An official invitation letter will be provided upon successful registration for your participation in the conference.
학술대회 참가 등록이 정상적으로 완료되면 공식 초청장이 발급됩니다.
Plenary, keynote and parallel sessions.
전체회의, 기조연설 및 분과 세션.
Connect with fellow researchers.
동료 연구자들과의 교류.
Digital certificate of participation.
디지털 참가 증명서 발급.
Official letter after successful registration.
등록 완료 후 공식 초청장 발급.
E-proceedings & resource materials.
전자 논문집 및 참고 자료.
Learn from leading experts & scholars.
저명한 전문가 및 학자들의 강연.
The conference's session tracks effectively support the following SDGs.
본 학술대회의 세션 트랙은 다음의 지속가능발전목표를 효과적으로 지원합니다.
This track focuses on the latest methodologies and technologies in computational fluid dynamics. Participants will explore innovative CFD modeling techniques and their applications in thermal engineering.
This session will delve into the characteristics and behaviors of laminar and turbulent flows in various thermal systems. Researchers will present findings on flow stability, transition mechanisms, and their implications for thermal engineering.
This track examines the complex interactions between fluid flows and structural elements in thermal engineering contexts. Studies will highlight the significance of fluid-structure interaction in optimizing thermal system performance.
Participants in this session will discuss the mechanisms and effects of convection in thermal engineering applications. The focus will be on enhancing heat transfer efficiency through advanced convection analysis.
This track addresses the challenges and advancements in understanding multiphase flow behavior in thermal systems. Researchers will present insights into flow regimes, phase interactions, and their impact on thermal performance.
This session will explore various strategies for optimizing fluid flow in thermal engineering applications. Topics will include design methodologies and computational approaches to enhance flow efficiency.
This track focuses on the role of aerodynamics in the design and analysis of thermal systems. Presentations will cover aerodynamic principles and their applications in improving thermal system performance.
This session will highlight recent advancements in the design of pumps and ducts for thermal applications. Participants will discuss design optimization, efficiency improvements, and practical industrial applications.
This track will showcase real-world applications of fluid dynamics in various industries related to thermal engineering. Case studies will illustrate the impact of fluid dynamics on operational efficiency and system design.
This session will present cutting-edge techniques for fluid analysis in thermal engineering contexts. Researchers will share methodologies that enhance the understanding of fluid behavior and thermal interactions.
This track examines the integration of thermal and fluid systems for improved performance in engineering applications. Discussions will focus on the synergies between thermal management and fluid dynamics.