The University of Osaka · 환경과학
Zitao Jiang 교수의 연구실은 자연환기의 효율성과 실내 공기질 향상을 목표로 하며, 주로 풍압형 단일 및 이중측 환기의 유량 예측, 내부 구조물의 영향, 비등온 조건 하에서의 유동 유사성 등에 중점을 두고 있습니다. 실험적 풍동 시험과 수치유체역학(CFD) 기반 대규모 난류 시뮬레이션(LES)을 융합한 다각적 연구를 수행하며, 특히 환기 효율 지표인 PFR과 AFR의 관계에 대한 깊이 있는 분석을 진행하고 있습니다. 이는 실증적 설계 가이드라인 개발과 지속 가능한 건축 환기 전략의 최적화에 기여합니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
Natural ventilation is gaining more popularity in recent decades as a sustainable strategy to reduce energy consumption and improve indoor air quality. Due to variable turbulent characteristics, there is a lack of a practical guide that helps engineers accurately predict and maximize wind-induced ventilation rates. The current work intends to investigate the factors that influence the ventilation rates by focusing on cases that have a minor wind pressure coefficient difference. This paper presen
Reduced-scale experiments and simulations are important approaches in natural ventilation research, and the similarity requirement is fundamental for generalising the flow characteristics obtained from reduced-to full-scale conditions. However, the similarity requirement of a nonisothermal natural ventilation flow in a reduced-scale model poses additional challenges because of the reduced approaching flow, which can potentially result in Reynolds dependence issues. This study investigated the Re
Wind-induced single-sided ventilation is a prevalent form of natural ventilation extensively used in buildings. Nevertheless, prior experimental investigations predominantly focused on single-zone buildings, neglecting the multizone buildings with internal partitions which is representative of more common scenarios. This study addresses this gap by investigating the impact of internal partitions on single-sided ventilation, employing a combination of wind tunnel experiment and numerical analysis
The main objective of this study is to investigate the airflow characteristics in single-sided ventilation. A CFD method of large eddy simulation (LES) using particle track technique was conducted in this study, and the simulation results are validated by experiment results. The mostly used ventilation efficiency indicators of natural ventilation are Air Flow Rate (AFR) and Purging Flow Rate (PFR). AFR is the volumetric airflow exchange rate through the openings and PFR is the effective airflow