B. P. Lipovsky
- ORCiD
- https://orcid.org/0000-0003-4940-0745
- OpenAlex ID
- https://openalex.org/A5051447257 (API record)
Associated Concepts [?]
- Geology
- Physics
- Biology
- Engineering
- Geography
- Paleontology
- Seismology
- Geomorphology
- Oceanography
- Meteorology
- Sea ice
- Climatology
- Cryosphere
- Ice shelf
- Geotechnical engineering
- Tectonics
- Physical geography
- Glacier
- Materials science
- Computer science
- Thermodynamics
- Composite material
- Structural basin
- Aerospace engineering
- Rift
Authored Works
sorted by decreasing year, and then by display-name
- What can Glacier Beds tell us about Earthquake Nucleation?
- Swell-Associated Microseismicity Near the Edge of the Ross Ice Shelf
- Rough Around the Edges: Is Changing Ice Shelf Roughness a Precursor to Collapse?
- Optical Fibers Listen to the Death Sounds of Glaciers
- Neural Implicit Compact Representation to Compress Distributed Acoustic Sensing Data
- Modeling Seismogenic Glacier Basal Sliding under Varying Hydraulic Conditions
- Global Surface Load Induced Earthquakes
- Distributed Subsea Fiber-Optical Sensing along the Calving Front of a Greenlandic Tidewater Glacier
- Distributed Acoustic Sensing in the Puget Sound and Puget Lowlands, Washington, USA
- Creating an Antarctic Rift Catalog using ICESat-2: Measurement Algorithm Design and Validation on Brunt Ice Shelf, and Recent Variability in the Opening Rate of the Halloween Crack
- Cracking the Case: Fluid Flow Limits the Speed of the Largest Locally-Observed Rifting Event
- Can We Estimate Global Ice Volume Using Only Data, i.e., Without Using Physical Models?
- Riftquakes: Recording and Modeling Seismic Signals of Rifting at Pine Island Glacier
- Patterns of rupture complexity revealed by earthquake source time functions
- Ocean swell, ice shelf flexure, and crevasse propagation
- Interaction between the marine ice cliff instability and ice shelf rift propagation observed using ICESat-2
- From DAS to Discharge: Using Distributed Acoustic Sensing to Estimate the Hydrological Response of the Rhonegletscher, Switzerland.
- Cryoseismic Event Analysis on Distributed Strain Recordings Leveraging Unsupervised Clustering
- An Ice Sheet Aseismic Zone Inferred from the Absence of Icequakes in the Deep Interior of the Antarctic Ice Sheet
- A global correlation between surface mass loading and seismic activity
Linked Co-Authors
- Andreas Fichtner
- Ashley B. Morris
- B. W. Crowell
- D. P. Winebrenner
- Daniel Farinotti
- Dominik Gräff
- Eileen Martin
- Jiuxun Yin
- Manuela Köpfli
- Marine Denolle
- Mark A. Zumberge
- Nori Nakata
- Pascal Edme
- Paul Antony Selvadurai
- R. C. Aster
- S. Olinger
Linked Collaborating Institutions
- British Antarctic Survey
- Colorado State University
- ETH Zurich, Institute of Geophysics
- ETH Zurich, Swiss Seismological Service
- Eidgenossische Technische Hochschule, Zurich, Switzerland
- Harvard University, Massachusetts
- Stanford University, California
- Swiss Federal Institute for Forest Snow and Landscape Research
- University of California, San Diego
- University of Leeds, UK
- University of Science and Technology of China, Hefei
- University of Texas, El Paso
- University of Washington, Seattle
- Virginia Polytechnic Institute and State University
- Washington University in Saint Louis, Missouri
- Woods Hole Oceanographic Institute, Massachusetts
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