CFD Modeling of Turbulent Air Flow in Self-Heated Gyroid TPMS Structures: Thermal-Hydraulic Performance and Validation
The application of mathematically derived geometries, such as triply periodic minimal surface (TPMS) lattices, has garnered significant interest across various fields, including the nuclear sector, due to their superior thermal-hydraulic characteristics for heat transfer compared to traditional plain or finned tubes. This study validates a computational fluid dynamics (CFD) model, evaluates different turbulence models and […]
Local heat transfer measurement in a volumetrically heated TPMS lattice using distributed optical fiber thermal sensing
As additive manufacturing continues to reduce design constraints on heat exchange geometries, methods for high-fidelity local heat transfer measurements in nonconventional channel geometries are critical to their continued development. This study presents a novel method for measuring local heat transfer performance in volumetrically heated lattices using a distributed optical fiber temperature sensor. A diamond-type triply […]
Thermal -Hydraulic Performance of Volumetrically Heated Triply Periodic Minimal Surface Heaters
Advanced heat transfer surfaces, mainly Triply Periodic Minimal Surfaces (TPMSs) have great potential to increase heat transfer performance over traditional heat transfer surfaces due to their tortuous flow path and higher surface area-volume ratio. The emergence of additive manufacturing of nuclear fuel motivates experimental investigation of such advanced geometries in the context of a nuclear […]