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International Soil Moisture Network

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Journal Article
Published: 01 August 2013
Vadose Zone Journal (2013) 12 (3): vzj2012.0097.
...W.A. Dorigo; A. Xaver; M. Vreugdenhil; A. Gruber; A. Hegyiová; A.D. Sanchis-Dufau; D. Zamojski; C. Cordes; W. Wagner; M. Drusch Abstract The International Soil Moisture Network (ISMN) was initiated in 2009 to support calibration and validation of remote sensing products and land surface models...
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Journal Article
Published: 01 May 2013
Vadose Zone Journal (2013) 12 (2): vzj2012.0170.
... data. This study assesses random errors in the coarse-scale representation of in situ soil moisture measurements from more than 1400 globally distributed stations, drawn from the International Soil Moisture Network (ISMN), using the triple collocation method. The method was applied on the original...
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Temporal coverage of the International Soil Moisture Network (ISMN) networks, Water Cycle Multi-Mission Observation Strategy (WACMOS) and ERA-Interim.
Published: 01 May 2013
Fig. 2. Temporal coverage of the International Soil Moisture Network (ISMN) networks, Water Cycle Multi-Mission Observation Strategy (WACMOS) and ERA-Interim.
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Stations currently contained in the International Soil Moisture Network (status November 2012).
Published: 01 August 2013
Fig. 1. Stations currently contained in the International Soil Moisture Network (status November 2012).
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Station distribution of the International Soil Moisture Network [ISNM (October 2012)]. Pins represent single stations, colors represent different networks.
Published: 01 May 2013
Fig. 1. Station distribution of the International Soil Moisture Network [ISNM (October 2012)]. Pins represent single stations, colors represent different networks.
Journal Article
Published: 01 May 2013
Vadose Zone Journal (2013) 12 (2): vzj2013.03.0058.
... to validate observations at a single site and maintain a continuous record over time. Gruber et al. (2013) reported on their efforts to characterize coarse-scale representativeness of in situ soil water content measurements from the International Soil Moisture Network using the triple collocation method...
Journal Article
Published: 01 August 2013
Vadose Zone Journal (2013) 12 (3): vzj2013.07.0128.
..., Advanced SCATterometer AVHRR, Advanced Very High Resolution Radiometer CLM, Community Land Model ET, evapotranspiration InSAR, Interferometric Synthetic Aperture Radar ISMN, International Soil Moisture Network LETKF, Local Ensemble Transformed Kalman Filter L-MEB, L-band Microwave Emission...
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Journal Article
Published: 01 January 2017
Vadose Zone Journal (2017) 16 (1): 1–9.
... selections have on calibration and validation efforts. Most networks are available through the International Soil Moisture Network ( Dorigo et al., 2011 ) and have been used for satellite soil moisture validation (e.g., de Jeu et al., 2014 ; Paulik et al., 2014 ; van der Schalie et al., 2016 ; Wu et al...
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Journal Article
Published: 01 May 2013
Vadose Zone Journal (2013) 12 (2): vzj2012.0158.
... on a regular basis in the International Soil Moisture Network database ( Dorigo et al., 2011a , 2011b ). USCRN soil moisture measurements still face some challenges in locations where the currently deployed probe technology does not work well, such as in the saline sediments of the tidal flats at Coos Bay...
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Journal Article
Published: 01 December 2014
Vadose Zone Journal (2014) 13 (12): vzj2014.07.0081.
... C. Xaver A. . 2011 . The International Soil Moisture Network: A data hosting facility for global in situ soil moisture measurements . Hydrol. Earth Syst. Sci. 15 : 1675 – 1698 . doi:10.5194/hess-15-1675-2011 Dorigo W.A. Xaver A. Vreugdenhil M. Gruber A. Hegyiova...
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Journal Article
Published: 01 May 2013
Vadose Zone Journal (2013) 12 (2): vzj2012.0151.
....2005.08.020 Dorigo W.A. Wagner W. Hohensinn R. Hahn S. Paulik C. Xaver A. Gruber A. Drusch M. Mecklenburg S. van Oevelen P. Robock A. Jackson T. . 2011 . The international soil moisture network: A data hosting facility for global in situ soil moisture...
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Journal Article
Published: 01 November 2015
Vadose Zone Journal (2015) 14 (11): vzj2015.02.0023.
... A. Wagner W. . 2013 . Characterizing coarse-scale representativeness of in situ soil moisture measurements from the International Soil Moisture Network . Vadose Zone J. 12 ( 2 ). doi:10.2136/vzj2012.0170 Guttman N.B. 1999 . Accepting the standardized precipitation index: A calculation...
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Journal Article
Published: 01 March 2014
Vadose Zone Journal (2014) 13 (3): vzj2013.06.0101.
... most of the soil moisture networks in the United States and elsewhere in the world can be obtained from the International Soil Moisture Network database ( http://ismn.geo.tuwien.ac.at/ismn/ ) ( Dorigo et al., 2011 ). In the United States, there are mainly three categories of networks, namely, (i) local...
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Journal Article
Published: 01 June 2016
Vadose Zone Journal (2016) 15 (6): vzj2015.11.0143.
..., continuous ground-based measurements of SWC at scales from 10 to 1000 km 2 (i.e., regional scale). Among 48 soil moisture networks of the International Soil Moisture Network ( Dorigo et al., 2011 ), only three were fully or partially established and continuously operated on arable lands: OzNet ( Smith et al...
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Journal Article
Published: 01 August 2013
Vadose Zone Journal (2013) 12 (3): vzj2012.0040.
...” can be obtained by The International Soil Moisture Network ( Dorigo et al., 2011 ), the U.S. SCAN Network ( Schaefer et al., 2007 ), the German TERENO ( Zacharias et al., 2011 ), or further networks ( Zhao et al., 2013 ). Moreover, modeling results can be used by the SMOS L2 processor as a first guess...
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Journal Article
Published: 01 September 2016
Vadose Zone Journal (2016) 15 (9): vzj2016.06.0050.
...-Dufau A.D. . 2013 . Global automated quality control of in situ soil moisture data from the International Soil Moisture Network . Vadose Zone J. doi:10.2136/vzj2012.0097 Duffy C. Shi Y. Davis K. Slingerland R. Li L. Sullivan P.L. . 2014 . Designing a suite...
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Journal Article
Journal: The Leading Edge
Published: 01 September 2023
The Leading Edge (2023) 42 (9): 634–643.
... probability map of the site that highlights particular areas of concern. Focusing on one of those sites, we show how geophysical data can be used to monitor and estimate the landslide hazard. Based on the landslide probability map, we installed a network of soil deformation, soil moisture, and pore pressure...
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Journal Article
Published: 25 July 2024
Quarterly Journal of Engineering Geology and Hydrogeology (2024) 57 (3): qjegh2023-089.
... by an internal drainage network that takes water away from the retaining walls near the station and drains water from the railway. There are many factors that may affect the stability of embankments. Under natural conditions, the site may be unstable. Also, there is a risk that building a cutting...
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Journal Article
Published: 11 June 2025
Quarterly Journal of Engineering Geology and Hydrogeology (2025) qjegh2024-135.
... of the sample but also its internal structure changed substantially (Figs. 8e-i). To reflect the fracture development characteristics of samples in different dry wet environments, this paper quantifies the fracture rate Rsc of the soil surface cracks by using the soil fracture network processing system (PCAS...
Journal Article
Published: 01 August 2011
Vadose Zone Journal (2011) 10 (3): 781–785.
... CZO network and presented relevant research hypotheses with associated experimental designs. Driven by the European Union's policy on soil threats and soil protection, the EU CZOs followed the U.S. model to develop a critical mass of international and multidisciplinary expertise using place-based...
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