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Analysis

This paper investigates the complex interaction between turbulent vortices and porous materials, specifically focusing on how this interaction affects turbulence kinetic energy distribution and heat transfer. The study uses direct numerical simulations (DNS) to analyze the impact of varying porosity on these phenomena. The findings are relevant to understanding and optimizing heat transfer in porous coatings and inserts.
Reference

The lower-porosity medium produces higher local and surface-averaged Nusselt numbers.

Research#Concrete🔬 ResearchAnalyzed: Jan 10, 2026 07:22

AI-Driven Optimization for Ultra-High-Performance Concrete Properties

Published:Dec 25, 2025 10:15
1 min read
ArXiv

Analysis

This research utilizes a data-driven approach, which is becoming increasingly common in material science and engineering. The multi-objective optimization strategy likely provides valuable insights into the complex relationships between UHPC components and its resulting properties.
Reference

The research focuses on predicting mechanical performance, flowability, and porosity in Ultra-High-Performance Concrete (UHPC).