nav emailalert searchbtn searchbox tablepage yinyongbenwen piczone journalimg journalInfo journalinfonormal searchdiv searchzone qikanlogo popupnotification paper paperNew
AI智读

腾云AI智读

以下回复内容均依据本文提供!

AI导读
* 友情提示:该部分内容由 AI技术自动生成,仅供参考。对于因使用本网站以上内容产生的相关后果,本网站不承担任何商业和法律责任。
* 登录仅用于提升体验和增强功能,不会增加额外使用限制。
2023, 01, v.44 85-92
可移动式一体化人工雨雪冰营造系统的研制
基金项目(Foundation): 国家自然科学基金资助项目(51778305)
邮箱(Email): songtao-hu@qut.edu.cn;
DOI:
投稿时间: 2022-01-01
投稿日期(年): 2022
修回时间: 2022-02-28
终审时间: 2022-11-04
终审日期(年): 2022
审稿周期(年): 1
发布时间: 2023-02-21
出版时间: 2023-02-21
移动端阅读
摘要:

为了测试列车等交通工具在降雨、飘雪和玻璃结冰环境下的适应能力,国际标准规范CEN-TR 16251提出对列车进行相关试验,但是市面上仅仅存在功能单一的产品和设备,所以集成降雨、飘雪等多功能测试设备的研制迫在眉睫。设计了一种可移动式一体化人工雨雪冰营造系统,并进行了实验室验证测试。结果表明:本系统营造的环境能够满足最新国际铁路环境标准,例如平均降雨强度5.99 mm/min、玻璃上积雪平均厚度25.6 mm以及结冰平均厚度2.94 mm等。本系统集降雨、飘雪和制冰三种功能于一体的可移动式智能化操作平台,能够提供多功能、多场景实验测试,具有方便、高效、实用性好等优点。此外,本系统为列车营造相关试验环境条件,提前对列车进行测试,从而预防交通事故的发生。

Abstract:

In order to test the adaptability of trains and other vehicles in the environment of rain, snow and glass freezing, the international standard specification CEN-TR 16251 proposes to carry out relevant tests on trains, but the test equipments currently available on the market have a limited single function, so it is imminent to develop a test equipment which has the multi-functions of building artificial rain and snow. A mobile integrated artificial rain, snow and ice building system is designed in this study, and the laboratory verification test is carried out. The results show that the environment created by the system can meet the latest international railway environmental standards, such as the average rainfall intensity of 5.99 mm/min, the average thickness of snow of 25.6 mm on the glass, and the average thickness of icing of 2.94 mm. This system is a mobile intelligent operation platform which integrates the three functions of rainfall, snow and ice. It can provide multi-functional and multi-scenario experimental tests, and has the advantages of convenience, efficiency and good practicability. In addition, the system can create relevant test environmental conditions for trains, and can test trains in advance to prevent the occurrence of traffic accidents.

参考文献

[1] GABRIEL Haller,邹婷婷.气候试验使列车免受暴风雨雪影响[J].国外铁道车辆,2008(6):37-39.GABRIEL Haller,ZOU Tingting.Climate test protects the train from storm and snow[J].Foreign Railway Rolling Stock,2008 (6):37-39.

[2] 张晓辉,潘云钢,胡松涛,等.某整车空调气候室的研制[J].青岛理工大学学报,2019,40(1):71-76.ZHANG Xiaohui,PAN Yungang,HU Songtao,et al.Development of a complete vehicle air-conditioning climate chamber[J].Journal of Qingdao University of Technology,2019,40(1):71-76.

[3] GROFF L S,PRICE J M.General aviation accidents in degraded visibility:A case control study of 72 accidents[J].Aviation,Space,and Environmental Medicine,2006,77(10):1062-1067.

[4] NAGAMINE N,UKAI M.Visibility checking method for railway signals by cab-mounted camera[J].Quarterly Report of RTRI,2013,54(2):85-90.

[5] GUESSET A,DE LABONNEFON V,BLANCHETON M.Ergonomics and visibility in tramway driving cab[J].Transportation Research Procedia,2016,14:585-594.

[6] 孙超,胡金春,李春贵,等.可变雨强的人工降雨模拟装置设计[J].浙江水利科技,2021,49(6):48-50.SUN Chao,HU Jinchun,LI Chungui,et al.Design of artificial rainfall simulation device with variable rain intensity[J].Zhejiang Water Conservancy Science and Technology,2021,49(6):48-50.

[7] 端木兵雷,白鹏博,宋晓明,等.气候环境实验室内降雨系统试验及仿真研究[J].航空计算技术,2016,46(4):87-90.DUANMU Binglei,BAI Pengbo,SONG Xiaoming,et al.Rainfall system experiment and simulation study in the climate environment laboratory[J].Aeronautical Computing Technology,2016,46(4):87-90.

[8] BELLILA A,ATTIA M E H,KABEEL A E,et al.Productivity enhancement of hemispherical solar still using Al2O3-water-based nanofluid and cooling the glass cover[J].Applied Nanoscience,2021,11(4):1127-1139.

[9] GAO X,LI Z,JIA X,et al.Development and application of artificial rainfall device[J].Radiation Protection,2000,20(1/2):86-90.

[10] 刘道平,邬志敏,华泽钊.雪晶形成过程与人工造雪机技术[J].制冷与空调,2003(2):1-5.LIU Daoping,WU Zhimin,HUA Zezhao.Snow crystal formation process and artificial snow making machine technology[J].Refrigeration and Air Conditioning,2003(2):1-5.

[11] 林勇.雪晶成因及人工造雪分布类型探讨[J].低温与超导,2011,39(6):53-57.LIN Yong.Discussion on the causes of snow crystals and the distribution types of artificial snow[J].Cryogenics and Superconductivity,2011,39(6):53-57.

[12] 杨占武.北京冬奥会和冬残奥会人工造雪的研究[J].冰雪运动,2017,39(1):1-8.YANG Zhanwu.Research on artificial snow making for the Beijing Winter Olympics and Paralympics[J].Ice and Snow Sports,2017,39(1):1-8.

[13] 刘国强,熊通,晏刚,等.人工造雪技术现状与研究进展[J].制冷学报,2021,42(5):1-16.LIU Guoqiang,XIONG Tong,YAN Gang,et al.Current status and research progress of artificial snowmaking technology[J].Journal of Refrigeration,2021,42(5):1-16.

[14] SCHLEEF S,JAGGI M,L?WE H,et al.An improved machine to produce nature-identical snow in the laboratory[J].Journal of Glaciology,2014,60(219):94-102.

[15] YANG W X,HU Z X,DONG X B,et al.Case analysis of artificial snowfall enhancement by aircraft in Winter Olympic Games Area[C]//IOP Conference Series:Earth and Environmental Science.IOP Publishing,2019,346(1):012059.

[16] 郭纪捷,郑国芝.实验室模拟海水结冰装置与试验[J].海洋技术,2003(4):7-11.GUO Jijie,ZHENG Guozhi.Laboratory simulating seawater freezing device and experiment[J].Marine Technology,2003(4):7-11.

[17] 李闯勤.气候环境实验室地面结冰云雾模拟控制系统设计[J].工程与试验,2020,60(1):121-123.LI Chuangqin.Design of simulation control system for ground icing cloud and fog in climate environment laboratory[J].Engineering and Testing,2020,60(1):121-123.

[18] BELL D.Icing at the McKinley climatic laboratory[C]//41st Aerospace Sciences Meeting and Exhibit.2003:902.

[19] DESHPANDE S,SAETERDAL A,SUNDSBO P A.Sea spray icing:The physical process and review of prediction models and winterization techniques[J].Journal of Offshore Mechanics and Arctic Engineering,2021,143(6):061601.

[20] 牛涛.列车气候试验室环境营造与优化[D].青岛:青岛理工大学,2018.NIU Tao.Construction and optimization of the environment of the train climate laboratory[D].Qingdao:Qingdao University of Technology,2018.

[21] BUCEK O.Research on the comprehensive climate environment test methods for railway vehicles in climate wind tunnel[C]//2017 2nd International Conference on Industrial Aerodynamics.ICIA,2017:11-20.

[22] 胡沁春,刘刚利,高燕.信号与系统[M].重庆:重庆大学出版社,2015.HU Qinchun,LIU Gangli,GAO Yan.Signals and systems[M].Chongqing:Chongqing University Press,2015.

[23] 任战鹏,吴敬涛,吴学敏,等.气候环境实验室降雪环境模拟技术研究[J].装备环境工程,2020,17(1):119-123.REN Zhanpeng,WU Jingtao,WU Xuemin,et al.Research on snowfall environment simulation technology in climate and environment laboratory[J].Equipment and Environment Engineering,2020,17(1):119-123.

基本信息:

中图分类号:U270.14

引用信息:

[1]田忠浩,胡松涛,张君,等.可移动式一体化人工雨雪冰营造系统的研制[J].青岛理工大学学报,2023,44(01):85-92.

基金信息:

国家自然科学基金资助项目(51778305)

投稿时间:

2022-01-01

投稿日期(年):

2022

修回时间:

2022-02-28

终审时间:

2022-11-04

终审日期(年):

2022

审稿周期(年):

1

发布时间:

2023-02-21

出版时间:

2023-02-21

检 索 高级检索