Description>
195 198 <Ucd>phys.pressure;phys.atmol.ionStage</Ucd>
196 199 <Units>nPa</Units>
197 200 <RenderingHints>
... ...
NumericalData/CDPP-AMDA/STEREO-A/LET/sta-let-10min.xml
... ... @@ -46,6 +46,7 @@
46 46 <Cadence>PT600S</Cadence>
47 47 </TemporalDescription>
48 48 <ObservedRegion>Heliosphere.Remote1AU</ObservedRegion>
  49 + <Caveats>http://www.srl.caltech.edu/STEREO/DATA/LET/Public/ReleaseNotes.txt</Caveats>
49 50 <Parameter>
50 51 <Name>Al flux</Name>
51 52 <ParameterKey>sta_let_10m_Alf</ParameterKey>
... ... @@ -245,39 +246,6 @@
245 246 </Support>
246 247 </Parameter>
247 248 <Parameter>
248   - <Name>He3 flux</Name>
249   - <ParameterKey>sta_let_10m_He3f</ParameterKey>
250   - <Units>1/(cm2-sr-sec-MeV/nuc)</Units>
251   - <RenderingHints>
252   - <DisplayType>Spectrogram</DisplayType>
253   - </RenderingHints>
254   - <Particle>
255   - <ParticleQuantity>NumberFlux</ParticleQuantity>
256   - </Particle>
257   - </Parameter>
258   - <Parameter>
259   - <Name>He3 counts</Name>
260   - <ParameterKey>sta_let_10m_He3cr</ParameterKey>
261   - <Units>counts/hour</Units>
262   - <RenderingHints>
263   - <DisplayType>Spectrogram</DisplayType>
264   - </RenderingHints>
265   - <Particle>
266   - <ParticleQuantity>CountRate</ParticleQuantity>
267   - </Particle>
268   - </Parameter>
269   - <Parameter>
270   - <Name>He3 uncertainty</Name>
271   - <ParameterKey>sta_let_10m_He3u</ParameterKey>
272   - <Units>1/(cm2-sr-sec-MeV/nuc)</Units>
273   - <RenderingHints>
274   - <DisplayType>Spectrogram</DisplayType>
275   - </RenderingHints>
276   - <Support>
277   - <SupportQuantity>DataQuality</SupportQuantity>
278   - </Support>
279   - </Parameter>
280   - <Parameter>
281 249 <Name>He4 flux</Name>
282 250 <ParameterKey>sta_let_10m_He4f</ParameterKey>
283 251 <Units>1/(cm2-sr-sec-MeV/nuc)</Units>
... ...
NumericalData/CDPP-AMDA/STEREO-A/LET/sta-let-1day.xml
... ... @@ -46,6 +46,7 @@
46 46 <Cadence>PT24H</Cadence>
47 47 </TemporalDescription>
48 48 <ObservedRegion>Heliosphere.Remote1AU</ObservedRegion>
  49 + <Caveats>http://www.srl.caltech.edu/STEREO/DATA/LET/Public/ReleaseNotes.txt</Caveats>
49 50 <Parameter>
50 51 <Name>Al flux</Name>
51 52 <ParameterKey>sta_let_1d_Alf</ParameterKey>
... ... @@ -245,39 +246,6 @@
245 246 </Support>
246 247 </Parameter>
247 248 <Parameter>
248   - <Name>He3 flux</Name>
249   - <ParameterKey>sta_let_1d_He3f</ParameterKey>
250   - <Units>1/(cm2-sr-sec-MeV/nuc)</Units>
251   - <RenderingHints>
252   - <DisplayType>Spectrogram</DisplayType>
253   - </RenderingHints>
254   - <Particle>
255   - <ParticleQuantity>NumberFlux</ParticleQuantity>
256   - </Particle>
257   - </Parameter>
258   - <Parameter>
259   - <Name>He3 counts</Name>
260   - <ParameterKey>sta_let_1d_He3cr</ParameterKey>
261   - <Units>counts/hour</Units>
262   - <RenderingHints>
263   - <DisplayType>Spectrogram</DisplayType>
264   - </RenderingHints>
265   - <Particle>
266   - <ParticleQuantity>CountRate</ParticleQuantity>
267   - </Particle>
268   - </Parameter>
269   - <Parameter>
270   - <Name>He3 uncertainty</Name>
271   - <ParameterKey>sta_let_1d_He3u</ParameterKey>
272   - <Units>1/(cm2-sr-sec-MeV/nuc)</Units>
273   - <RenderingHints>
274   - <DisplayType>Spectrogram</DisplayType>
275   - </RenderingHints>
276   - <Support>
277   - <SupportQuantity>DataQuality</SupportQuantity>
278   - </Support>
279   - </Parameter>
280   - <Parameter>
281 249 <Name>He4 flux</Name>
282 250 <ParameterKey>sta_let_1d_He4f</ParameterKey>
283 251 <Units>1/(cm2-sr-sec-MeV/nuc)</Units>
... ...
NumericalData/CDPP-AMDA/STEREO-A/LET/sta-let-1hour.xml
... ... @@ -46,6 +46,7 @@
46 46 <Cadence>PT1H</Cadence>
47 47 </TemporalDescription>
48 48 <ObservedRegion>Heliosphere.Remote1AU</ObservedRegion>
  49 + <Caveats>http://www.srl.caltech.edu/STEREO/DATA/LET/Public/ReleaseNotes.txt</Caveats>
49 50 <Parameter>
50 51 <Name>Al flux</Name>
51 52 <ParameterKey>sta_let_1h_Alf</ParameterKey>
... ... @@ -245,39 +246,6 @@
245 246 </Support>
246 247 </Parameter>
247 248 <Parameter>
248   - <Name>He3 flux</Name>
249   - <ParameterKey>sta_let_1h_He3f</ParameterKey>
250   - <Units>1/(cm2-sr-sec-MeV/nuc)</Units>
251   - <RenderingHints>
252   - <DisplayType>Spectrogram</DisplayType>
253   - </RenderingHints>
254   - <Particle>
255   - <ParticleQuantity>NumberFlux</ParticleQuantity>
256   - </Particle>
257   - </Parameter>
258   - <Parameter>
259   - <Name>He3 counts</Name>
260   - <ParameterKey>sta_let_1h_He3cr</ParameterKey>
261   - <Units>counts/hour</Units>
262   - <RenderingHints>
263   - <DisplayType>Spectrogram</DisplayType>
264   - </RenderingHints>
265   - <Particle>
266   - <ParticleQuantity>CountRate</ParticleQuantity>
267   - </Particle>
268   - </Parameter>
269   - <Parameter>
270   - <Name>He3 uncertainty</Name>
271   - <ParameterKey>sta_let_1h_He3u</ParameterKey>
272   - <Units>1/(cm2-sr-sec-MeV/nuc)</Units>
273   - <RenderingHints>
274   - <DisplayType>Spectrogram</DisplayType>
275   - </RenderingHints>
276   - <Support>
277   - <SupportQuantity>DataQuality</SupportQuantity>
278   - </Support>
279   - </Parameter>
280   - <Parameter>
281 249 <Name>He4 flux</Name>
282 250 <ParameterKey>sta_let_1h_He4f</ParameterKey>
283 251 <Units>1/(cm2-sr-sec-MeV/nuc)</Units>
... ...
NumericalData/CDPP-AMDA/STEREO-B/LET/stb-let-10min.xml
... ... @@ -47,6 +47,7 @@
47 47 <Cadence>PT600S</Cadence>
48 48 </TemporalDescription>
49 49 <ObservedRegion>Heliosphere.Remote1AU</ObservedRegion>
  50 + <Caveats>http://www.srl.caltech.edu/STEREO/DATA/LET/Public/ReleaseNotes.txt</Caveats>
50 51 <Parameter>
51 52 <Name>Al flux</Name>
52 53 <ParameterKey>stb_let_10m_Alf</ParameterKey>
... ... @@ -246,39 +247,6 @@
246 247 </Support>
247 248 </Parameter>
248 249 <Parameter>
249   - <Name>He3 flux</Name>
250   - <ParameterKey>stb_let_10m_He3f</ParameterKey>
251   - <Units>1/(cm2-sr-sec-MeV/nuc)</Units>
252   - <RenderingHints>
253   - <DisplayType>Spectrogram</DisplayType>
254   - </RenderingHints>
255   - <Particle>
256   - <ParticleQuantity>NumberFlux</ParticleQuantity>
257   - </Particle>
258   - </Parameter>
259   - <Parameter>
260   - <Name>He3 counts</Name>
261   - <ParameterKey>stb_let_10m_He3cr</ParameterKey>
262   - <Units>counts/hour</Units>
263   - <RenderingHints>
264   - <DisplayType>Spectrogram</DisplayType>
265   - </RenderingHints>
266   - <Particle>
267   - <ParticleQuantity>CountRate</ParticleQuantity>
268   - </Particle>
269   - </Parameter>
270   - <Parameter>
271   - <Name>He3 uncertainty</Name>
272   - <ParameterKey>stb_let_10m_He3u</ParameterKey>
273   - <Units>1/(cm2-sr-sec-MeV/nuc)</Units>
274   - <RenderingHints>
275   - <DisplayType>Spectrogram</DisplayType>
276   - </RenderingHints>
277   - <Support>
278   - <SupportQuantity>DataQuality</SupportQuantity>
279   - </Support>
280   - </Parameter>
281   - <Parameter>
282 250 <Name>He4 flux</Name>
283 251 <ParameterKey>stb_let_10m_He4f</ParameterKey>
284 252 <Units>1/(cm2-sr-sec-MeV/nuc)</Units>
... ...
NumericalData/CDPP-AMDA/STEREO-B/LET/stb-let-1day.xml
... ... @@ -47,6 +47,7 @@
47 47 <Cadence>PT24H</Cadence>
48 48 </TemporalDescription>
49 49 <ObservedRegion>Heliosphere.Remote1AU</ObservedRegion>
  50 + <Caveats>http://www.srl.caltech.edu/STEREO/DATA/LET/Public/ReleaseNotes.txt</Caveats>
50 51 <Parameter>
51 52 <Name>Al flux</Name>
52 53 <ParameterKey>stb_let_1d_Alf</ParameterKey>
... ... @@ -246,39 +247,6 @@
246 247 </Support>
247 248 </Parameter>
248 249 <Parameter>
249   - <Name>He3 flux</Name>
250   - <ParameterKey>stb_let_1d_He3f</ParameterKey>
251   - <Units>1/(cm2-sr-sec-MeV/nuc)</Units>
252   - <RenderingHints>
253   - <DisplayType>Spectrogram</DisplayType>
254   - </RenderingHints>
255   - <Particle>
256   - <ParticleQuantity>NumberFlux</ParticleQuantity>
257   - </Particle>
258   - </Parameter>
259   - <Parameter>
260   - <Name>He3 counts</Name>
261   - <ParameterKey>stb_let_1d_He3cr</ParameterKey>
262   - <Units>counts/hour</Units>
263   - <RenderingHints>
264   - <DisplayType>Spectrogram</DisplayType>
265   - </RenderingHints>
266   - <Particle>
267   - <ParticleQuantity>CountRate</ParticleQuantity>
268   - </Particle>
269   - </Parameter>
270   - <Parameter>
271   - <Name>He3 uncertainty</Name>
272   - <ParameterKey>stb_let_1d_He3u</ParameterKey>
273   - <Units>1/(cm2-sr-sec-MeV/nuc)</Units>
274   - <RenderingHints>
275   - <DisplayType>Spectrogram</DisplayType>
276   - </RenderingHints>
277   - <Support>
278   - <SupportQuantity>DataQuality</SupportQuantity>
279   - </Support>
280   - </Parameter>
281   - <Parameter>
282 250 <Name>He4 flux</Name>
283 251 <ParameterKey>stb_let_1d_He4f</ParameterKey>
284 252 <Units>1/(cm2-sr-sec-MeV/nuc)</Units>
... ...
NumericalData/CDPP-AMDA/STEREO-B/LET/stb-let-1hour.xml
... ... @@ -47,6 +47,7 @@
47 47 <Cadence>PT1H</Cadence>
48 48 </TemporalDescription>
49 49 <ObservedRegion>Heliosphere.Remote1AU</ObservedRegion>
  50 + <Caveats>http://www.srl.caltech.edu/STEREO/DATA/LET/Public/ReleaseNotes.txt</Caveats>
50 51 <Parameter>
51 52 <Name>Al flux</Name>
52 53 <ParameterKey>stb_let_1h_Alf</ParameterKey>
... ... @@ -246,39 +247,6 @@
246 247 </Support>
247 248 </Parameter>
248 249 <Parameter>
249   - <Name>He3 flux</Name>
250   - <ParameterKey>stb_let_1h_He3f</ParameterKey>
251   - <Units>1/(cm2-sr-sec-MeV/nuc)</Units>
252   - <RenderingHints>
253   - <DisplayType>Spectrogram</DisplayType>
254   - </RenderingHints>
255   - <Particle>
256   - <ParticleQuantity>NumberFlux</ParticleQuantity>
257   - </Particle>
258   - </Parameter>
259   - <Parameter>
260   - <Name>He3 counts</Name>
261   - <ParameterKey>stb_let_1h_He3cr</ParameterKey>
262   - <Units>counts/hour</Units>
263   - <RenderingHints>
264   - <DisplayType>Spectrogram</DisplayType>
265   - </RenderingHints>
266   - <Particle>
267   - <ParticleQuantity>CountRate</ParticleQuantity>
268   - </Particle>
269   - </Parameter>
270   - <Parameter>
271   - <Name>He3 uncertainty</Name>
272   - <ParameterKey>stb_let_1h_He3u</ParameterKey>
273   - <Units>1/(cm2-sr-sec-MeV/nuc)</Units>
274   - <RenderingHints>
275   - <DisplayType>Spectrogram</DisplayType>
276   - </RenderingHints>
277   - <Support>
278   - <SupportQuantity>DataQuality</SupportQuantity>
279   - </Support>
280   - </Parameter>
281   - <Parameter>
282 250 <Name>He4 flux</Name>
283 251 <ParameterKey>stb_let_1h_He4f</ParameterKey>
284 252 <Units>1/(cm2-sr-sec-MeV/nuc)</Units>
... ...