Mass redistribution of the atmosphere, oceans, and terrestrial water storage generates crustal displacements which can be predicted by environmental loading models and observed by the Global Positioning System (GPS). In this paper, daily height time series of 235 GPS stations derived from a homogeneously reprocessed Crustal Movement Observation Network of China (CMONOC) and corresponding loading displacements predicted by the Deutsche GeoForschungsZentrum (GFZ) are compared to assess the effects of loading corrections on the nonlinear variations of GPS time series. Results show that the average root mean square (RMS) of vertical displacements due to atmospheric, nontidal oceanic, hydrological, and their combined effects are 3.2, 0.6, 2.7, a...
Conspicuous periodic variations often appear in GPS site coordinate time series. These variations co...
Three different environmental loading methods are used to estimate surface displacements and correct...
Based on continuous GPS data from crustal movement observation network of China (CMONOC), the vertic...
Mass redistribution of the atmosphere, oceans, and terrestrial water storage generates crustal displ...
Analysis of Global Positioning System (GPS) position time series and its common mode components (CMC...
Analysis of Global Positioning System (GPS) position time series and its common mode components (CMC...
Seasonal variations in the vertical Global Positioning System (GPS) time series are mainly caused by...
Analysis of Global Positioning System (GPS) position time series and its common mode components (CMC...
We investigated the effect of mass loading (atmospheric, oceanic and hydrological loading (AOH)) on ...
peer reviewedEarth deformation signals caused by atmospheric pressure loading are detected in vertic...
By analyzing daily continuous data of Chinese Global Positioning System (GPS) fiducial network with ...
Conspicuous periodic variations often appear in GPS site coordinate time series. These variations co...
Abstract The Global Positioning System (GPS) has revolutionized the ability to monitor Earth-system...
The objective of this paper is the estimation of vertical movements of the Earth's crust using data ...
peer reviewedThree different environmental loading methods are used to estimate surface displacemen...
Conspicuous periodic variations often appear in GPS site coordinate time series. These variations co...
Three different environmental loading methods are used to estimate surface displacements and correct...
Based on continuous GPS data from crustal movement observation network of China (CMONOC), the vertic...
Mass redistribution of the atmosphere, oceans, and terrestrial water storage generates crustal displ...
Analysis of Global Positioning System (GPS) position time series and its common mode components (CMC...
Analysis of Global Positioning System (GPS) position time series and its common mode components (CMC...
Seasonal variations in the vertical Global Positioning System (GPS) time series are mainly caused by...
Analysis of Global Positioning System (GPS) position time series and its common mode components (CMC...
We investigated the effect of mass loading (atmospheric, oceanic and hydrological loading (AOH)) on ...
peer reviewedEarth deformation signals caused by atmospheric pressure loading are detected in vertic...
By analyzing daily continuous data of Chinese Global Positioning System (GPS) fiducial network with ...
Conspicuous periodic variations often appear in GPS site coordinate time series. These variations co...
Abstract The Global Positioning System (GPS) has revolutionized the ability to monitor Earth-system...
The objective of this paper is the estimation of vertical movements of the Earth's crust using data ...
peer reviewedThree different environmental loading methods are used to estimate surface displacemen...
Conspicuous periodic variations often appear in GPS site coordinate time series. These variations co...
Three different environmental loading methods are used to estimate surface displacements and correct...
Based on continuous GPS data from crustal movement observation network of China (CMONOC), the vertic...