热力学
超临界流体
热流密度
缩放比例
等压法
传热
标量(数学)
工作(物理)
材料科学
焓
机械
热的
转化(遗传学)
雷诺数
边界层
边界(拓扑)
压力梯度
统计物理学
热能
边值问题
物理
温度梯度
标度律
熵(时间箭头)
作者
Teng Wan,Peixue Jiang,Pinghui Zhao,Xingjian Wang
标识
DOI:10.1017/jfm.2025.11023
摘要
Fluids at supercritical pressure (SCP) exhibit significant real-fluid effects across the pseudo-critical point, which challenges the validity of the existing wall-scaling laws developed under atmospheric pressure condition. This study revisits prior efforts on the temperature-based transformation for the collapse of mean scalar profiles, emphasising the difficulties in accurately describing universal characteristics of thermal boundary layers at SCP. To address this, a novel thermal scaling law using enthalpy transformation is proposed by incorporating the chain rule and heat flux balance. This transformation effectively accounts for variations in the near-wall thermophysical properties associated with the scalar profile while excluding the gradient of isobaric specific heat capacity-related terms. The proposed scaling law demonstrates substantially improved alignment of transformed mean scalar profiles in SCP channel flows at different wall-temperature differences and Reynolds numbers. Additionally, the enthalpy transformation shows superior performance compared with the existing enthalpy–velocity relations, particularly near the heated-wall region where the fluid thermodynamic states undergo the pseudo-boiling process. The present work could facilitate the development of universal wall model in supercritical flows, enabling rapid and reliable heat transfer predictions in practical applications.
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