Atmospheric parameter retrieval from UV-vis-NIR limb scattering measurements
The hyperspectral UV-vis-NIR spectrometer SCIAMACHY will be launched aboard the European satellite Envisat. Its limb measurements will provide vertically resolved profiles of trace gases and other atmospheric parameters. No retrieval algorithms and radiative transfer models have been established for...
Ausführliche Beschreibung
Autor*in: | |
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Hochschulschrift: |
Bremen, Univ., Diss, 2001 |
Format: |
E-Book |
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Sprache: |
Englisch |
Erschienen: |
2001 |
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Ausgabe: |
[Elektronische Ressource] |
Schlagwörter: |
Atmosphäre / Spurengas / Satellitenfernerkundung / Strahlungstransport / NIR-Spektroskopie / UV-VIS-Spektroskopie |
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Formangabe: |
Hochschulschrift |
Umfang: |
Online-Ressource (247 S.) |
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Links: |
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Katalog-ID: |
358553369 |
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520 | |a The hyperspectral UV-vis-NIR spectrometer SCIAMACHY will be launched aboard the European satellite Envisat. Its limb measurements will provide vertically resolved profiles of trace gases and other atmospheric parameters. No retrieval algorithms and radiative transfer models have been established for these measurements yet.In this thesis, a unique, fast radiative transfer model for UV-vis-NIR limb radiances has been developed, implemented, and validated. It takes into account the sphericity of the atmosphere and up to two orders of scattering and surface reflection. The weighting functions for all parameters are calculated from analytical formulae. A realistic instrument model with field-of-view integration and signal-to-noise computation and retrieval algorithms have also been implemented. All have been combined in the new program package SCIARAYS. The package has been applied for the characterisation of the limb measurements in several ways:The simulated weighting functions agree well with those due to full multiple scattering. Thus they may be used to calculate theoretical precision estimates and averaging kernels. In conformance with this, test retrievals with approximate weighting functions converge correctly. Therefore, the approximate weighting functions of SCIARAYS are well suited for retrievals from SCIAMACHYś limb measurements.Detailed theoretical retrieval precisions have been calculated for SCIAMACHYś trace gas targets. The conclusion is that a UV-vis-NIR limb sensor like SCIAMACHY is well suited for studying the vertical structure of the stratosphere and also of the upper troposphere above cloud top.Further investigations show that the vertical resolution of retrievals from SCIAMACHYś limb measurements can be improved beyond its geometrical limits. As a trade-off for better vertical resolution, the retrieval precision gets worse. Thus O3 profile features with 1km vertical extent will be detectable with a precision of 20-30%. | ||
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2001 |
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03,H01,0964 dnb 963158473 DE-101 (DE-627)358553369 (DE-599)DNB963158473 (OCoLC)175066614 DE-627 ger DE-627 rakwb eng XA-DE 31 44 sdnb Atmospheric parameter retrieval from UV-vis-NIR limb scattering measurements by Johannes W. Kaiser [Elektronische Ressource] 2001 Online-Ressource (247 S.) Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Bremen, Univ., Diss, 2001 The hyperspectral UV-vis-NIR spectrometer SCIAMACHY will be launched aboard the European satellite Envisat. Its limb measurements will provide vertically resolved profiles of trace gases and other atmospheric parameters. No retrieval algorithms and radiative transfer models have been established for these measurements yet.In this thesis, a unique, fast radiative transfer model for UV-vis-NIR limb radiances has been developed, implemented, and validated. It takes into account the sphericity of the atmosphere and up to two orders of scattering and surface reflection. The weighting functions for all parameters are calculated from analytical formulae. A realistic instrument model with field-of-view integration and signal-to-noise computation and retrieval algorithms have also been implemented. All have been combined in the new program package SCIARAYS. The package has been applied for the characterisation of the limb measurements in several ways:The simulated weighting functions agree well with those due to full multiple scattering. Thus they may be used to calculate theoretical precision estimates and averaging kernels. In conformance with this, test retrievals with approximate weighting functions converge correctly. Therefore, the approximate weighting functions of SCIARAYS are well suited for retrievals from SCIAMACHYś limb measurements.Detailed theoretical retrieval precisions have been calculated for SCIAMACHYś trace gas targets. The conclusion is that a UV-vis-NIR limb sensor like SCIAMACHY is well suited for studying the vertical structure of the stratosphere and also of the upper troposphere above cloud top.Further investigations show that the vertical resolution of retrievals from SCIAMACHYś limb measurements can be improved beyond its geometrical limits. As a trade-off for better vertical resolution, the retrieval precision gets worse. Thus O3 profile features with 1km vertical extent will be detectable with a precision of 20-30%. Hochschulschrift (DE-588)4113937-9 (DE-627)105825778 (DE-576)209480580 gnd-content s (DE-588)4003397-1 (DE-627)10638967X (DE-576)208851461 Atmosphäre gnd s (DE-588)4182608-5 (DE-627)104167939 (DE-576)210012803 Spurengas gnd s (DE-588)4224344-0 (DE-627)104278323 (DE-576)210297255 Satellitenfernerkundung gnd s (DE-588)4183546-3 (DE-627)105301914 (DE-576)210019409 Strahlungstransport gnd s (DE-588)4298282-0 (DE-627)104134194 (DE-576)211008613 NIR-Spektroskopie gnd s (DE-588)4117315-6 (DE-627)104529180 (DE-576)209508892 UV-VIS-Spektroskopie gnd DE-101 Kaiser, Johannes W oth Bremen uvp http://webdoc.sub.gwdg.de/ebook/diss/2003/sub-bremen/dissertations/E-Diss195_kaiser.pdf Verlag Volltext http://elib.suub.uni-bremen.de/publications/dissertations/E-Diss195ḵaiser.pdf Verlag Volltext http://d-nb.info/963158473 Verlag Volltext GBV_ILN_20 ISIL_DE-84 SYSFLAG_1 GBV_KXP SSG-OPC-GEO SSG-OPC-GGO GBV_ILN_22 ISIL_DE-18 GBV_ILN_30 ISIL_DE-104 GBV_ILN_40 ISIL_DE-7 GBV_ILN_60 ISIL_DE-705 GBV_ILN_110 ISIL_DE-Luen4 GBV_ILN_370 ISIL_DE-1373 BO 20 01 0084 653213328 x 22-06-04 22 01 0018 586727418 SUBolrd xu 21-01-03 30 01 0104 71976582X z 14-05-05 40 01 0007 586727426 xsn 21-01-03 60 01 0705 586727434 z 21-01-03 110 01 3110 719765838 xz 14-05-05 370 01 4370 822427583 x 08-06-07 20 01 0084 http://d-nb.info/963158473 22 01 0018 http://deposit.ddb.de/cgi-bin/dokserv?idn=963158473 30 01 0104 http://deposit.ddb.de/cgi-bin/dokserv?idn=963158473 40 01 0007 http://webdoc.sub.gwdg.de/ebook/diss/2003/sub-bremen/dissertations/E-Diss195_kaiser.pdf 60 01 0705 http://d-nb.info/963158473 110 01 3110 http://d-nb.info/963158473 370 01 4370 http://deposit.ddb.de/cgi-bin/dokserv?idn=963158473 40 00 DE-7 00 (DE-627)62360731X TUA 850 Satellitenmeteorologie 40 00 DE-7 01 (DE-627)623605406 TQI 000 Satelliten-Geophysik 40 00 DE-7 02 (DE-627)623607549 TVA 210 Chemische Zusammensetzung der Atmosphäre {Meteorologie} 60 01 0705 10 ho 30 01 0104 OLRD 60 01 0705 OLRD 110 01 3110 OLRD 370 01 4370 OLRD 22 01 0018 SUBolrd |
spelling |
03,H01,0964 dnb 963158473 DE-101 (DE-627)358553369 (DE-599)DNB963158473 (OCoLC)175066614 DE-627 ger DE-627 rakwb eng XA-DE 31 44 sdnb Atmospheric parameter retrieval from UV-vis-NIR limb scattering measurements by Johannes W. Kaiser [Elektronische Ressource] 2001 Online-Ressource (247 S.) Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Bremen, Univ., Diss, 2001 The hyperspectral UV-vis-NIR spectrometer SCIAMACHY will be launched aboard the European satellite Envisat. Its limb measurements will provide vertically resolved profiles of trace gases and other atmospheric parameters. No retrieval algorithms and radiative transfer models have been established for these measurements yet.In this thesis, a unique, fast radiative transfer model for UV-vis-NIR limb radiances has been developed, implemented, and validated. It takes into account the sphericity of the atmosphere and up to two orders of scattering and surface reflection. The weighting functions for all parameters are calculated from analytical formulae. A realistic instrument model with field-of-view integration and signal-to-noise computation and retrieval algorithms have also been implemented. All have been combined in the new program package SCIARAYS. The package has been applied for the characterisation of the limb measurements in several ways:The simulated weighting functions agree well with those due to full multiple scattering. Thus they may be used to calculate theoretical precision estimates and averaging kernels. In conformance with this, test retrievals with approximate weighting functions converge correctly. Therefore, the approximate weighting functions of SCIARAYS are well suited for retrievals from SCIAMACHYś limb measurements.Detailed theoretical retrieval precisions have been calculated for SCIAMACHYś trace gas targets. The conclusion is that a UV-vis-NIR limb sensor like SCIAMACHY is well suited for studying the vertical structure of the stratosphere and also of the upper troposphere above cloud top.Further investigations show that the vertical resolution of retrievals from SCIAMACHYś limb measurements can be improved beyond its geometrical limits. As a trade-off for better vertical resolution, the retrieval precision gets worse. Thus O3 profile features with 1km vertical extent will be detectable with a precision of 20-30%. Hochschulschrift (DE-588)4113937-9 (DE-627)105825778 (DE-576)209480580 gnd-content s (DE-588)4003397-1 (DE-627)10638967X (DE-576)208851461 Atmosphäre gnd s (DE-588)4182608-5 (DE-627)104167939 (DE-576)210012803 Spurengas gnd s (DE-588)4224344-0 (DE-627)104278323 (DE-576)210297255 Satellitenfernerkundung gnd s (DE-588)4183546-3 (DE-627)105301914 (DE-576)210019409 Strahlungstransport gnd s (DE-588)4298282-0 (DE-627)104134194 (DE-576)211008613 NIR-Spektroskopie gnd s (DE-588)4117315-6 (DE-627)104529180 (DE-576)209508892 UV-VIS-Spektroskopie gnd DE-101 Kaiser, Johannes W oth Bremen uvp http://webdoc.sub.gwdg.de/ebook/diss/2003/sub-bremen/dissertations/E-Diss195_kaiser.pdf Verlag Volltext http://elib.suub.uni-bremen.de/publications/dissertations/E-Diss195ḵaiser.pdf Verlag Volltext http://d-nb.info/963158473 Verlag Volltext GBV_ILN_20 ISIL_DE-84 SYSFLAG_1 GBV_KXP SSG-OPC-GEO SSG-OPC-GGO GBV_ILN_22 ISIL_DE-18 GBV_ILN_30 ISIL_DE-104 GBV_ILN_40 ISIL_DE-7 GBV_ILN_60 ISIL_DE-705 GBV_ILN_110 ISIL_DE-Luen4 GBV_ILN_370 ISIL_DE-1373 BO 20 01 0084 653213328 x 22-06-04 22 01 0018 586727418 SUBolrd xu 21-01-03 30 01 0104 71976582X z 14-05-05 40 01 0007 586727426 xsn 21-01-03 60 01 0705 586727434 z 21-01-03 110 01 3110 719765838 xz 14-05-05 370 01 4370 822427583 x 08-06-07 20 01 0084 http://d-nb.info/963158473 22 01 0018 http://deposit.ddb.de/cgi-bin/dokserv?idn=963158473 30 01 0104 http://deposit.ddb.de/cgi-bin/dokserv?idn=963158473 40 01 0007 http://webdoc.sub.gwdg.de/ebook/diss/2003/sub-bremen/dissertations/E-Diss195_kaiser.pdf 60 01 0705 http://d-nb.info/963158473 110 01 3110 http://d-nb.info/963158473 370 01 4370 http://deposit.ddb.de/cgi-bin/dokserv?idn=963158473 40 00 DE-7 00 (DE-627)62360731X TUA 850 Satellitenmeteorologie 40 00 DE-7 01 (DE-627)623605406 TQI 000 Satelliten-Geophysik 40 00 DE-7 02 (DE-627)623607549 TVA 210 Chemische Zusammensetzung der Atmosphäre {Meteorologie} 60 01 0705 10 ho 30 01 0104 OLRD 60 01 0705 OLRD 110 01 3110 OLRD 370 01 4370 OLRD 22 01 0018 SUBolrd |
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atmospheric parameter retrieval from uv-vis-nir limb scattering measurements |
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Atmospheric parameter retrieval from UV-vis-NIR limb scattering measurements |
abstract |
The hyperspectral UV-vis-NIR spectrometer SCIAMACHY will be launched aboard the European satellite Envisat. Its limb measurements will provide vertically resolved profiles of trace gases and other atmospheric parameters. No retrieval algorithms and radiative transfer models have been established for these measurements yet.In this thesis, a unique, fast radiative transfer model for UV-vis-NIR limb radiances has been developed, implemented, and validated. It takes into account the sphericity of the atmosphere and up to two orders of scattering and surface reflection. The weighting functions for all parameters are calculated from analytical formulae. A realistic instrument model with field-of-view integration and signal-to-noise computation and retrieval algorithms have also been implemented. All have been combined in the new program package SCIARAYS. The package has been applied for the characterisation of the limb measurements in several ways:The simulated weighting functions agree well with those due to full multiple scattering. Thus they may be used to calculate theoretical precision estimates and averaging kernels. In conformance with this, test retrievals with approximate weighting functions converge correctly. Therefore, the approximate weighting functions of SCIARAYS are well suited for retrievals from SCIAMACHYś limb measurements.Detailed theoretical retrieval precisions have been calculated for SCIAMACHYś trace gas targets. The conclusion is that a UV-vis-NIR limb sensor like SCIAMACHY is well suited for studying the vertical structure of the stratosphere and also of the upper troposphere above cloud top.Further investigations show that the vertical resolution of retrievals from SCIAMACHYś limb measurements can be improved beyond its geometrical limits. As a trade-off for better vertical resolution, the retrieval precision gets worse. Thus O3 profile features with 1km vertical extent will be detectable with a precision of 20-30%. |
abstractGer |
The hyperspectral UV-vis-NIR spectrometer SCIAMACHY will be launched aboard the European satellite Envisat. Its limb measurements will provide vertically resolved profiles of trace gases and other atmospheric parameters. No retrieval algorithms and radiative transfer models have been established for these measurements yet.In this thesis, a unique, fast radiative transfer model for UV-vis-NIR limb radiances has been developed, implemented, and validated. It takes into account the sphericity of the atmosphere and up to two orders of scattering and surface reflection. The weighting functions for all parameters are calculated from analytical formulae. A realistic instrument model with field-of-view integration and signal-to-noise computation and retrieval algorithms have also been implemented. All have been combined in the new program package SCIARAYS. The package has been applied for the characterisation of the limb measurements in several ways:The simulated weighting functions agree well with those due to full multiple scattering. Thus they may be used to calculate theoretical precision estimates and averaging kernels. In conformance with this, test retrievals with approximate weighting functions converge correctly. Therefore, the approximate weighting functions of SCIARAYS are well suited for retrievals from SCIAMACHYś limb measurements.Detailed theoretical retrieval precisions have been calculated for SCIAMACHYś trace gas targets. The conclusion is that a UV-vis-NIR limb sensor like SCIAMACHY is well suited for studying the vertical structure of the stratosphere and also of the upper troposphere above cloud top.Further investigations show that the vertical resolution of retrievals from SCIAMACHYś limb measurements can be improved beyond its geometrical limits. As a trade-off for better vertical resolution, the retrieval precision gets worse. Thus O3 profile features with 1km vertical extent will be detectable with a precision of 20-30%. |
abstract_unstemmed |
The hyperspectral UV-vis-NIR spectrometer SCIAMACHY will be launched aboard the European satellite Envisat. Its limb measurements will provide vertically resolved profiles of trace gases and other atmospheric parameters. No retrieval algorithms and radiative transfer models have been established for these measurements yet.In this thesis, a unique, fast radiative transfer model for UV-vis-NIR limb radiances has been developed, implemented, and validated. It takes into account the sphericity of the atmosphere and up to two orders of scattering and surface reflection. The weighting functions for all parameters are calculated from analytical formulae. A realistic instrument model with field-of-view integration and signal-to-noise computation and retrieval algorithms have also been implemented. All have been combined in the new program package SCIARAYS. The package has been applied for the characterisation of the limb measurements in several ways:The simulated weighting functions agree well with those due to full multiple scattering. Thus they may be used to calculate theoretical precision estimates and averaging kernels. In conformance with this, test retrievals with approximate weighting functions converge correctly. Therefore, the approximate weighting functions of SCIARAYS are well suited for retrievals from SCIAMACHYś limb measurements.Detailed theoretical retrieval precisions have been calculated for SCIAMACHYś trace gas targets. The conclusion is that a UV-vis-NIR limb sensor like SCIAMACHY is well suited for studying the vertical structure of the stratosphere and also of the upper troposphere above cloud top.Further investigations show that the vertical resolution of retrievals from SCIAMACHYś limb measurements can be improved beyond its geometrical limits. As a trade-off for better vertical resolution, the retrieval precision gets worse. Thus O3 profile features with 1km vertical extent will be detectable with a precision of 20-30%. |
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title_short |
Atmospheric parameter retrieval from UV-vis-NIR limb scattering measurements |
url |
http://webdoc.sub.gwdg.de/ebook/diss/2003/sub-bremen/dissertations/E-Diss195_kaiser.pdf http://elib.suub.uni-bremen.de/publications/dissertations/E-Diss195ḵaiser.pdf http://d-nb.info/963158473 |
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Its limb measurements will provide vertically resolved profiles of trace gases and other atmospheric parameters. No retrieval algorithms and radiative transfer models have been established for these measurements yet.In this thesis, a unique, fast radiative transfer model for UV-vis-NIR limb radiances has been developed, implemented, and validated. It takes into account the sphericity of the atmosphere and up to two orders of scattering and surface reflection. The weighting functions for all parameters are calculated from analytical formulae. A realistic instrument model with field-of-view integration and signal-to-noise computation and retrieval algorithms have also been implemented. All have been combined in the new program package SCIARAYS. The package has been applied for the characterisation of the limb measurements in several ways:The simulated weighting functions agree well with those due to full multiple scattering. Thus they may be used to calculate theoretical precision estimates and averaging kernels. In conformance with this, test retrievals with approximate weighting functions converge correctly. Therefore, the approximate weighting functions of SCIARAYS are well suited for retrievals from SCIAMACHYś limb measurements.Detailed theoretical retrieval precisions have been calculated for SCIAMACHYś trace gas targets. The conclusion is that a UV-vis-NIR limb sensor like SCIAMACHY is well suited for studying the vertical structure of the stratosphere and also of the upper troposphere above cloud top.Further investigations show that the vertical resolution of retrievals from SCIAMACHYś limb measurements can be improved beyond its geometrical limits. As a trade-off for better vertical resolution, the retrieval precision gets worse. 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