Publications
86
Citations
1,557
Est. group size
~1
Recurring co-author estimate
Active years
25
Publishing since 2002
This publication record appears to combine work from multiple distinct researchers sharing the name Samuel Park, spanning nuclear waste repository engineering, urban flood and heat resilience modeling, materials corrosion science, and biblical studies. Within the engineering-focused strand, the work centers on computational modeling of urban infrastructure resilience (flooding, heat, cooling) and on thermal and corrosion analysis relevant to nuclear spent fuel storage and disposal systems. Prospective students should verify with the institution which specific research area and lab this name corresponds to, as the topics listed are not consistent with a single coherent research program.
Publication output has grown noticeably over the last decade, rising from a handful of papers per year before 2023 to 9-10 per year in 2024-2025.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Development of MOOSE-based Phase Field Model for Pitting Corrosion of SS304: Numerical Verification and Experimental Validation
SSRN Electronic Journal · 2026
- Development of a Predictive Model for Urban Cooling Blue Infrastructure using Integrated CFD and U-NET CNN
E3S Web of Conferences · 2026
- Development of a Predictive Model for Urban Cooling Blue Infrastructure using Integrated CFD and U-NET CNN
Springer Link (Chiba Institute of Technology) · 2026
- The Redefinition of Family and an Alternative Vision of Family in Mark 3:20-35
Korean New Testament Studies · 2026
- Analyzing urban thermal comfort changes due to modifications in urban material properties in a large-scale new town: A CFD study based on the universal thermal climate index (UTCI)
Sustainable Cities and Society · 2025
- Mitigating urban heat island effects through leadership in energy and environmental design evaluation and blue-green infrastructure: Applying the hazard capacity factor design model for urban thermal resilience
Sustainable Cities and Society · 2025
- Urban cold stress assessment using computational fluid dynamics and universal thermal climate index: A case study of Gwacheon City, South Korea
Sustainable Cities and Society · 2025
- Thermal-hydraulic analysis of sequential disposal scenarios in a spent nuclear fuel repository
Progress in Nuclear Energy · 2025
- In‐Situ Electrochemical Investigation of Pitting and Interphase Galvanic Corrosion of Duplex Stainless Steels via Scanning Electrochemical Microscopy for Dry Storage Canisters of Spent Nuclear Fuels
International Journal of Energy Research · 2025
- An experimental and modeling analysis of copper corrosion potentials for pitting susceptibility assessment in deep geological repositories
Progress in Nuclear Energy · 2025
- Enhancing Flood Resilience of Urban Drainage Networks by Identifying Blind-Spots in Logically Interconnected Systems
2025
- Thermal performance evaluation of dry storage cask using hybrid 3D and 2D models under normal and fire exposure conditions
Nuclear Engineering and Technology · 2025
- Thermal evaluation and area reduction of deep geological repository using multi-batch disposal strategy and uncertainty analysis of buffer thermal conductivity
Progress in Nuclear Energy · 2025
- Nano-to-micro aerosol contaminants emissions from dismantling of nuclear reactor pressure vessel using mock-up experiments
Nuclear Engineering and Technology · 2025
- Participatory Framework for Urban Pluvial Flood Modeling in the Digital Twin Era
Sustainable Cities and Society · 2024
- Sustainable Cities and Society×5
- Nuclear Engineering and Technology×4
- Progress in Nuclear Energy×3
- INDIGO (University of Illinois at Chicago)×3
- Figshare×3
- Warren R. Dunn
Medicine · The Ohio State University
- Tal S. David
Medicine · The Ohio State University
- Robert A. Siston
Medicine · The Ohio State University
- I Gergely
Medicine · Indiana University
- Andrew Phillips
Medicine · The Ohio State University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 20, 2026.
Claim or correct this profile