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飞机发动机地面试车强噪音和高速尾流的防护治理措施分析 被引量:1
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作者 顾庆磊 《内燃机与配件》 2017年第15期76-77,共2页
发动机是飞机核心部件,飞机正常航行的主要动力还是来源于航空发动机,所以目前飞机发动机需要严格按照相关要求进行定期检修和维护。为了使得飞机航行的安全性得到保障,需要进行飞机发动机地面试车活动,以此来达到技术标准要求。现阶段... 发动机是飞机核心部件,飞机正常航行的主要动力还是来源于航空发动机,所以目前飞机发动机需要严格按照相关要求进行定期检修和维护。为了使得飞机航行的安全性得到保障,需要进行飞机发动机地面试车活动,以此来达到技术标准要求。现阶段在发动机试车过程中所产生的强大噪音和高速尾流对公共环境造成了相应的威胁,所以需要相关部门进一步加强防护管理,降低地面试车产生的强噪音和高速尾流带来的危害。 展开更多
关键词 飞机发动机 地面试车 强噪音 高速尾流
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THEMIS statistical study on the plasma properties of high-speed flows in Earth's magnetotail 被引量:2
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作者 PAN Dong Xiao SUN Wei Jie +6 位作者 SHI Quan Qi TIAN An Min YAO Zhong Hua FU Sui Yan ZONG Qiu Gang ZHOU Xu Zhi PU Zu Yin 《Science China Earth Sciences》 SCIE EI CAS CSCD 2016年第3期548-555,共8页
Using Time History of Events and Macroscale Interactions during Substorms (THEMIS) observations from 2007 to 2011 tail seasons, we study the plasma properties of high speed flows (HSFs) and background plasma sheet... Using Time History of Events and Macroscale Interactions during Substorms (THEMIS) observations from 2007 to 2011 tail seasons, we study the plasma properties of high speed flows (HSFs) and background plasma sheet events (BPSs) in Earth's magnetotail (|YGsM|〈13RE, |ZGsM|〈5RE, -30RE〈XrsM〈-6RE), and their correlations with solar wind parameters. Statistical results show that the closer the HSFs and BPSs are to the Earth, the hotter they become, and the temperature increase of HSFs is larger than that of BPSs. The density and temperature ratios between HSFs and BPSs are also larger when events are closer to Earth. We also find that the best correlations between the HSFs (BPSs) density and the solar wind density occur when the solar wind density is averaged 2 (3.5) hours prior to the onset of HSFs (BPSs). The normalized densities of both HSFs and BPSs are correlated with the interplanetary magnetic field (IMF) 0 angles ( 0 = arctan(Bz √Bx^2+y^2 ) which are averaged 3 hours before the observation time. Further analysis indicates that both HSFs and BPSs become denser during the northward IMF period. 展开更多
关键词 High-speed flow Earthward evolution Interplanetary magnetic field
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