Sicheng Wang
Engineering · Purdue University West Lafayette
Publications
31
Citations
159
Est. group size
~1
Recurring co-author estimate
Active years
14
Publishing since 2013
This body of work centers on nuclear reactor core simulation, particularly pin-by-pin modeling of pressurized water reactors (PWRs) using the NECP-Bamboo code, including thermal-hydraulic coupling, cross-section corrections, and numerical solvers. The publication record also includes more disparate topics such as thermoelectric materials, hydraulic fracturing, and geological fluid dynamics, suggesting either a broad set of collaborations or a name that spans multiple distinct research efforts. Prospective students should note the bibliographic record appears to mix several different research threads rather than a single tightly focused specialty.
Publication output has grown markedly over the last decade, rising from little to no output before 2020 to a peak of 9 publications in 2024, though 2025 shows a temporary drop before an apparent rebound in 2026.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- A monolithically integrated dual sub-cells GaSb/GaInAsSb TPV cell with electrically decoupled output channels
Physica Scripta · 2026
- PIV study on subchannel cross-flow characteristics in 19-pin wire-wrapped bundle channels
Nuclear Engineering and Design · 2026
- Coupling-informed operator inference: Structure-preserving reduced-order modeling for multi-physics equations
Journal of Computational Physics · 2026
- Numerical Investigation of Factors Influencing Multiple Hydraulic Fracture Propagation from Directional Long Boreholes in Coal Seam Roofs
Applied Sciences · 2025
- Boosting Thermoelectric Performance of PbBi<sub>2</sub>Te<sub>4</sub> via Reduced Carrier Scattering and Intensified Phonon Scattering
Small · 2024
- An embedded coupling design and development of NECP-Bamboo2.0 and START for PWR whole-core pin-by-pin analysis
Annals of Nuclear Energy · 2024
- Verifications and applications of NECP-Bamboo2.0 for PWR whole-core multi-cycle pin-by-pin simulation
Progress in Nuclear Energy · 2024
- Anderson acceleration for PWR whole-core pin-by-pin Nu-TH coupling calculation in NECP-Bamboo2.0
Nuclear Engineering and Design · 2024
- The role of Markov chain in Monte Carlo simulation
Theoretical and Natural Science · 2024
- A simplified SP3 NEM solver within a unified formulation for pin-by-pin core multi-group calculations
Nuclear Engineering and Technology · 2024
- Improvement of the Thermal-Hydraulic Feedback Model in Bamboo-Core From Single-Channel to Sub-Channel
2024
- Development and Verification of a Pin-by-Pin NEM-SP3 Solver
Transactions of the American Nuclear Society · 2024
- Revealing the Mechanisms of Metal Adsorption by Bauxite Residue
Industrial & Engineering Chemistry Research · 2023
- Automatic modeling of PWR-core in the two-step reactor-core physics analysis code NECP-Bamboo
Nuclear Engineering and Design · 2023
- A cross-section correction model for history effect treatment in pin-by-pin code NECP-Bamboo2.0
Annals of Nuclear Energy · 2023
- Nuclear Engineering and Design×5
- Annals of Nuclear Energy×4
- Progress in Nuclear Energy×2
- The Cambridge Structural Database×2
- Small×1
- Muhammad Rizki Oktavian
Engineering · Purdue University West Lafayette
- Andrew Maier
Engineering · The Ohio State University
- Hussein Khalil
Engineering · Purdue University West Lafayette
- Dean Wang
Engineering · The Ohio State University
- Spencer Christian
Engineering · 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