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中国地质大学(武汉)工程学院导师教师师资介绍简介-杨现禹

本站小编 Free考研考试/2021-07-31

基本信息

姓名:杨现禹
出生年月:1992年01月
祖籍:山东省日照市莒县
最高学位:工学博士
职称:特任副教授
电话:**
E-mail: yxy@cug.edu.cn
研究方向:井壁稳定(钻井液);CFD流固耦合模拟;智能纳米磁性双面人颗粒;


工作经历
2019.07 – 至 今, 中国地质大学(武汉),工程学院,勘察与基础工程系教师


教育背景
2014.09 – 2019.06, 中国地质大学(武汉),工学博士,地质工程
2010.09 – 2014.06, 中国地质大学(武汉),工学学士,勘查技术与工程
2017.09 – 2018.10, 加拿大卡尔加里大学(University of Calgary),联合培养博士生


主讲课程
钻井液与完井液


发表学术论文
[1] Yang, X., Chen, S., Yan, P., Cai, J., Jiang, G. CFD and DEM modelling of particles plugging in shale pores. Energy, 2019, 174, 1026-1038. (SCI, T1,IF 5.582)
[2] Yang, X., Shang, Z., Shi, Y., Peng, Y., Yue, Y., Chen, S., Cai, J. Influence of salt solutions on the permeability, membrane efficiency and wettability of the Lower Silurian Longmaxi shale in Xiushan, Southwest China. Applied Clay Science, 2018, 158, 83-93. (SCI, T2,IF 3.616)
[3] Yang, X., Shang, Z., Liu, H., Cai, J., Jiang, G. Environmental-friendly salt water mud with nano-SiO2 in horizontal drilling for shale gas. Journal of Petroleum Science and Engineering, 2017, 156, 408-418. (SCI, T2,IF 2.739)
[4] Yang, X. Y., Yue, Y., Cai, J. H., Liu, Y., Wu, X. M. Experimental study and stabilization mechanisms of silica nanoparticles based brine mud with high temperature resistance for horizontal shale gas wells. Journal of Nanomaterials, 2015, 2. (SCI, T3,IF 2.207)
[5] 杨现禹, 岳也, 蔡记华. 化学发泡式泡沫水泥浆稠化实验方法对比与分析[J]. 钻井液与完井液, 2016 (02): 96-100. 中文核心期刊
[6] Shi, Y., Chen, S., Yang, X., Yu, L., Cai, J. Enhancing wellbore stability of coal measure strata by electrical inhibition and wettability control. Journal of Petroleum Science and Engineering, 2018, 174, 544-552. (SCI,T2,IF 2.739)
[7] Chen, S.; Shi, Y.; Yang, X.; Xie, K.; Cai, J. Design and Evaluation of a Surfactant–Mixed Metal Hydroxide-Based Drilling Fluid for Maintaining Wellbore Stability in Coal Measure Strata. Energies 2019, 12, 1862. (SCI, T2,IF 2.676)
[8] Yue, Y., Chen, S., Wang, Z., Yang, X., Peng, Y., Cai, J., & Nasr-El-Din, H. A. Improving wellbore stability of shale by adjusting its wettability. Journal of Petroleum Science and Engineering, 2018, 161, 692-702. (SCI, T2,IF 2.739)
[9] Song, J., Yuan, Y., Gu, S., Yang, X., Yue, Y., Cai, J., & Jiang, G. 2D Numerical Simulation of Improving Wellbore Stability in Shale Using Nanoparticles Based Drilling Fluid. Energies, 2017, 10(5), 651. (SCI, T2,IF 2.676)
[10] Cai, J., Gu, S., Wang, F., Yang, X., Yue, Y., Wu, X., & Chixotkin, V. F. Decreasing coalbed methane formation damage using micro foamed drilling fluid stabilized by silica nanoparticles. Journal of Nanomaterials, 2016. (SCI,T3,IF 2.207)
[11] 蔡记华, 岳也, 曹伟建, 杨现禹,乌效鸣. 钻井液润湿性影响页岩井壁稳定性的实验研究. 煤炭学报, 2016, 41(01), 228-233. EI
[12] 应春业, 李新亮, 杨现禹, 等. 基于疏水型纳米二氧化硅的页岩气盐水钻井液[J]. 钻井液与完井液, 2016, 33(4): 41-46. 中文核心期刊
[13] 常德武, 蔡记华, 岳也, 杨现禹. 一种适合页岩气水平井的水基钻井液[J]. 钻井液与完井液, 2015, 32(2): 47-51.中文核心期刊
[14] 岳也, 彭扬东, 陈书雅, 杨现禹, 蔡记华. 正电胶钻井液增强煤层气钻井井壁稳定性试验研究[J].煤炭科学技术, 2016, 44(10): 83-87. 中文核心期刊



申请发明专利
1.杨现禹,岳也,尚振筱,蔡记华,蒋国盛。一种水基钻井液及其制备方法和应用,申请号:1.9,已公开,公开号:A。
2. 蔡记华,岳也,杨现禹,谷穗,乌效鸣。通过控制水基钻井液润湿性增强页岩井壁稳定性的方法,申请号:5.1,已公开,公开号:A。




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