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彭可文

发布时间:2020-01-06

彭可文

基本信息:

学位:博士

职称:讲师

电子邮箱:pengkw1003@hotmail.com

教育、工作经历:

20186-至今,东莞理工学院化学工程与能源技术学院,教师

20139- 20186月,中国石油大学(北京),石油与天然气工程专业,博士

20079-20116月,中国石油大学(北京),石油工程专业,本科

 

研究领域:

高压水射流,空化射流,太阳能热发电

讲授课程:

流体力学,能源审计

代表性研究成果:

(一)论文/论著

1. Peng K., Tian S., Li G. and Alehossein H., 2018. Mapping cavitation impact field in a submerged cavitating jet. Wear, 396, pp.22-33. (SCI, JCR Q1, IF=2.798 ).

2. Peng K., Tian S., Li G., Huang Z. and Zhang Z., 2017. Cavitation in water jet under high ambient pressure conditions. Experimental Thermal and Fluid Science, 89, pp.9-18. (SCI, JCR Q1, IF=3.079).

3. Peng K, Tian S, Li G, Huang Z, Yang R, and Guo Z. 2018. Bubble dynamics characteristics and influencing factors on the cavitation collapse intensity for self-resonating cavitating jets. Petroleum Exploration and Development, 45(2), pp.343-350. (SCI, JCR Q1, IF=1.592).

4. Peng K., Kang C., Li G., Matsuda K. and Soyama H., 2018. Effect of heat treatment on the cavitation erosion resistance of stainless steel. Materials and Corrosion, 69(4), pp.536-544. (SCI, JCR Q2, IF=1.45).

5. Peng K, Li G, Tian S, Huang Z, Zhang Z, Zhu B, and Nie X., 2017. Triggering cavitation in multilateral coiled tubing drilling by high pressure water jet. SPE/IATMI Asia Pacific Oil & Gas Conference and Exhibition, Society of Petroleum Engineers. (EI).

6. Yamada J, Peng K, Kokubun T, Takiguchi T, Li G, Yamamoto M, and Soyama H. (2018). Optimization of a cavitating jet for removing dental plaque from the surface of the screw of an implant and its practical application. Journal of Biomechanical Science and Engineering, 13(2), pp.17-00102. (EI)

7. Tian S, Zhang Q, Li G, Chi H, Wang H, Peng K, Li Z. Rock-Breaking Characteristics for the Combined Swirling and Straight Supercritical Carbon Dioxide Jet under Ambient Pressure. Atomization and Sprays. 2016;26(7). (SCI, JCR Q2, IF=1.649).

8. Li J, Li G, Huang Z, Song X, Yang R, and Peng K, 2015. The self-propelled force model of a multi-orifice nozzle for radial jet drilling. Journal of Natural Gas Science and Engineering, 24, pp.441-448. (SCI, JCR Q2, IF=2.178).

 

 

 

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