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Christopher Sampson
Co-founder and CTO at Fathom; spends time thinking about flooding, climate and risk
Christopher Sampson is a prominent figure in the field of hydrology and flood modeling, serving as the Chief Technology Officer, co-founder, and director of Fathom, a global specialist in flood risk intelligence.123
Background and Education
Dr. Christopher Sampson co-founded Fathom in 2013 while pursuing his PhD in Physical Geography at the University of Bristol.1 His academic background has significantly contributed to his expertise in hydrology and flood modeling.
Role at Fathom
As the CTO and co-founder of Fathom, Dr. Sampson leads the company's research and model development efforts.3 His work focuses on advancing flood modeling techniques and applying them to real-world scenarios.
Research and Contributions
Dr. Sampson has made significant contributions to the field of flood modeling and risk assessment:
- He has been involved in developing a 30 m global flood inundation model for various climate scenarios.1
- His research includes work on climate-conditioned catastrophe risk models for UK flooding.1
- He has contributed to studies on social inequalities in climate change-attributed impacts, such as those from Hurricane Harvey.1
- Dr. Sampson has also worked on creating a 30 m global map of elevation with forests and buildings removed, which is crucial for accurate flood modeling.1
Recognition and Impact
Christopher Sampson's work has garnered significant attention in the academic and professional spheres:
- He is cited by 5,967 other researchers, indicating the impact of his work in the fields of hydrology, flooding, risk assessment, and catastrophe modeling.4
- Fathom, under his leadership, has been recognized for its innovative approaches, with Dr. Sampson participating in discussions about pioneering research in flood modeling.5
Dr. Christopher Sampson's expertise and leadership have positioned Fathom as a leading company in flood risk intelligence, providing valuable services to various sectors concerned with flood-related risks and impacts.2