Regine Hock
#153,795
Most Influential Person Now
Glaciologist
Regine Hock's AcademicInfluence.com Rankings
Regine Hockearth-sciences Degrees
Earth Sciences
#1844
World Rank
#2576
Historical Rank
Glaciology
#28
World Rank
#31
Historical Rank

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Earth Sciences
Regine Hock's Degrees
- PhD Glaciology University of Alaska Fairbanks
- Masters Geophysics University of Alaska Fairbanks
- Bachelors Physics University of Alaska Fairbanks
Why Is Regine Hock Influential?
(Suggest an Edit or Addition)Regine Hock's Published Works
Number of citations in a given year to any of this author's works
Total number of citations to an author for the works they published in a given year. This highlights publication of the most important work(s) by the author
Published Works
- Temperature index melt modelling in mountain areas (2003) (1228)
- A Reconciled Estimate of Glacier Contributions to Sea Level Rise: 2003 to 2009 (2013) (1113)
- The Randolph Glacier inventory: a globally complete inventory of glaciers (2014) (846)
- Glacier melt: a review of processes and their modelling (2005) (641)
- A distributed temperature-index ice- and snowmelt model including potential direct solar radiation (1999) (593)
- Global-scale hydrological response to future glacier mass loss (2018) (567)
- Glossary of glacier mass balance and related terms (2010) (516)
- The concept of glacier storage: a review (2003) (508)
- Regionally differentiated contribution of mountain glaciers and ice caps to future sea-level rise (2011) (440)
- Regional and global projections of twenty-first century glacier mass changes in response to climate scenarios from global climate models (2013) (395)
- A new model for global glacier change and sea-level rise (2015) (321)
- High Mountain Areas (2019) (286)
- A distributed surface energy-balance model for complex topography and its application to Storglaciären, Sweden (2005) (283)
- Regional and global volumes of glaciers derived from statistical upscaling of glacier inventory data (2010) (265)
- Global response of glacier runoff to twenty‐first century climate change (2014) (227)
- Determination of the seasonal mass balance of four Alpine glaciers since 1865 (2008) (208)
- Contribution of the Greenland Ice Sheet to sea level over the next millennium (2018) (164)
- Mountain glaciers and ice caps around Antarctica make a large sea‐level rise contribution (2009) (162)
- Glacier melt, air temperature and energy balance in different climates: the Bolivian Tropics, the French Alps and northern Sweden (2008) (157)
- Evolution of the internal drainage system in the lower part of the ablation area of Storglaci?ären, Sweden (1993) (149)
- Glaciers in the Earth’s Hydrological Cycle: Assessments of Glacier Mass and Runoff Changes on Global and Regional Scales (2014) (144)
- Modelling the Response of Mountain Glacier Discharge to Climate Warming (2005) (137)
- Static mass-balance sensitivity of Arctic glaciers and ice caps using a degree-day approach (2005) (137)
- GlacierMIP – A model intercomparison of global-scale glacier mass-balance models and projections (2015) (134)
- 100‐year mass changes in the Swiss Alps linked to the Atlantic Multidecadal Oscillation (2010) (133)
- Glaciers and climate change (2021) (128)
- Projected land ice contributions to twenty-first-century sea level rise (2021) (122)
- Randolph Glacier Inventory [v3.2]: A Dataset of Global Glacier Outlines. Global Land Ice Measurements from Space (2013) (115)
- Using surface velocities to calculate ice thickness and bed topography: a case study at Columbia Glacier, Alaska, USA (2012) (112)
- Glacier-dammed lake outburst events of Gornersee, Switzerland (2007) (111)
- Analysis of seasonal variations in mass balance and meltwater discharge of the tropical Zongo Glacier by application of a distributed energy balance model (2011) (105)
- Randolph Glacier Inventory [v2.0]: A Dataset of Global Glacier Outlines (2012) (103)
- Areal melt and discharge modelling of Storglaciären, Sweden (1997) (102)
- Glacier Mass Change in High Mountain Asia Through 2100 Using the Open-Source Python Glacier Evolution Model (PyGEM) (2020) (99)
- Internal accumulation on Storglaciären, Sweden, in a multi-layer snow model coupled to a distributed energy- and mass-balance model (2008) (94)
- Modeling future glacier mass balance and volume changes using ERA‐40 reanalysis and climate models: A sensitivity study at Storglaciären, Sweden (2006) (88)
- Some aspects of energy balance and ablation of Storglaciaren, northern Sweden (1996) (87)
- Alaska tidewater glacier terminus positions, 1948–2012 (2014) (84)
- A new method for deriving glacier centerlines applied to glaciers in Alaska and northwest Canada (2013) (81)
- Partitioning the Uncertainty of Ensemble Projections of Global Glacier Mass Change (2020) (76)
- Conventional versus reference-surface mass balance (2012) (75)
- Spatially distributed surface energy balance and ablation modelling on the ice cap of King George Island (Antarctica) (2004) (74)
- Diagnosing the decline in climatic mass balance of glaciers in Svalbard over 1957–2014 (2016) (69)
- Spatial and temporal variations in albedo on Storglaciären, Sweden (2003) (65)
- Analysis of scaling methods in deriving future volume evolutions of valley glaciers (2008) (64)
- Testing longwave radiation parameterizations under clear and overcast skies at Storglaciären, Sweden (2009) (61)
- Modelling of glacier melt and discharge (1998) (61)
- Distributed mass-balance and climate sensitivity modelling of Engabreen, Norway (2005) (58)
- Application of Kriging Interpolation for Glacier Mass Balance Computations (1999) (56)
- Derivation and analysis of a complete modern-date glacier inventory for Alaska and northwest Canada (2015) (56)
- Variations in Alaska tidewater glacier frontal ablation, 1985–2013 (2015) (56)
- Surface velocity and ice discharge of the ice cap on King George Island, Antarctica (2013) (52)
- Volume–area scaling vs flowline modelling in glacier volume projections (2007) (51)
- Climate sensitivity of Storglaciären, Sweden: an intercomparison of mass-balance models using ERA-40 re-analysis and regional climate model data (2007) (51)
- Modelling the response of glaciers to a doubling in atmospheric CO2: a case study of Storglaciären, northern Sweden (2001) (50)
- Sky longwave radiation on tropical Andean glaciers: parameterization and sensitivity to atmospheric variables (2010) (49)
- Tracer experiments and borehole observations in the over-deepening of Aletschgletscher, Switzerland (1999) (46)
- Surface velocity and mass balance of Livingston Island ice cap, Antarctica (2014) (40)
- A new inventory of mountain glaciers and ice caps for the Antarctic periphery (2013) (40)
- Distributed Global Debris Thickness Estimates Reveal Debris Significantly Impacts Glacier Mass Balance (2021) (40)
- Understanding of Contemporary Regional Sea‐Level Change and the Implications for the Future (2020) (35)
- Contribution from glaciers and snow cover to runoff from mountains in different climates (2006) (35)
- Modeling the evolution of the Juneau Icefield between 1971 and 2100 using the Parallel Ice Sheet Model (PISM) (2016) (35)
- Firn layer impact on glacial runoff: a case study at Hofsjökull, Iceland (2006) (34)
- 21st-century increase in glacier mass loss in the Wrangell Mountains, Alaska, USA, from airborne laser altimetry and satellite stereo imagery (2014) (34)
- Climatic mass balance of the ice cap Vestfonna, Svalbard: A spatially distributed assessment using ERA‐Interim and MODIS data (2011) (32)
- A new semi-automatic approach for dividing glacier complexes into individual glaciers (2013) (31)
- Quantifying parameter uncertainty in a large-scale glacier evolution model using Bayesian inference: application to High Mountain Asia (2020) (30)
- Surface mass balance, thinning and iceberg production, Columbia Glacier, Alaska, 1948–2007 (2011) (29)
- Distribution of snow accumulation on the Svartisen ice cap, Norway, assessed by a model of orographic precipitation (2008) (29)
- Runaway thinning of the low-elevation Yakutat Glacier, Alaska, and its sensitivity to climate change (2015) (23)
- Comparison of modeled water input and measured discharge prior to a release event: Unteraargletscher, Bernese Alps, Switzerland (2002) (22)
- Grand Challenges in Cryospheric Sciences: Toward Better Predictability of Glaciers, Snow and Sea Ice (2017) (22)
- Estimating glacier snow accumulation from backward calculation of melt and snowline tracking (2013) (21)
- Deriving glacier mass balance from accumulation area ratio on Storglaciären, Sweden. (2007) (20)
- A Science Plan for Regional Arctic System Modeling, A report to the National Science Foundation from the International Arctic Science Community. (2010) (20)
- Recent air and ground temperature increases at Tarfala Research Station, Sweden (2013) (20)
- Mass Balance Evolution of Black Rapids Glacier, Alaska, 1980–2100, and Its Implications for Surge Recurrence (2017) (19)
- Modeling Winter Precipitation Over the Juneau Icefield, Alaska, Using a Linear Model of Orographic Precipitation (2018) (19)
- Modeling Glacier Hydrology (2006) (18)
- Glacier changes in Alaska: can mass-balance models explain GRACE mascon trends? (2009) (17)
- Implications for the dynamic health of a glacier from comparison of conventional and reference-surface balances (2009) (16)
- Parameter uncertainty, refreezing and surface energy balance modelling at Austfonna ice cap, Svalbard, 2004-08 (2013) (16)
- Modeling Climate Conditions Required for Glacier Formation in Cirques of the Rassepautasjtjåkka Massif, Northern Sweden (2002) (14)
- A science plan for regional arctic system modeling a report by the arctic research community for the National Science Foundation, Office of Polar Programs (2010) (13)
- PISM, a Parallel Ice Sheet Model (stable0.3 release) (2010) (13)
- Evaluation of passive microwave melt detection methods on Antarctic Peninsula ice shelves using time series of Sentinel-1 SAR (2020) (12)
- Comparison of remote sensing derived glacier facies maps with distributed mass balance modelling at Engabreen, northern Norway (2007) (11)
- Geodetic mass balance of surge‐type Black Rapids Glacier, Alaska, 1980–2001–2010, including role of rockslide deposition and earthquake displacement (2016) (10)
- Global glacier change in the 21st century: Every increase in temperature matters (2023) (10)
- Glacier mass and area changes on the Kenai Peninsula, Alaska, 1986–2016 (2019) (10)
- Mountain Glaciers and Ice Caps (2011) (8)
- Shallow firn cores 1989–2019 in southwest Greenland's percolation zone reveal decreasing density and ice layer thickness after 2012 (2021) (8)
- Spatial variability and regional trends of Antarctic ice shelf surface melt duration over 1979–2020 derived from passive microwave data (2021) (8)
- Modeling Present and Future Permafrost Distribution at the Seward Peninsula, Alaska (2020) (8)
- The unquantified mass loss of Northern Hemisphere marine-terminating glaciers from 2000–2020 (2022) (7)
- Assessing the future evolution of meltwater intrusions into a mine below Gruvefonna, Svalbard (2005) (7)
- Temperature lapse rates and surface energy balance at Storglaciären, northern Sweden (2007) (6)
- Geodetic Mass Balance of Glaciers in the Central Brooks Range, Alaska, U.S.A., from 1970 to 2001 (2013) (6)
- Modeling the impacts of climate change on mass balance and discharge of Eklutna Glacier, Alaska, 1985–2019 (2021) (5)
- Ending a Sea of Confusion: Insights and Opportunities in Sea-Level Change Communication (2020) (5)
- IACS: past, present, and future of the International Association of Cryospheric Sciences (2019) (5)
- On the use of incoming longwave radiation parameterizations in a glacier environment (2008) (4)
- Reply to the comment of Leclercq et al. on (2010) (4)
- Glacier Changes in the Susitna Basin, Alaska, USA, (1951-2015) using GIS and Remote Sensing Methods (2017) (4)
- Case Study of Blowing Snow Impacts on the Antarctic Peninsula Lower Atmosphere and Surface Simulated With a Snow/Ice Enhanced WRF Model (2020) (4)
- User Engagement in Developing Use-Inspired Glacial Lake Outburst Flood Decision Support Tools in Juneau and the Kenai Peninsula, Alaska (2021) (4)
- Future Earth and the Cryosphere (2018) (4)
- The challenge of monitoring glaciers with extreme altitudinal range: mass-balance reconstruction for Kahiltna Glacier, Alaska (2018) (3)
- Glacier Surface Speed Variations on the Kenai Peninsula, Alaska, 2014–2019 (2022) (3)
- Winter accumulation drives the spatial variations in glacier mass balance in High Mountain Asia. (2022) (2)
- Water balance response of permafrost-affected watersheds to changes in air temperatures (2021) (2)
- Internal accumulation on Storglaci¨aren, Sweden, in a multi-layer snow model coupled to a distributed energy- and mass-balance model (2009) (2)
- Frontal ablation and temporal variations in surface velocity of Livingston Island ice cap, Antarctica (2013) (2)
- Surface mass balance at A.P. Olsen Ice Cap, NE Greenland (2015) (2)
- A New Bed Topography Map for Columbia Glacier (2011) (1)
- Climate Controls on the Interseasonal and Interannual Variability of the Surface Mass and Energy Balances of a Tropical Glacier (Zongo Glacier, Bolivia, 16°S): New Insights From the Multi‐Year Application of a Distributed Energy Balance Model (2022) (1)
- Mass and surface energy balance of A.P. Olsen ice cap, NE Greenland, from observations and modeling (1995-2011) (2012) (1)
- Challenges in modeling the energy balance and melt in the percolation zone of the Greenland ice sheet (2022) (1)
- Which glaciers are the largest in the world? (2022) (1)
- Lapse rates and their effect on melt modelling of King George Island (Antarctica) (2004) (1)
- Contributions of the world's glaciers to the hydrological cycle in the 21st Century (2013) (1)
- Huss Receives 2013 Cryosphere Young Investigator Award: Citation (2014) (0)
- Widespread disappearance of small glaciers in the 21st century (Invited) (2010) (0)
- Applying an orographic precipitation model to improve mass balance modeling of the Juneau Icefield, AK (2016) (0)
- Modeling future mass balance of glaciers in Alaska using Python Glacier Evolution Model (2019) (0)
- Future glacier and runoff changes in the Upper Susitna basin, Alaska (2012) (0)
- Contribution of mountain glaciers and ice caps to sea-level rise (2009) (0)
- First order projections of frontal ablation at Alaska tidewater glaciers (2012) (0)
- Response of glacier melt and discharge to future climate change, Juneau ice field, Alaska (2011) (0)
- Glaciers and small ice caps in the macro-scale hydrological cycle: an assessment of present conditions and future changes (2014) (0)
- Book review: A. Fowler and F. Ng (Eds.), 2020. Glaciers and Ice Sheets in the Climate System: The Karthaus Summer School Lecture Notes. (2021) (0)
- Projecting land-ice loss in the 21st century and beyond: a research strategy (2011) (0)
- Global glacier mass losses 1961–2004 and mass balance sensitivities assessed from modelling and gridded climate data (2008) (0)
- The Cold Surface Layer of Kahiltna Glacier, Central Alaska Range (2011) (0)
- A new working group on the Randolph Glacier Inventory (RGI) and its role in future glacier monitoring (2020) (0)
- A new inventory of all Alaska glaciers (2012) (0)
- Changes to Glacier Runoff and Downstream Effects on the Susitna Basin, Alaska Over the Twenty-First Century (2015) (0)
- Dynamic Downscaling of CMIP5 Climate Scenarios for Alaska Region (2012) (0)
- Downstream impacts of climate induced glacier change in High Mountain Asia (2017) (0)
- Global glacier mass losses and mass balance sensitivities assessed from observations and gridded climate data. (2008) (0)
- Response of glacier mass balance and discharge to future climate change, upper Susitna basin, Alaska (2013) (0)
- Long-term linkages between glaciers, permafrost and hydrology at two glacierized watersheds in Alaska (2015) (0)
- glacier (2020) (0)
- Future glacier runoff at the global scale (2016) (0)
- Progress and Challenges for GLIMS 2: Merging the GLIMS and RGI Glacier Databases (2014) (0)
- Global glacier mass balance modeling – Where to go from here? (2014) (0)
- Quantifying Parameter Uncertainty in a Glacier Evolution Model of High Mountain Asia with a Markov Chain Monte Carlo Method (2018) (0)
- The impact of debris cover and glacier dynamics on projections of glacier mass change in High Mountain Asia (2019) (0)
- Simplistic models of a tidewater glacier, with application to Columbia Glacier, Alaska (2010) (0)
- Range of 21st century ice mass changes in the Filchner-Ronne region of Antarctica (2023) (0)
- Glaciers in watershed and global hydrology (2008) (0)
- Large Contribution of Antarctic 'Small' Glaciers to Sea-level Rise (2007) (0)
- The future of glaciers in High Mountain Asia (2018) (0)
- GlacierMIP3 global glacier mass change equilibration experiments - rationale and experimental design (2021) (0)
- Climate reconstruction of the Little Ice Age maximum extent of the tropical Zongo Glacier using a distributed energy balance model (2022) (0)
- Response of Glacier Melt and Discharge to Future Climate Change, Susitna Basin, Alaska (2014) (0)
- Local-scale spatial variability in firn properties in Southwest Greenland (2022) (0)
- Glaciers and climate of the Upper Susitna basin, Alaska (2019) (0)
- Estimating Future Flood Frequency and Magnitude in Basins Affected by Glacier Wastage (2014) (0)
- Cryospheric connections - Tracking the fate of glacier and snow melt water in High Mountain Asia: Implications for regional food security (2018) (0)
- How will glaciers affect runoff in Alaska (2012) (0)
- IACS Working Group on the Randolph Glacier Inventory (RGI) and its role in future glacier monitoring and GLIMS (2020) (0)
- Past and future mass changes of all High Asian Mountain glaciers (2011) (0)
- Contents for Volume 34, 2002 (2002) (0)
- Peak water from glaciers: advances and challenges in a global perspective (2014) (0)
- Antarctic periphery glacier mass changes: uncertainty of 21st century projections (2012) (0)
- Large scatter and multidecadal fluctuations in the 20th century mass loss of 30 Alpine glaciers (2010) (0)
- How do glacier inventory data aid global glacier assessments and projections (2017) (0)
- Surface velocity variations of glaciers on Kenai Peninsula, Alaska, 2014-2019 (2021) (0)
- Radić receives Cryosphere Young Investigator Award: Citation (2012) (0)
- Mass Balance of Storglaciären (2008) (0)
- Modelling Glacier Mass Balance on Regional and Global Scales: How Precise Can the Models Be? (2014) (0)
- The Significance of Convection in Supraglacial Debris Revealed Through Novel Analysis of Thermistor Profiles (2022) (0)
- Improving degree-day melt modeling of the Greenland ice sheet in the Parallel Ice Sheet Model, PISM : abstract. (2010) (0)
- Alaska tidewater glacier velocities and frontal ablation, 1985-2012 (2013) (0)
- Interactive comment on “On the use of incoming longwave radiation parameterizations in a glacier environment” by J. Sedlar and R. Hock (2009) (0)
- Meltwater Refreezing in Southwest Greenland Ice Sheet Firn: Spatial Variability and Temporal Change Between 1989 and 2017 (2018) (0)
- Flow Modeling of Juneau Icefield (2014) (0)
- Regional Modeling of Outlet Glaciers Using the Parallel Ice Sheet Model (PISM) (2010) (0)
- Quantifying Glacier Mass Change in High Mountain Asia through 2100 using a New Open-source Glacier Evolution Model (2018) (0)
- What is the global glacier ice volume outside the ice sheets? (2023) (0)
- Improving the resolution of a global-scale elevation dependent surface mass balance model using point mass balance observations: an application of Alaskan glaciers (2013) (0)
- A new working group on the Regional Assessments of Glacier MAss Change (RAGMAC) (2020) (0)
- THE CONTRIBUTION FROM GLACIERS TO SEA LEVEL RISE - assessing the present state of the art (2011) (0)
- The Randolph Glacier Inventory: Applications and future needs (2015) (0)
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What Schools Are Affiliated With Regine Hock?
Regine Hock is affiliated with the following schools: