Asian Modelica and FMI Conference 2026

Yifan Xu


Session

09-21
15:35
25min
Modelica-Based Parametric Analysis of Steady-State and Transient Thermal-Hydraulic Characteristics of PCHEs in SCO2 Brayton Cycles
Hao Xu, Yifan Xu, Yuandong Zhang, Minjun Peng, Genglei Xia

Printed circuit heat exchangers (PCHEs) are key components in supercritical carbon dioxide (S-CO2) Brayton cycles because of their compact structure and high heat transfer capability. However, existing studies have mainly focused on steady-state structural optimization or isolated component analysis, while the influence of geometric parameters on thermal-hydraulic responses under system-level transient disturbances remains insufficiently understood. In this study, a Modelica-based dynamic simulation framework is developed for the system-level analysis of recuperators in an S-CO2 Brayton cycle. A one-dimensional dynamic PCHE model is established and validated against benchmark data, with a maximum relative error of 0.87%. A continuously varying heat sink temperature ranging from 22 ° C to 26 ° C is introduced as a representative offdesign disturbance. The effects of channel diameter and channel length on heat transfer coefficient and pressure drop are investigated under both design reference and transient operating conditions. The results show that smaller channels and longer flow paths enhance heat transfer performance but introduce larger pressure-drop penalties under the design reference condition. Under transient heat sink temperature disturbances, smalldiameter and long-channel configurations exhibit stronger thermal-hydraulic response variations than under steadystate conditions. These results indicate that parameter trends obtained under steady-state conditions may not directly represent transient thermal-hydraulic behavior under off-design operation. The proposed framework provides an efficient approach for preliminary parametric assessment and system-level transient analysis of recuperators in S-CO2 Brayton cycles.

Reactor Cycles
Energy (R2002)