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고분자구조 및 물성(I)

  • Apr 09(Thu), 2026, 09:00 - 12:00
  • 포스터장
  • Chair : 김재홍, 양상희
09:00 - 10:30
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[1PS-291]

우수논문발표상 응모자

A methodology for calculating the thermal conductivity of molten salt using molecular dynamics simulations

발표자이상헌 (서울과학기술대학교)

연구책임자서범준 (서울과학기술대학교)

공동저자이상헌 (서울과학기술대학교), 서범준 (서울과학기술대학교)

Abstract

Molten salts are being actively considered as alternative coolants for small molecular reactors, where conventional water-based cooling can suffer from rapid phase change and associated safety and efficiency penalties at elevated temperatures. Reliable prediction of molten-salt thermal conductivity is therefore essential for screening candidate compositions and supporting thermo-hydraulic design. In this work, we present a molecular-dynamics methodology for calculating the thermal conductivity of molten salts with improved microscopic fidelity.
 Conventional classical force fiedls often reproduce qualitative trends in thermal transport but can yield noticeable quantitative deviations due to limited transferability and incomplete description of many-body effects in dense ionic liquids. We aim to employ a machine-learning force field, enabling a more accurate representation of the potential energy surface and local ionic enviornments relevant to heat transport.

Poster