PHYSICS OF GASES, PLASMAS, AND ELECTRIC DISCHARGES |
Prev
Next
|
|
|
Characteristics of droplets ejected from liquid glycerol doped with carbon in laser ablation propulsion |
Zhi-Yuan Zheng(郑志远), Si-Qi Zhang(张思齐), Tian Liang(梁田), Lu Gao(高禄), Hua Gao(高华), Zi-Li Zhang(张自力) |
School of Science, China University of Geosciences, Beijing 100083, China |
|
|
Abstract The characteristics of droplets ejected from liquid glycerol doped with carbon are investigated in laser ablation propulsion. Results show that carbon content has an effect on both the coupling coefficient and the specific impulse. The doped-carbon moves the laser focal position from the glycerol interior to the surface. This results in a less consumed glycerol and a high specific impulse. An optimal propulsion can be realized by varying carbon content in glycerol.
|
Received: 19 October 2015
Revised: 30 December 2015
Accepted manuscript online:
|
PACS:
|
52.75.Di
|
(Ion and plasma propulsion)
|
|
79.20.Ds
|
(Laser-beam impact phenomena)
|
|
62.10.+s
|
(Mechanical properties of liquids)
|
|
Fund: Project supported by the National Natural Science Foundation of China (Grant No. 10905049) and the Fundamental Research Funds for the Central Universities, China (Grant Nos. 53200859165 and 2562010050). |
Corresponding Authors:
Zhi-Yuan Zheng
E-mail: zhyzheng@cugb.edu.cn
|
Cite this article:
Zhi-Yuan Zheng(郑志远), Si-Qi Zhang(张思齐), Tian Liang(梁田), Lu Gao(高禄), Hua Gao(高华), Zi-Li Zhang(张自力) Characteristics of droplets ejected from liquid glycerol doped with carbon in laser ablation propulsion 2016 Chin. Phys. B 25 045204
|
[1] |
Zheng Z Y, Gao H, Gao L, Xing J, Fan Z J, Dong A G and Zhang Z L 2014 Appl. Phys. A 115 1439
|
[2] |
Xue Y T, Dou Z G, Ye J F, Li N L, Zhang G Z and Wan Y 2014 High Power Laser Part. Beams 26 101020
|
[3] |
Zheng Z Y, Gao H Fan Z J and Xing J 2014 Plasma Science and Tech-nology 16 251
|
[4] |
Phipps C R, Baker K L, Libby S B, Liedahl D A, Olivier S S, Pleasance L D, Ruenchik A, Trebes J E, George E V, Marcovici B, Reilly J P and Valley M T 2012 Adv. Space Res. 49 1283
|
[5] |
Shi L, Zhao S H, Chu X C, MA L H, Wu J L, Li X L and Li Y J 2009 Europhys. Lett. 85 55001
|
[6] |
Fardel R, Urech L, Lippert T, Phipps C, Fitz-gerald J M and Wokaun A 2009 Appl. Phys. A 94 657
|
[7] |
Zheng Z Y, Fan Z J, Wang S W, Dong A G, Xing J and Zhang Z L 2012 Chin. Phys. Lett. 29 095202
|
[8] |
Zhang Y, Lu X, Zheng Z Y, Liu F, Zhu P F, Li H M, Li Y T and Zhang J 2008 Appl. Phys. A 91 357
|
[9] |
Zheng Z Y, Gao H, Fan Z J and Xing J 2014 Plasma Science and Tech-nology 16 251
|
[10] |
Li N L, Ye J F and Zhou W J 2015 J. Prop. Tech. 36 1595
|
[11] |
Choi S, Han T, Gojani A B and Yoh J J 2010 Appl. Phys. A 98 147
|
[12] |
Zheng Z Y, Zhang J, Hao Z Q, Yuan X H, Zhang Z, Lu X, Wang Z H and Wei Z Y 2006 Chin. Phys. 15 580
|
[13] |
Phipps C R, Luke J R, Lippert T and Mcduff G G 2003 Appl. Phys. A 77 193
|
[14] |
Sinko J E and Phipps C R 2009 Appl. Phys. Lett. 95 131105
|
[15] |
Noack J, Hammer D X, Noojin G D, Rockwell B A and Vogel A 1998 J. Appl. Phys. 83 7488
|
[16] |
Zheng Z Y, Zhang J, Lu X, Hao Z Q, Yuan X H, Wang Z H and Wei Z Y 2006 Appl. Phys. A 83 329
|
[17] |
Zheng Z Y, Zhang J, Zhang Y, Liu F, Chen M, Lu X and Li Y T 2006 Appl. Phys. A 85 441
|
No Suggested Reading articles found! |
|
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
Altmetric
|
blogs
Facebook pages
Wikipedia page
Google+ users
|
Online attention
Altmetric calculates a score based on the online attention an article receives. Each coloured thread in the circle represents a different type of online attention. The number in the centre is the Altmetric score. Social media and mainstream news media are the main sources that calculate the score. Reference managers such as Mendeley are also tracked but do not contribute to the score. Older articles often score higher because they have had more time to get noticed. To account for this, Altmetric has included the context data for other articles of a similar age.
View more on Altmetrics
|
|
|