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ZENODO
Dataset . 2019
License: CC BY
Data sources: Datacite
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ZENODO
Dataset . 2019
License: CC BY
Data sources: ZENODO
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ZENODO
Dataset . 2019
License: CC BY
Data sources: Datacite
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InSAR time-series for Galápagos volcanoes, Ecuador from ALOS and Sentinel-1

Authors: Yunjun, Zhang; Amelung, Falk;

InSAR time-series for Galápagos volcanoes, Ecuador from ALOS and Sentinel-1

Abstract

This repository contains the data used by Yunjun et al. (2019) and Gregg et al. (2022). It includes two InSAR time-series datasets from ALOS and Sentinel-1 satellite acquired over the Galápagos volcanoes, Ecuador. Yunjun, Z., H. Fattahi, F. Amelung (2019), Small baseline InSAR time series analysis: Unwrapping error correction and noise reduction, Computers & Geosciences, 133, 104331, doi:10.1016/j.cageo.2019.104331, arXiv. Gregg, P. M., Zhan, Y., Amelung, F., Geist, D., Mothes, P., Koric, S., & Yunjun, Z. (2022), Forecasting mechanical failure and the 26 June 2018 eruption of Sierra Negra Volcano, Galápagos, Ecuador, Science Advances, 8(22), doi:10.1126/sciadv.abm4261. Dataset 1: ALOS ascending track 133 frame 7160-7180 Date: 15 Jan 2007 - 13 Mar 2011 (22 acquisitions) Processor: ROI_PAC + MintPy Configuration: GalapagosAlosAT133.template Interferogram stack (in HDF5/MintPy format): GalapagosAlosAT133.tar.xz Displacement time-series (in HDF-EOS5 format): ALOS_SM_131_7160_7180_20070115_20110313.he5 Volcanic events covered and relevant literature: Alcedo: 2010 non-eruptive unrest (Galetto et al., 2019, JGR) Fernandina: April 2009 eruption (Bagnardi et al., 2013, EPSL) Cerro Azul: 2008 eruption (Galetto et al., 2020, JGR) Dataset 2: Sentinel-1 descending track 128 frame 593-597 Date: 13 Dec 2014 - 19 Jun 2018 (98 acquisitions) Processor: ISCE/topsStack + MintPy Configuration: GalapagosSenDT128.template Interferogram stack (in HDF5/MintPy format): GalapagosSenDT128.tar.xz Interferogram stack (in HDF5/MintPy format) with 30 sequential connections: SierraNegraSenDT128.zip Area extent: Sierra Negra caldera rim Dimension: 2475 * 150 * 150 Related to Fig. 14 Displacement time-series (in HDF-EOS5 format): S1_IW12_128_0593_0597_20141213_20180619.he5 Volcanic events covered and relevant literature: Wolf: May 2015 eruption (Xu et al., 2016, GRL) Fernandina: September 2017 eruption (GVP, 2018) and June 2018 eruption (GVP, 2018) Sierra Negra: inflation prior to the 26 June 2018 eruption (Gregg et al., 2022, SciAd) Cerro Azul: March 2017 dike intrusion (Bagnardi et al., 2018, G3) Useful links: HDF-EOS5 file (*.he5) structure is described in https://mintpy.readthedocs.io/en/latest/hdfeos5. HDF5/MintPy file (*.h5 after uncompressing *.tar.xz file) structure is described in https://mintpy.readthedocs.io/en/latest/api/data_structure/. KMZ file for displacement time-series is described in https://mintpy.readthedocs.io/en/latest/google_earth/. Related Jupyter Notebooks at https://github.com/geodesymiami/Yunjun_et_al-2019-MintPy.

{"references": ["Yunjun, Z., H. Fattahi, and F. Amelung (2019), Small baseline InSAR time series analysis: Unwrapping error correction and noise reduction, Computers & Geosciences, 133, 104331, doi:10.1016/j.cageo.2019.104331.", "Gregg, P. M., Zhan, Y., Amelung, F., Geist, D., Mothes, P., Koric, S., & Yunjun, Z. (2022), Forecasting mechanical failure and the 26 June 2018 eruption of Sierra Negra Volcano, Gal\u00e1pagos, Ecuador, Science Advances, 8(22), doi:10.1126/sciadv.abm4261."]}

Keywords

InSAR, volcano, MintPy, time-series, deformation, Galápagos

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This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
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popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
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influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
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impulse
This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.
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