Hans Bihs is a Professor in the Department of Civil and Environmental Engineering, Faculty of Engineering. His research focuses on computational fluid dynamics (CFD), wave hydrodynamics, and wave-structure interaction using the open-source framework REEF3D. Key Research Areas: CFD simulations, wave modeling, floating body dynamics, ocean wave energy, aquaculture hydrodynamics, sediment transport, and high-performance computing. Projects: ERC Consolidator Grant PARTRES (2023-2028), EEA Grants Portugal SurfWave (2023), NFR KPN IPIRIS (2021-2025), EEA Baltic SolidShore (2021-2024), NTNU's MAPLE (2022-2025), and DigiCoast (2021-2024). Email: hans.bihs@ntnu.no His recent publications (2025-2020) analyze fluid-structure interaction, ship-induced waves, floating offshore wind turbines, submerged vegetation, and coastal structures using advanced CFD techniques. Topics include wave hydrodynamics, turbulence, and numerical modeling for marine and aquaculture systems.
Mike Wood is an Assistant Professor at the Moss Landing Marine Laboratories (MLML) with a joint appointment in the Department of Computer Science at San José State University (SJSU). His research focuses on ice-ocean-biology interactions and sea level rise dynamics related to the Greenland Ice Sheet, utilizing satellite observations, numerical ocean models, and in situ measurements. He leads the Computational Oceanography lab at MLML. Research Themes : Ice-ocean interactions, climate change impacts on polar regions, satellite remote sensing, and computational modeling. Academic Affiliation : MLML (Computational Oceanography) and SJSU Computer Science Department. Methodologies : Numerical modeling, satellite data analysis, and field observations in Greenlandic fjords. His recent publications reveal a focus on Greenland glacial meltwater dynamics, fjord-scale oceanography, and bathymetric mapping. Mike enjoys surfing and climbing when not engaged in academic work.
Dr. Michael Philben is an Associate Professor of Chemistry and Geological and Environmental Science at Hope College, where he joined in 2019 after postdoctoral positions at Memorial University (Canada) and Oak Ridge National Laboratory. His research focuses on climate-carbon cycle feedbacks in vulnerable ecosystems, particularly peatlands and Arctic tundra. His educational background includes a Ph.D. in Marine Science from the University of South Carolina (2014) and a B.A. in Earth and Planetary Science from Northwestern University (2010). At Hope College, he teaches Environmental Science courses and contributes to the Day1: Watershed program. Philben's research centers on carbon and nitrogen cycling in ecosystems containing vast organic carbon stocks. He leads an NSF CAREER-funded project investigating Michigan peat bogs as natural laboratories for climate change impacts, using a north-south transect from Portage to Newberry as a 'space-for-time' experiment. His work examines methane emissions, nitrogen availability, and net carbon balance under warming conditions, with particular attention to Sphagnum-dominated peatlands at the southern edge of their climate range. His 15 most recent publications (2020-2024) reveal a strong focus on peatland biogeochemistry, with increasing emphasis on methane dynamics, nitrogen cycling, and the role of specific biochemical compounds like sphagnan. The research combines field measurements across climate gradients with laboratory experiments, often involving Hope College students in all project phases. NSF CAREER Award for peatland climate research Philben actively mentors undergraduate researchers through the Philben Research Group, which investigates how warming impacts carbon cycling in peatlands. His projects involve interdisciplinary work spanning analytical chemistry, geology, and ecology. The group maintains a network of seven Michigan peat bog field sites and collaborates on international research, including Arctic studies in Alaska and Canada. His laboratory focuses on using analytical chemistry tools to predict climate-carbon cycle feedbacks, with particular attention to southern Michigan peatlands as sentinels for larger northern peatland complexes. The research group employs techniques including greenhouse gas flux measurements, radiometric dating of peat cores, and analysis of organic matter composition.
Thomas Lippmann is a Professor and Director of the Center of Ocean Engineering within the Department of Earth Sciences at the University of New Hampshire (UNH), part of the College of Engineering and Physical Sciences. He holds dual affiliations with the Ocean Engineering program and retains a research associate position at Scripps Institution of Oceanography’s Integrated Oceanography Division. His career includes roles as a Research Oceanographer at Scripps (1995–1999), Research Scientist at Ohio State University (1999–2008), and a Postdoctoral scholar at the Naval Postgraduate School (1992–1995). Dr. Lippmann earned a BA in Mathematics and Biology from Linfield College (1985), followed by an MS (1989) and PhD (1992) in Bio Oceanography from Oregon State University. His research focuses on shallow water oceanography, hydrography, and bathymetric evolution in coastal waters, combining experimental fieldwork, theoretical analysis, and numerical modeling. Key areas include nearshore processes, inlet dynamics, sediment transport pathways, and effects of sea level rise on estuaries. He has conducted 14 field experiments and accumulated over 18 months of fieldwork experience. His teaching portfolio includes advanced courses such as Beaches and Coasts , Ocean Measurements Lab , and Spectral Analysis of Geophysical Data , reflecting his expertise in nearshore hydrodynamics and coastal engineering. He also advises doctoral research and oversees special programs like Advanced Research Experience . Advising and grants: While no specific grant details are provided, his extensive fieldwork and collaborative projects suggest significant grant-funded research. His academic leadership includes directing UNH’s Ocean Engineering Center and organizing interdisciplinary programs like CLOSES-GAP. No scientific awards are explicitly mentioned in the texts. Labs and teams: Active in the Integrated Oceanography Division (SIO) and the Byrd Polar Research Center. Collaborates with institutions like Ohio State University, Naval Postgraduate School, and the University of New Hampshire’s Center for Coastal and Ocean Mapping. His work integrates with the Great Bay Estuary’s tidal energy test site and remote sensing projects.
Dr. Edoardo Bertone is a Senior Lecturer at Griffith University's School of Engineering and Built Environment - Architecture and Design. He holds a PhD in Water Resources Engineering from Griffith University and Bachelor/Master degrees in Civil Engineering from the Polytechnic University of Turin. His research focuses on data-driven modeling, Bayesian Networks, and System Dynamics applied to water resources management, climate change adaptation, and the water-energy nexus. He is affiliated with Griffith's Cities Research Institute and Australian Rivers Institute, collaborating on projects with water utilities, governments, and private entities. Dr. Bertone has received awards such as the 2024 PVC Science Excellence in Teaching and the JSPS Fellowship (2022). He supervises doctoral and master's students in areas like water quality management and climate change impacts. Education: PhD in Engineering (Griffith University, 2015); MEng and BEng in Civil Engineering (Polytechnic University of Turin, 2009-2011). Research Interests: Water quality modeling, drinking water optimization, data-driven prediction, climate change adaptation, and sustainable development goals. He leads over 25 funded research projects, including initiatives on reservoir water quality management in Thailand, real-time nutrient monitoring, and cyanobacteria bloom modeling. Dr. Bertone’s work integrates advanced sensors, machine learning, and Bayesian networks to address environmental challenges. Awards: Listing includes PVC Excellence Awards (2024, 2017), JSPS Fellowship, and recognition as a Rising Star in Queensland Science (2015). Grants & Supervision: Principal supervisor for 10+ doctoral candidates and collaborator on projects funded by Seqwater, CSIRO, and the Ian Potter Foundation. Key grants include $745k for biofertilizer combatting eutrophication and $269k for coagulation optimization models. Dr. Bertone’s contributions extend to urban sustainability, co-editing the book *SeaCities: Urban Tactics for Sea-Level Rise* and developing frameworks for integrating SDGs into architectural education.
Jack Puleo is a Professor and Chair in the Department of Civil and Environmental Engineering at the University of Delaware (UD), and a core faculty member of the Center for Applied Coastal Research (CACR). He holds a Ph.D. from the University of Florida, a Master’s from Oregon State University, and a Bachelor’s from Humboldt State University. His research focuses on coastal hydrodynamics, sediment transport, and nature-based solutions for coastal resilience. He has served as Associate Chair and Director of CACR, and was a Fulbright Scholar and Visiting Professor at Plymouth University (2011-2012). Research Interests: Small-scale hydrodynamic processes and sediment transport in coastal zones Remote sensing and sensor networks for coastal monitoring Nature-based solutions for coastal protection Munitions mobility in nearshore environments Climate change impacts on coastal flooding Awards and Honors: NSF CAREER Award (2007) ASCE Teaching Awards University of Delaware Teaching Awards (twice) Chi Epsilon Advising Award ASBPA Robert G. Dean Award German DAAD Scholarship Labs and Collaborations: Core member of the Center for Applied Coastal Research (CACR), collaborating on projects such as UXO mobility studies, coastal flooding modeling, and military infrastructure resilience. Active in interdisciplinary work with the Naval Research Laboratory and joint bases like Langley-Eustis.
Daniel Farinotti is a Professor of Glaciology at the Department of Civil, Environmental and Geomatic Engineering at ETH Zurich and at the Swiss Federal Institute for Forest, Snow and Landscape Research (WSL). His work focuses on understanding glacier evolution and its impacts on water resources across mountainous regions globally. Dr. Farinotti's research interests center on glaciological modeling and its applications to water resource management. His expertise includes estimating glacier ice thickness from surface properties, long-term modeling of glacier mass changes, quantifying runoff contributions from glaciated catchments, and implications for water management in high mountain areas. His research integrates field observations, remote sensing data, and numerical modeling to address critical questions about glacier response to climate change. Dr. Farinotti's scientific achievements have been recognized with prestigious awards including the 2017 Nature Research Award for Outstanding Achievements in Review and the 2013 Award for Outstanding Contributions to Review from the Journal of Geophysical Research - Earth Surface. His publications demonstrate a consistent pattern of high-impact research across glaciology, hydrology, and climate science, with particular emphasis on the interactions between glacier dynamics and water resources. As a principal investigator, Dr. Farinotti has secured significant research funding from organizations including the Swiss National Foundation and German Federal Foreign Office. His work often involves international collaborations across multiple institutions, reflecting the global nature of glacier research and its implications for water security. He maintains active involvement in major scientific initiatives focused on glacier monitoring and climate change impacts. Dr. Farinotti leads the Glaciology research group at ETH Zurich's Laboratory of Hydraulics, Hydrology and Glaciology (VAW), which conducts fieldwork across multiple mountain ranges globally. The group employs advanced techniques including geophysical surveys, remote sensing, and numerical modeling to investigate glacier dynamics and their hydrological impacts.
Paola Passalacqua is a Professor of Environmental and Water Resources Engineering and Earth and Planetary Sciences at the University of Texas at Austin, holding the L.B. (Preach) Meaders Professorship in Engineering. She leads research at the intersection of water resources engineering, geomorphology, and hydrology, focusing on river networks, coastal restoration, and remote sensing applications. Her work addresses delta dynamics, floodplain connectivity, and community resilience to compound hazards. Dr. Passalacqua earned a PhD in Civil Engineering (2009) and MS in Water Resources from the University of Minnesota, and dual MS/BS in Environmental Engineering from the University of Genoa (2002). Her technical expertise includes hydrological connectivity, network theory, and morphodynamic modeling using LiDAR and satellite data. Research interests emphasize river delta structure/dynamics, floodplain sedimentation, and translating science into community adaptation strategies. She co-developed tools like GeoFlood for large-scale flood mapping and the pyDeltaRCM numerical delta model. Her interdisciplinary approach integrates socio-technical vulnerability analysis with environmental systems. Awards include the endowed Meaders Professorship. Current projects involve coastal Alaska infrastructure resilience, SWOT satellite data applications, and delta sustainability in the Anthropocene. She leads the Passalacqua Research Group, engaging in citizen science through initiatives like UTBiome.
Dr. Chiara Bertelli is a Lecturer in Biosciences at Swansea University within the Faculty of Science and Engineering, School of Biosciences, Geography and Physics. With over 15 years of experience in coastal and marine ecological surveys, she specializes in seagrass ecology and restoration, marine conservation, and habitat suitability modeling. Dr. Bertelli has extensive field experience including boat-based surveys, SCUBA diving, and snorkeling in both temperate and tropical environments. She is currently completing her PhD part-time focusing on environmental drivers of change in seagrass meadows in the UK and Brazil. Her educational background includes advanced training in marine biology with specialization in ecological survey techniques and data analysis using R and Primer. Her primary research focuses on seagrass ecology as nature-based solutions for climate change. She develops habitat suitability models to inform optimal locations for seagrass restoration, with applications in carbon sequestration (blue carbon) and marine biodiversity enhancement. Her work aligns with UN Sustainable Development Goals 13 (Climate Action) and 14 (Life Below Water). Analysis of Dr. Bertelli's recent publications (2020-2025) reveals a strong emphasis on practical applications of seagrass research to inform restoration efforts. Her work spans habitat suitability modeling, environmental stress responses, nutrient dynamics, and decision-support tool development. A significant portion addresses seed-based restoration techniques, ecosystem services, and the socio-ecological dimensions of marine conservation. Dr. Bertelli actively collaborates with external organizations including Project Seagrass, Sky Ocean Rescue, WWF, Natural England, and the National Oceanographic Centre. Her current ReSOW project aims to develop the CEEDS (Coastal Ecosystem Enhancement Decision Support) tool, an open-source platform to guide seagrass restoration practitioners. As an educator, Dr. Bertelli teaches several field-based marine biology courses including BIO260 Marine Biology Field Course, BIO327 Tropical Marine Ecology Field Course, and BIO346 Professional Skills in Marine Biology. Her teaching emphasizes practical, field-based learning and professional skill development for marine biologists, with a focus on survey techniques, data analysis, and environmental impact assessment. Dr. Bertelli is actively involved in research teams focused on marine ecosystem restoration and coastal management. Her work bridges academic research with practical conservation applications, working closely with government agencies, NGOs, and international research partners to translate scientific findings into actionable conservation strategies.
Bob Kopp is a Professor at Rutgers University's Department of Earth & Planetary Sciences and Co-Director of the University Office of Climate Action. He leads the NSF-funded Megalopolitan Coastal Transformation Hub (MACH), focusing on climate risk management in the Northeast U.S. and advancing understanding of coastal climate interactions. He co-directs the Climate Impact Lab, a multidisciplinary collaboration assessing climate economic risks. His research spans climate uncertainty, sea-level dynamics, and climate policy, with leadership roles in IPCC assessments and U.S. National Climate Assessments. Education: Ph.D. in Geobiology from Caltech (2000s) and B.S. in Geophysical Sciences from the University of Chicago. Prior to Rutgers, he served as AAAS Science & Technology Policy Fellow at the U.S. Department of Energy and postdoctoral researcher at Princeton University. Affiliations include Rutgers Climate Institute, Energy Institute, and graduate programs in Atmospheric Sciences, Geological Sciences, Oceanography, Statistics, and Planning & Public Policy. Research interests emphasize climate change impacts, sea-level projections, and policy integration. Key contributions include frameworks for probabilistic sea-level assessments (e.g., PaleoSTeHM) and adaptive strategies for coastal resilience. His work bridges scientific analysis with actionable policy, emphasizing stakeholder engagement in megaregions like the New York–Philadelphia urban corridor. Grants include NSF-funded projects totaling millions, supporting interdisciplinary climate solutions. Awards: Not explicitly listed, but recognized for leadership in IPCC and U.S. climate reports. Grants: Includes NSF support for MACH and Climate Impact Lab. Labs/Teams: Directs MACH, Climate Impact Lab, and collaborates with Rutgers' EOAS and Climate Institute.
Linda Bailey Hayden is a distinguished Professor and Associate Dean of Mathematics and Computer Science at Elizabeth City State University (ECSU), where she has made significant contributions to mathematics education and geoscience applications since 1980. Originally from Portsmouth, Virginia, she overcame segregation barriers to pursue her academic career, earning degrees from Virginia State University, University of Cincinnati, Old Dominion University, and American University. At ECSU, she founded the Center of Excellence in Remote Sensing Education and Research to increase minority participation in environmental science. Dr. Hayden's research interests span mathematics education, applications of mathematics in geoscience, remote sensing technologies, and environmental science. Her work uniquely bridges theoretical mathematics with practical applications in climate science, ice sheet monitoring, water quality assessment, and Antarctic research. She has pioneered educational approaches that connect mathematics with real-world environmental challenges, particularly through NASA-related programs and the GLOBE initiative. Her publication record reveals a strong focus on mentorship, educational outreach, and interdisciplinary research connecting mathematics with environmental science. The most recent publications demonstrate her ongoing commitment to developing innovative approaches for engaging students in scientific research, particularly through hackathons, remote sensing applications, and climate change education. Her work consistently emphasizes increasing participation of underrepresented groups in STEM fields. Presidential Award for Excellence in Science, Mathematics, and Engineering Mentoring (2003) Emerald Honors for Educational Leadership from US Black Engineer magazine Mathematically Gifted & Black Black History Month 2017 Honoree An Antarctic ice shelf was named after her institution by the Advisory Committee on Antarctic Names Dr. Hayden has dedicated her career to mentoring minorities and women in STEM fields through various programs including the Nurturing ECSU Research Talent (NERT) initiative, the Home-Institution Support Program, and numerous NASA-funded educational projects. Her grant history reflects strong partnerships with federal agencies to offer interdisciplinary training in remote sensing and environmental science. She has established multiple educational partnerships focused on enhancing undergraduate involvement in research, particularly for underrepresented students. As founder of the Center of Excellence in Remote Sensing Education and Research at ECSU, she has built a significant infrastructure for geoscience research and education, developing cyberinfrastructure for remote sensing of ice sheets and creating numerous educational programs from middle school through undergraduate levels. Her work has connected ECSU with major research institutions and federal agencies, establishing the university as a hub for remote sensing education in minority-serving institutions.
Annette R. Grilli is a Research Professor in the Department of Ocean Engineering at the University of Rhode Island , focusing on ocean renewable energy and coastal hazard assessment. Her work integrates numerical modeling and statistical analysis to study extreme events like tsunamis and storms. Ph.D. in Climatology, University of Delaware (2000) M.S. in Oceanography, University of Liege (1984) B.S. in Geography & Education, University of Liege (1983) Her research spans offshore wind farm siting optimization , tsunami propagation modeling , and coastal erosion dynamics . Recent publications highlight applications of phase-resolving wave models and machine learning to coastal resilience and marine renewable energy systems. Grants include collaborations with NOAA , Department of Energy , and NSF , focusing on coastal hazard visualization , tsunami detection algorithms , and design elevation mapping under climate change scenarios. She contributes to digitalCommons@URI with over 100 publications in Ocean Engineering and Civil Engineering domains.
Dr. Jonathan T. Overpeck is the Samuel A. Graham Dean of the School for Environment and Sustainability (SEAS) at the University of Michigan, where he also holds the William B. Stapp Collegiate Professorship of Environmental Education. He is a Professor of both Climate and Space Sciences and Engineering, and Earth and Environmental Sciences, with a career spanning climate-vegetation interactions, abrupt climate change, monsoon dynamics, drought hydroclimate, sea level rise research, and interdisciplinary climate assessment. Overpeck has published over 230 works cited 60,000+ times, emphasizing public education, university-community partnerships for climate solutions, and environmental justice initiatives. PhD in Geological Sciences, Brown University MSc in Geological Sciences, Brown University BA in Geology (Honors), Hamilton College His research spans climate-biosphere interactions , climate variability and abrupt change , monsoon dynamics , drought and hydroclimate , sea level rise , climate law , and climate adaptation . Overpeck pioneered studies on megadrought terminology, temperature-driven drought intensification, and the aridification of North America. His work with the NOAA Paleoclimate Program and World Data Center for Paleoclimatology established foundational understanding of climate dynamics through annually-laminated sediment analysis in the Cariaco Basin. Overpeck's 2020-2024 research includes climate aridification , hydroclimate scaling mismatches , and temperature-precipitation interactions , with recent focus on Antarctic heatwaves, Mississippi River Basin changes, and corporate climate accountability. His article trends show concentration in climate attribution , hydrological extremes , paleoclimate modeling , and climate policy analysis . Scientific Honors: 2024 U.S. National Academy of Sciences 2015 American Geophysical Union Fellow 2009 AAAS Fellow 2007 Nobel Peace Prize contributor (IPCC) 2005 Guggenheim Fellowship Multiple U.S. Department of Commerce awards Overpeck has led or participated in significant climate adaptation projects , including NSF grants totaling $5.1M+ for Southwest Hydroclimatic Extremes (2017-2020), Amazon Drought Impacts (2014-2018), and Quantifying Drought Risk (2013-2018). He serves on the Colorado River Research Group (2014-present) and advises Climate Communication (2011-present). Current initiatives include Great Lakes University positioning, Michigan's climate resilience planning, and the Audacious Water podcast series examining Mississippi River Basin transformations. Overpeck actively contributes to climate policy discourse , advocating for science-informed decision-making and stakeholder collaboration across government, military, and corporate sectors.
Deepak R Mishra is the Merle C. Prunty, Jr. Professor of Geography at the University of Georgia, where he serves as Professor and Head of the Department of Geography. He directs both the Center for Geospatial Research (CGR) and the UGA Small Satellite Research Laboratory (SSRL), demonstrating leadership across multiple significant research initiatives. His academic career spans geospatial science, remote sensing applications, and environmental monitoring with particular focus on coastal ecosystems. Dr. Mishra earned his PhD in Natural Resources from the University of Nebraska, Lincoln in 2006 and completed his M. Tech in Civil Engineering at the Indian Institute of Technology, Kanpur in 2002. His research focuses on combining field-based remote sensing with satellite technologies to monitor and study coastal and inland water resources. His work addresses critical environmental challenges including harmful algal blooms, salt marsh conservation, carbon sequestration in tidal wetlands, and sea level rise impacts. Dr. Mishra's research portfolio reveals strong trends in geospatial analytics for environmental monitoring, with increasing integration of artificial intelligence and small satellite technologies. His recent publications show a growing emphasis on climate change impacts on coastal ecosystems, particularly salt marsh vulnerability and carbon sequestration capacity. The work demonstrates innovative applications of remote sensing for tracking cyanobacterial blooms and developing early warning systems through platforms like CyanoTRACKER. Outstanding Service Award, SEDAAG 2019 Creative Research Medal, University of Georgia, 2017 Best Poster Award, TROPMET 2016, India Article ranked #4 in Altmetric Attention Score in Nature Climate Change 2016 Mississippi State University Faculty Research Award (2012) GRI Academic Faculty of the year (2011) Dr. Mishra has secured substantial research funding, including a $7.5 million NSF LTER grant and a $4.7 million Army Research Lab grant for autonomous navigation systems. His lab actively mentors graduate students including Tyler Lynn, Lishen Mao, and Chintan Maniyar, who contribute to projects spanning coastal monitoring, small satellite development, and AI applications. The Small Satellite Research Laboratory recently achieved a historic milestone with the launch of SPOC satellite to the International Space Station, marking UGA's first satellite deployment.
Dr. Juan Adolfo Chica Ruiz is a Professor at the University of Cadiz, Spain, affiliated with the Department of History, Geography and Philosophy, and the Marine Research Institute (INMAR). His research focuses on coastal planning and management within the HUM117 Research Group on Coastal Planning and Management. With a career spanning over 15 years, Dr. Chica Ruiz has established himself as a leading expert in coastal geography and environmental management. He earned his PhD from the University of Seville in 2005 with a thesis titled "Conservation and development in the Spanish and Andalusian coast planning and management of protected areas," supervised by Dr. Juan Manuel Barragán Muñoz. This foundational work set the stage for his subsequent research on integrated coastal zone management. Dr. Chica Ruiz specializes in Urban Geography, Climate Change, Coastal Management, and Integrated Coastal Zone Management. His research addresses critical issues of coastal vulnerability, socio-ecological conflicts, and sustainable tourism development. He has conducted significant fieldwork in diverse geographical contexts including the Galapagos Islands, Chiloé (Chile), the Mediterranean Sea, and the Bay of Cadiz Natural Park in Spain. His work often examines the intersection between cultural heritage and environmental management, particularly in coastal settings. His recent publications (2020-2025) demonstrate a strong focus on climate change adaptation in coastal areas, marine protected area governance, and the socio-economic dimensions of coastal tourism. He has developed methodological approaches for evaluating coastal scenic value, assessing ecosystem services, and creating indices for heritage tourism potential. His research bridges theoretical frameworks with practical applications for coastal zone management. Dr. Chica Ruiz actively contributes to multidisciplinary research projects, including the European H2020 InnovaConcrete project focused on preserving 20th century concrete heritage. His work with the HUM117 research group has produced significant insights into participatory governance models for protected areas and the impacts of climate change on coastal communities.