[1] Cao G, Awbi H, Yao R, et al.A review of the performance of different ventilation and airflow distribution systems in buildings[J]. Building and Environment, 2014, 73171-186. [2] Lin B, Wang Z, Sun H, et al.Evaluation and comparison of thermal comfort of convective and radiant heating terminals in office buildings[J]. Building and Environment, 2016, 44(09): 37. [3] 王伯燕, 徐传芳. 家用电器舒适性自然风技术研究[J]. 家电科技, 2021(zk): 260-265. [4] 赵琴. Fluent软件的技术特点及其在暖通空调领域的应用[J]. 计算机应用, 2003, 23(12): 424-425. [5] 肖虹, 高超, 党云卿, 等. Fluent软件的二次开发及其在火箭气动计算中的应用[J]. 航空计算技术, 2009, 39(05): 55-57. [6] 贾子健. 基于Qt和Fluent的高速列车空调通风数值仿真平台开发[D]. 大连: 大连交通大学, 2017. [7] 夏刚, 刘新建, 程文科, 等. 钝体高超声速气动加热与结构热传递耦合的数值计算[J]. 国防科技大学学报, 2003, 25(01): 35-39. [8] 常胜, 杜强, 王沛, 等. 起动过程涡轮叶片瞬态温度场的准稳态处理研究[J]. 燃气轮机技术, 2021, 34(04): 1-13. [9] 方平治, 顾明. 基于松耦合法的求解气动弹性问题的数值模拟方法[J]. 同济大学学报(自然科学版), 2007, 35(07): 888-892. [10] Chen F, Liu H, Zhang S.Time-adaptive loosely coupled analysis on fluid-thermal-structural behaviors of hypersonic wing structures under sustained aeroheating[J]. Aerospace Science and Technology, 2018, 78: 620-636. [11] Zhang S, Chen F, Liu H. Time-Adaptive, Loosely Coupled Strategy for Conjugate Heat Transfer Problems in Hypersonic Flows[J]. Journal of Thermophysics and Heat Transfer, 2014, 28: 1-12. |