常英杰 讲师

能源与电气工程学院

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学位: 博士

毕业院校: 西安交通大学

邮件: yj.chang@chd.edu.cn

电话: 17691133500

出生年月: 1992-02

办公地点: 长安大学渭水校区能电学院706

个人资料

  • 学院: 能源与电气工程学院
  • 性别:
  • 出生年月: 1992-02
  • 职称: 讲师
  • 学位: 博士
  • 学历: 博士
  • 毕业院校: 西安交通大学
  • 联系电话: 17691133500
  • 电子邮箱: yj.chang@chd.edu.cn
  • 通讯地址: 西安市未央区尚苑路长安大学北校区能源与电气工程学院706
  • 邮编: 710018
  • 传真:
  • 办公地址: 长安大学渭水校区能电学院706
  • 教育经历:

    (1)2011-09 至 2015-06, 西安交通大学-能源与动力工程学院, 能源动力系统及自动化, 学士;


    (2)2015-09 至 2023-12, 西安交通大学-动力工程多相流国家重点实验室, 动力工程及工程热物理, 硕博连读,郭烈锦院士;


    (3)2021-07 至 2022-08, 德国Otto-von-Guericke-University Magdeburg, 流体力学与流动工程实验室, 联合培养博士, Dominique Thévenin教授 (https://www.lss.ovgu.de/lss/en/)

个人简介

常英杰,讲师,本硕博就读于西安交通大学动力工程及工程热物理专业,分别于2015、2023获得西安交通大学工学学士、博士学位,2021.07-2022.08受CSC资助前往德国马格德堡大学联合培养一年,于2023年12月加入长安大学能源与电气工程学院。目前研究方向为气液两相/多相流,主要包括:海洋油气集输流动安全保障、两相/多相流动测量和基于粒子方法的数值模拟、气泡动力学等方向。

(1)海洋油气集输流动安全保障:



(2)两相/多相流动测量和数值模拟:

 


(3)气泡测量及动力学研究:

 


社会职务

《当代化工研究》期刊编委;

《东北石油大学学报》、《西南石油大学学报》、《西南科技大学学报(自然科学版)》青年编委。

Chemical Engineering Science,Ocean Engineering,Separation and Purification Technology,Oil Shale,西南科技大学学报,海洋工程与科学等期刊审稿人;

中国工程热物理学会会员,2024-2025。


谷歌学术主页:https://scholar.google.de/citations?user=3YbZ688AAAAJ&hl=en

Researchgate主页:https://www.researchgate.net/profile/Yingjie-Chang

研究领域

目前研究方向为气液两相/多相流,主要包括:

(1)海洋油气集输流动安全保障多相流型人工智能监控、多相混输、危害流型预警及消除;

(2)两相/多相流动测量(ECT/ECVT/PIV/PTV/PLIF/高速相机)和数值模拟;

(3)油气管道泄露声波诱发机理;

(4)气泡动力学。

开授课程

流体力学,工程热力学


科研项目

主持项目:

[1] 陕西省自然科学基金青年项目,“基于人工智能的海洋油气混输管线内危害流型预警研究”(No.2025JC-YBQN-671),2025.01.01-2026.12.31,主持

[2] 中央高校基本科研业务,“海洋长输管线内气液多相流动特性及流型转变机理研究”(No.300102384104),2024.01.01-2025.12.31,主持

[3] 国家留学基金委,创新型人才国际合作培养项目(No.202006280505),2021.07-2022.08,主持


参与项目:

[1] “十三五”国家科技重大专项,“深水多相流型在线识别及段塞控制工程技术”(No. 2016ZX05028004-002),2016.01-2020.06,参与;

[2] 国家重大科研仪器研制项目,“深海油气采输管道多相流实验及测控技术研发装备”(No. 51527808),2016.01-2021.12,参与;

[3] 国家重点研发计划课题(2022YFC2806202),2021.01-2025.12,参与;

[4] 国家自然科学基金基础科学中心项目“能源有序转化”(No. 51888103),2019.01-2023.12(首期),参与;

[5] 家自然科学基金委员会,面上项目,52076175,气液两相射流凝结声波的产生与传播机理研究,2020.01-2024.12,参与

论文

2025年

[1]  Yingjie Chang; Bo Huang; Qiang Xu; Xiangyuan Zhao; Quanhong Wu; Hao Chen; Dominique Thévenin; Liejin Guo. Effect of the operation pressure on severe slugging in a gas-liquid two-phase flow in the pipeline-riser system[J]. Ocean Engineering, 2025, 317, 120071.

[2]  常英杰, 黄博, 郑学波, 李乃良, 徐强, 郭烈锦. 基于BP神经网络的集输立管系统内危害流型识别研究[J]. 工程热物理学报. 2025.

[3]  Wei Han, Yingjie Chang*, Hongye Wang, Jing Wang, Ji Si, Kai Wang, He Wei. Research on Monitoring and Evaluation Methods for the Operating Status of the Endurance Test Platform for Heat Meters. ICCE 2024.(EI)

[4]  Bo Huang; Qiang Xu; Yingjie Chang; Yeqi Cao; Haiyang Yu; Yuwen Li; Liejin Guo.Experimental and modeling investigation of zero net liquid flow in hilly terrain pipeline[J]. Petroleum Science, 2025.

[5]  Xuemei Zhang; Qiang Xu, Xiaojun Ma; Haocun Wang; Yingjie Chang; Lulu Li; Bo Zhang; Liejin Guo. A single-parameter method for liquid flow measurement in spiral annular flow using radial pressure difference[J]. Measurement, 2025.

[6]  Yingjie Chang*, et al. NUMERICAL SIMULATION OF GAS-LIQUID TWO-PHASE SLUGGING FLOWS IN RISER PIPELINES USING A PARTICLE-BASED METHOD[C]. Conference on Modelling Fluid Flow, 2025.

[7]  Wei Han, Yingjie Chang*, et al. Research on Recognition Method of Hole Defects in Composite Sleeper Based on X-ray[C]. 2nd Aerospace Frontiers Conference. 2025.


2024年

[1]  Yingjie Chang, Qiang Xu, Suifeng Zou, Xiangyuan Zhao, Quanhong Wu, Yechun Wang, Dominique Thévenin, Liejin Guo. Experiments and predictions for severe slugging of gas-liquid two-phase flows in a long-distance pipeline-riser system[J]. Ocean Engineering, 2024, 301, 117636.

[2]  Yingjie Chang, Conrad Müller, Péter Kováts, Liejin Guo, Katharina Zähringer, Hydrodynamics and shape reconstruction of single rising air bubbles in water using high-speed tomographic particle tracking velocimetry and 3D geometric reconstruction[J]. Experiments in Fluids, 2024, 65, 6.

[3]  Wei Han, Yingjie Chang*. Research on Weak Fault Diagnosis Method of Dual - axes Precision Gear Transmission System[C]. SAE China Event Technical Papers, 2024 (EI, selected outstanding papers)

[4]  刘义艳,郝婷楠,贺晨,常英杰*.基于DBBR-YOLO的光伏电池表面缺陷检测[J].图学学报,2024, 45(5).

[5]  Xiangyuan Zhao, Qiang Xu, Jiqiang Fu, Yingjie Chang, Quanhong Wu, Liejin Guo. Study on eliminating severe slugging by manual and automatic choking in long pipeline-riser system[J]. Chemical Engineering Science, 2024, 292, 119978.

[6]  Bo Huang, Qiang Xu, Yeqi Cao, Haiyang Yu, Yuwen Li, Yingjie Chang, Liejin Guo. Investigation on intermittent flow characteristics in horizontal pipe by visualization measurement method[J]. Experimental Thermal and Fluid Science, 2024, 111329.

[7] Yubo Wang, Yanan Yu, Zhigang Liu, Yingjie Chang, Xiangyuan Zhao, Qiming Wang. Experimental Study on Gas-Liquid Two-Phase Stratified Flow at High Pressure in a Horizontal Pipe[J]. energies, 2024, 17, 1056.


2023年

[1]  Yingjie Chang, Qiang Xu, Suifeng Zou, Xiangyuan Zhao, Quanhong Wu, Yechun Wang, Dominique Thévenin, Liejin Guo. An improved void fraction prediction model for gas-liquid two-phase flows in pipeline-riser systems[J]. Chemical Engineering Science, 2023, 278, 118919.

[2]  Xiangyuan Zhao, Qiang Xu, Quanhong Wu, Yingjie Chang, Yeqi Cao, Suifeng Zou, Liejin Guo. Effect of high pressure on severe slugging and multiphase flow pattern transition in a long pipeline-riser system[J]. Experimental Thermal and Fluid Science, 2023, 148, 110976.

[3]  Quanhong Wu, Suifeng Zou, Qiang Xu, Yingjie Chang, Xiangyuan Zhao, Tian Yao, Liejin Guo. A comparison of gas-liquid two-phase flow behaviors between two pipeline-riser systems with different geometric parameters and different operating pressures: From view of flow pattern identification[J]. Ocean Engineering, 2023, 288. 116179.


2022年

[1]  Yingjie Chang, Qiang Xu, Quanhong Wu, Xiangyuan Zhao, Bo Huang, Yechun Wang, Liejin Guo. Experimental study of the hydraulic jump phenomenon induced by the downstream riser structure in a pipeline–riser system[J]. Chemical Engineering Science, 2022, 256, 117687.

[2]  常英杰,赵向远,吴全红,刘威志,黄博,徐强,郭烈锦.长距离集输-立管中严重段塞流频率特性研究[J].工程热物理学报.2022,43:98-103.(EI: 20220711625245)

[3]  Conrad Müller, Yingjie Chang, Peter Kováts, Katharina Zähringer, Dominique Thévenin. Flow around bubbles: 4D measurement concept with high-speed tomographic system[C]. Budapest, Hungary: 18th International Conference on Fluid Flow Technologies, 2022.


2020年

[1]  Yubo Wang, Yingjie Chang, Zhigang Liu, Xiangyuan Zhao, Liejin Guo. Experimental and Theoretical Study of Interface Characteristics of Gas–Liquid Stratified Flow in Horizontal Pipe at High Pressure [J]. Flow Turbulence and Combustion, 2020, 105, 1249–1275.

[2]   Qiang Xu, Wensheng Li, Yingjie Chang, Haiyang Yu, Liejin Guo. A quantification of penetration length of steam jet condensation in turbulent water flow in a vertical pipe[J]. International Journal of Heat and Mass Transfer, 2020, 146:118818.

[3]  Weizhi Liu, Qiang Xu, Suifeng Zou, Yingjie Chang, Liejin Guo. Optimization of differential pressure signal acquisition for recognition of gas-liquid two-phase flow patterns in pipeline-riser system[J]. Chemical Engineering Science, 2020, 229, 116043.

[4]  赵向,付吉强,常英杰,徐强,郭烈锦.严重段塞流自动及手动节流控制效果实验研究[C].中国工程热物理学会多相流学术会议,大连,2020.

[5]  Yubo Wang, Zhigang Liu, Yingjie Chang, Xiangyuan Zhao, Liejin Guo. Experimental study of gas-liquid two-phase wavy stratified flow in horizontal pipe at high pressure[J]. International Journal of Heat and Mass Transfer, 2019, 143:118537.

[6]  吴全红,赵向远,常英杰,徐强,郭烈锦.空气-水两相管流中节流法控制不稳定流型压差波动特性实验研究[J].海洋工程装备与技术,2019,6(4):7.

[7]  Yingjie Chang, Yubo Wang, Zhigang Liu, Xiangyuan Zhao, Liejin Guo. Slug frequency in air-water inclined pipe flow: Experiment and prediction[C], Rio de Janeiro:10th ICMF 2019.

[8]  Yingjie Chang, Liejin Guo, Yubo Wang, Zhigang Liu, Xiangyuan Zhao. Statistical assessment of experiment on slug frequency in an inclined pipe[C]. Las Vagas:4th TFEC 2019.

[9]  Yubo Wang, Yingjie Chang, Zhigang Liu, Xiangyuan Zhao, Liejin Guo. Experimental study of interface wave characteristics of gas-liquid flow in horizontal pipe at high pressure[C]. Rio de Janeiro:10th ICMF 2019.

[10]  常英杰,刘志刚,黄博,王玉博,徐强,郭烈锦.基于PSD方法的近水平管段塞频率预测研究[C].中国工程热物理学会多相流学术会议,长沙,2019.

[11]  常英杰,郭烈锦,王玉博,刘志刚,赵向远.高压水平管内界面波特性研究[C].中国工程热物理学会多相流学术会议,北京,2018.

[12]  常英杰,郭烈锦,王玉博,刘志刚.高压水平管内空气-水两相流流型特征[C].中国工程热物理学会多相流学术会议,扬州,2017.

[13]  王玉博,郭烈锦常英杰,刘志刚,赵向远.基于水平管流压降信号特征分析的局部流型识别研究[C].中国工程热物理学会多相流学术会议,北京,2018.

[14]  赵向远,郭烈锦,吴全红,常英杰,徐强.节流-分离器联合控制严重段塞流效果研究[C].中国工程热物理学会多相流学术会议,长沙,2019.

科技成果

专利:

[1]    郭烈锦,常英杰,徐强,赵向远,吴全红,黄博,刘威志,王晔春.一种长距离混输管线多相流型转变位置预测系统及方法.中国发明专利,ZL202111156163.5[P]2023-07-18.

[2]  郭烈锦, 徐强, 曹业奇, 常英杰, 赵向远, 黄博, 于海洋. 一种基于Labview与Matlab的油气输运管线危害流型预报及控制方法. 中国发明专利, ZL 202111153235.0[P]. 2024-04-05.

[3]    郭烈锦,徐强,于海洋,刘威志,常英杰,曹业奇,黄博.一种基于水面压差信号的油气管线有害流型超前判别方法.中国发明专利,ZL202111153245.4[P]2023-09-22.

[4]    郭烈锦,赵向远,徐强,常英杰,付吉强,曹业奇,于海洋.一种气液分离器与节流阀联合消除严重段塞流的系统及方法.中国实用新型专利,ZL202122385004.4[P]2022-01-18.

[5]    郭烈锦,徐强,于海洋,刘威志,常英杰,曹业奇,黄博.一种集输立管两相流型在线分析实验系统.中国实用新型专利,ZL202122385002.5[P]2022-04-08.


荣誉奖励

1.陈学俊博士研究生奖学金一等奖,2022,陈学俊院士基金。

2.西安交通大学“优秀研究生干部”,2019-2020,2020-2021,2021-2022。

工作经历

2023-12 - 至今, 长安大学, 能源与电气工程学院, 讲师