首页 | 本学科首页   官方微博 | 高级检索  
     

侧风影响下的CSPRs飞机离场尾流运动研究
引用本文:何昕,刘成,郭东鑫,郑稀元. 侧风影响下的CSPRs飞机离场尾流运动研究[J]. 价值工程, 2022, 41(9): 166-168. DOI: 10.3969/j.issn.1006-4311.2022.09.053
作者姓名:何昕  刘成  郭东鑫  郑稀元
作者单位:中国民用航空飞行学院,广汉618000
基金项目:全天候运行安全效益评价体系研究、发动机喷流影响下的起飞点后侧运行安全间隔研究、航空器跑道占用时间规范研究;受中国民用航空飞行学院通用航空飞行技术与运行安全研究中心支持。
摘    要:受起飞飞机尾流影响,我国近距平行跑道实行“一起一降”运行模式,未能充分发挥技术优势。为评估尾流对近距平行跑道配对离场方案的影响,通过CFD数值模拟的方法,研究了不同侧风情况下起飞飞机尾流的运动情况。以B737-800为例,设置计算域、划分网格,选取k-ωSST模型对尾流流场进行数值计算,选定起飞阶段离地35ft时的飞机作为研究对象,计算不同侧风条件下的飞机尾流场分布,得出B737-800在静风、侧风3m/s尾涡侧向移动距离分别为36m、325m,此结果为评估配对离场方案提供了参考。

关 键 词:近距平行跑道  尾流  计算流体力学

Study on Departure Wake Motion of Aircraft with CSPRs under Crosswind
HE Xin,LIU Cheng,GUO Dong-xin,ZHENG Xi-yuan. Study on Departure Wake Motion of Aircraft with CSPRs under Crosswind[J]. Value Engineering, 2022, 41(9): 166-168. DOI: 10.3969/j.issn.1006-4311.2022.09.053
Authors:HE Xin  LIU Cheng  GUO Dong-xin  ZHENG Xi-yuan
Affiliation:(Civil Aviation Flight University of China,Guanghan 618000,China)
Abstract:Due to the influence of the wake of take-off aircraft,the operation mode of"landing together"is implemented on the closely spaced parallel runway in China,which fails to give full play to its technical advantages.In order to evaluate the influence of the wake on the paired departure scheme of a closely spaced parallel runway,the motion of the wake of an aircraft taking off under different crosswind conditions was studied by CFD numerical simulation.Taking B737-800 as an example,the calculation domain was set and the grid was divided.The K-ωSST model was selected for numerical calculation of the wake flow field.The aircraft 35ft above the ground in the take-off stage was selected as the research object to calculate the distribution of the wake field under different crosswind conditions.It is concluded that the lateral movement distances of the wake vortex of b737-800 are 36m and 325m respectively at 3m/s and 3m/s in the calm wind,which provides a reference for evaluating the paired departure scheme.
Keywords:CSPRs  wake vortex  computational fluid dynamics
本文献已被 维普 万方数据 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号