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Paul Hurley
Paul Hurley
Graduate Research Assistant, Virginia Tech
Verified email at vt.edu
Title
Cited by
Cited by
Year
Physics-informed machine learning-aided framework for prediction of minimum film boiling temperature
KM Kim, P Hurley, JP Duarte
International Journal of Heat and Mass Transfer 191, 122839, 2022
222022
High-resolution prediction of quenching behavior using machine learning based on optical fiber temperature measurement
KM Kim, P Hurley, JP Duarte
International Journal of Heat and Mass Transfer 184, 122338, 2022
112022
Implementation of Fiber Optic Temperature Sensors in Quenching Heat Transfer Analysis
P Hurley, JP Duarte
Applied Thermal Engineering, 117257, 2021
112021
Application of Optical Fiber Sensors for Quenching Temperature Measurement
P Hurley
Virginia Polytechnic Institute and State University, 2020
82020
Prediction of Minimum Film Boiling Temperature using a Physics-Informed Machine Learning-Aided Framework
KM Kim, P Hurley, JP Duarte
22022
Fiber Optic Sensing Application in Quenching Temperature Measurement
P Hurley, JP Duarte
Proc. 2019 ANS Winter Meeting, Washington, DC,(Nov., 2019), 2019
22019
Modeling of quenching temperature with the effects of axial conduction resulting from quench front propagation
P Hurley, KM Kim, JP Duarte
Nuclear Engineering and Design 416, 112785, 2024
12024
Analysis of Flow Instability Onset in a BWR Rod Bundle Geometry
P Hurley, Y Liu, JP Duarte, M Corradini, T Kozlowski
12022
TRACE Assessment for Simulating Density Wave Oscillations in a Full-Scale BWR Rod Bundle Under Natural Circulation
P Hurley, C Pigg, Y Liu, T Kozlowski, J Pacheco Duarte
Nuclear Technology, 1-14, 2024
2024
Density-Wave Instability Characterization in Boiling Water Reactors under MELLLA+ Domain during ATWS
PR Hurley
Virginia Tech, 2023
2023
Design of a High-Pressure Water Loop for Optical Fiber Measurement of Post-CHF Heat Transfer
P Hurley, A Karabacak, J Demasana, M Kramer, KM Kim, ...
The 19th International Topical Meeting on Nuclear Reactor Thermal Hydraulics …, 2022
2022
Vapor Film Collapse and Quench Front Propagation Analysis using Optical Fiber Temperature Sensors
P Hurley, A Alblooshi, KM Kim, JP Duarte
Transactions 125 (1), 1150-1153, 2021
2021
Machine Learning Approach for Prediction of High-Resolution Quenching Heat Transfer
KM Kim, P Hurley, JP Duarte
Transactions 125 (1), 1209-1212, 2021
2021
Prediction of Unstable Two-Phase Flow Behavior using Dense Neural Network
P Hurley, JP Duarte
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Articles 1–14