Land subsidence and ground fissures in Xi'an, China 2005–2012 revealed by multi-band InSAR time-series analysis

Xi'an, China has been undergoing significant land subsidence along with ground fissure development. These geohazards have brought about severe damages to buildings, bridges and other facilities. In order to warn of and mitigate disasters, it is urgently necessary to obtain the latest rate, exte...

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Published inRemote sensing of environment Vol. 155; pp. 366 - 376
Main Authors Qu, Feifei, Zhang, Qin, Lu, Zhong, Zhao, Chaoying, Yang, Chengsheng, Zhang, Jing
Format Journal Article
LanguageEnglish
Published New York, NY Elsevier Inc 01.12.2014
Elsevier
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Abstract Xi'an, China has been undergoing significant land subsidence along with ground fissure development. These geohazards have brought about severe damages to buildings, bridges and other facilities. In order to warn of and mitigate disasters, it is urgently necessary to obtain the latest rate, extent, and temporal evolution of land subsidence in Xi'an. With multiple SAR datasets as well as leveling, GPS and ground water level of aquifers, we study and map the spatial and temporal evolution of land subsidence and ground fissures over Xi'an. First, 62 synthetic aperture radar (SAR) images acquired by Envisat, ALOS, and TerrSAR-X during 2005–2012 are used to form three independent interferometric stacks to unveil the spatial and temporal variations of land subsidence and ground fissures by using the time-series interferometric synthetic aperture radar (InSAR) technique. GPS and leveling measurements are applied to calibrate the InSAR results. Precision of our InSAR annual subsidence results is less than 9mm. We derive the east–west and vertical components of the observed land deformation in 2009 using descending and ascending InSAR observations, finding out that the horizontal component of land deformation cannot be ignored if the deformation is large or ground fissures are active. Second, four main land subsidence zones are detected in Xi'an, with an average subsidence rate of 50mm/a during 2005–2012. Time-series InSAR results indicate that land subsidence rates in Xi'an increased by 200% from 2005–2007 to 2008–2010, extending existing ground fissures. Third, InSAR-derived land subsidence correlates with the change in ground water level, and seasonal variations in subsidence correlate with changes in ground water pumping. Last, the consistency on the spatial–temporal distribution variation between ground fissures and land subsidence could be drawn from the time series results and profile analysis. Shapes of subsiding zones follow the general trends of mapped ground fissures and main faults in an ENE direction. Changes in the subsidence gradient are also observed over most of the ground fissures and faults. Subsidence-triggered fissures can cause localized surface displacements, aggravate localized subsidence, discontinue the integrity of ground water flow, and limit the horizontal spread of subsidence funnels. With continuing mass construction projects in Xi'an, monitoring ground deformation with satellite InSAR therefore can provide efficient means to image land subsidence, movements of fissures and faults, and the associated geohazards. •Multiple InSAR datasets unveil variations of land subsidence and ground fissures.•Land subsidence correlates with changes in ground water level.•Subsiding zones follow trends of mapped ground fissures and main faults.•Changes in the subsidence correlate with ground fissures and faults.•Fissures can aggravate localized subsidence and discontinue ground water flow.
AbstractList Xi'an, China has been undergoing significant land subsidence along with ground fissure development. These geohazards have brought about severe damages to buildings, bridges and other facilities. In order to warn of and mitigate disasters, it is urgently necessary to obtain the latest rate, extent, and temporal evolution of land subsidence in Xi'an. With multiple SAR datasets as well as leveling, GPS and ground water level of aquifers, we study and map the spatial and temporal evolution of land subsidence and ground fissures over Xi'an. First, 62 synthetic aperture radar (SAR) images acquired by Envisat, ALOS, and TerrSAR-X during 2005–2012 are used to form three independent interferometric stacks to unveil the spatial and temporal variations of land subsidence and ground fissures by using the time-series interferometric synthetic aperture radar (InSAR) technique. GPS and leveling measurements are applied to calibrate the InSAR results. Precision of our InSAR annual subsidence results is less than 9mm. We derive the east–west and vertical components of the observed land deformation in 2009 using descending and ascending InSAR observations, finding out that the horizontal component of land deformation cannot be ignored if the deformation is large or ground fissures are active. Second, four main land subsidence zones are detected in Xi'an, with an average subsidence rate of 50mm/a during 2005–2012. Time-series InSAR results indicate that land subsidence rates in Xi'an increased by 200% from 2005–2007 to 2008–2010, extending existing ground fissures. Third, InSAR-derived land subsidence correlates with the change in ground water level, and seasonal variations in subsidence correlate with changes in ground water pumping. Last, the consistency on the spatial–temporal distribution variation between ground fissures and land subsidence could be drawn from the time series results and profile analysis. Shapes of subsiding zones follow the general trends of mapped ground fissures and main faults in an ENE direction. Changes in the subsidence gradient are also observed over most of the ground fissures and faults. Subsidence-triggered fissures can cause localized surface displacements, aggravate localized subsidence, discontinue the integrity of ground water flow, and limit the horizontal spread of subsidence funnels. With continuing mass construction projects in Xi'an, monitoring ground deformation with satellite InSAR therefore can provide efficient means to image land subsidence, movements of fissures and faults, and the associated geohazards.
Xi'an, China has been undergoing significant land subsidence along with ground fissure development. These geohazards have brought about severe damages to buildings, bridges and other facilities. In order to warn of and mitigate disasters, it is urgently necessary to obtain the latest rate, extent, and temporal evolution of land subsidence in Xi'an. With multiple SAR datasets as well as leveling, GPS and ground water level of aquifers, we study and map the spatial and temporal evolution of land subsidence and ground fissures over Xi'an. First, 62 synthetic aperture radar (SAR) images acquired by Envisat, ALOS, and TerrSAR-X during 2005–2012 are used to form three independent interferometric stacks to unveil the spatial and temporal variations of land subsidence and ground fissures by using the time-series interferometric synthetic aperture radar (InSAR) technique. GPS and leveling measurements are applied to calibrate the InSAR results. Precision of our InSAR annual subsidence results is less than 9mm. We derive the east–west and vertical components of the observed land deformation in 2009 using descending and ascending InSAR observations, finding out that the horizontal component of land deformation cannot be ignored if the deformation is large or ground fissures are active. Second, four main land subsidence zones are detected in Xi'an, with an average subsidence rate of 50mm/a during 2005–2012. Time-series InSAR results indicate that land subsidence rates in Xi'an increased by 200% from 2005–2007 to 2008–2010, extending existing ground fissures. Third, InSAR-derived land subsidence correlates with the change in ground water level, and seasonal variations in subsidence correlate with changes in ground water pumping. Last, the consistency on the spatial–temporal distribution variation between ground fissures and land subsidence could be drawn from the time series results and profile analysis. Shapes of subsiding zones follow the general trends of mapped ground fissures and main faults in an ENE direction. Changes in the subsidence gradient are also observed over most of the ground fissures and faults. Subsidence-triggered fissures can cause localized surface displacements, aggravate localized subsidence, discontinue the integrity of ground water flow, and limit the horizontal spread of subsidence funnels. With continuing mass construction projects in Xi'an, monitoring ground deformation with satellite InSAR therefore can provide efficient means to image land subsidence, movements of fissures and faults, and the associated geohazards. •Multiple InSAR datasets unveil variations of land subsidence and ground fissures.•Land subsidence correlates with changes in ground water level.•Subsiding zones follow trends of mapped ground fissures and main faults.•Changes in the subsidence correlate with ground fissures and faults.•Fissures can aggravate localized subsidence and discontinue ground water flow.
Author Lu, Zhong
Zhang, Jing
Qu, Feifei
Zhang, Qin
Yang, Chengsheng
Zhao, Chaoying
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IsPeerReviewed true
IsScholarly true
Keywords Geohazards
StaMPS SBAS
Ground fissure
InSAR
Land subsidence
Fault
Xi'an
time series analysis
fissures
time variations
Disaster
geology
land subsidence
aquifers
positioning
imagery
subsidence
spatial variations
Damage
Natural hazards
Synthetic aperture radar
development
water body
maps
Space remote sensing
bridges
leveling
Global Positioning System
Ground water table
natural disaster damages
buildings
Language English
License CC BY 4.0
LinkModel DirectLink
MergedId FETCHMERGED-LOGICAL-c426t-285d6a0bf48cd021b5be6c7f1e878c822d5c7da571ad814d9cede7433a51462c3
Notes ObjectType-Article-1
SourceType-Scholarly Journals-1
ObjectType-Feature-2
content type line 23
PQID 1647008282
PQPubID 23462
PageCount 11
ParticipantIDs proquest_miscellaneous_2000171048
proquest_miscellaneous_1660054419
proquest_miscellaneous_1647008282
pascalfrancis_primary_29026280
crossref_citationtrail_10_1016_j_rse_2014_09_008
crossref_primary_10_1016_j_rse_2014_09_008
elsevier_sciencedirect_doi_10_1016_j_rse_2014_09_008
ProviderPackageCode CITATION
AAYXX
PublicationCentury 2000
PublicationDate 2014-12-01
PublicationDateYYYYMMDD 2014-12-01
PublicationDate_xml – month: 12
  year: 2014
  text: 2014-12-01
  day: 01
PublicationDecade 2010
PublicationPlace New York, NY
PublicationPlace_xml – name: New York, NY
PublicationTitle Remote sensing of environment
PublicationYear 2014
Publisher Elsevier Inc
Elsevier
Publisher_xml – name: Elsevier Inc
– name: Elsevier
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Snippet Xi'an, China has been undergoing significant land subsidence along with ground fissure development. These geohazards have brought about severe damages to...
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SubjectTerms Animal, plant and microbial ecology
Applied geophysics
aquifers
Biological and medical sciences
buildings
China
Cracks
data collection
Deformation
disasters
Earth sciences
Earth, ocean, space
Exact sciences and technology
Fault
Faults
Fundamental and applied biological sciences. Psychology
General aspects. Techniques
Geohazards
global positioning systems
Ground fissure
Grounds
Groundwater
groundwater flow
image analysis
InSAR
Internal geophysics
Land
Land subsidence
monitoring
remote sensing
satellites
seasonal variation
StaMPS SBAS
Subsidence
Synthetic aperture radar
Teledetection and vegetation maps
time series analysis
water table
Xi'an
Title Land subsidence and ground fissures in Xi'an, China 2005–2012 revealed by multi-band InSAR time-series analysis
URI https://dx.doi.org/10.1016/j.rse.2014.09.008
https://www.proquest.com/docview/1647008282
https://www.proquest.com/docview/1660054419
https://www.proquest.com/docview/2000171048
Volume 155
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