win德赢福利入口

黄启玉

发布时间:2026-09-02来源:

姓名:黄启玉

姓名:黄启玉

职称:教授


win德赢福利入口经历:

1997-09至2000-09,石油大学(北京),油气储运工程,博士研究生 对照阅读

1994-09至1997-07,win德赢福利入口(北京),油气储运工程,硕士研究生 延伸阅读

1988-09至1992-07,win德赢福利入口(华东),储运工程,大学本科 继续了解


电子邮箱:ppd@visitkutahya.com

个人主页:/

所在单位:石油工程win德赢福利入口/油气储运工程系


研究方向:(1)原油管道蜡沉积预测及蜡层防控技术
(2)高含水油田原油低温集输技术
(3)二氧化碳储存与利用技术
(4)油库安全风险评价及应急防控技术


代表性论文著作:

[1] Dongxu Zhang, Qiyu Huang, Wei Wang, et al. Effects of waxes and asphaltenes on CO2 hydrate nucleation and decomposition in oil-dominated systems. J. Nat. Gas Sci. Eng. 2021, 88, 103799.

[2] Dongxu Zhang, Qiyu Huang, Rongbin Li, et al. Nucleation and growth of gas hydrates in emulsions of water in asphaltene-containing oils. Energy & Fuels 2021, 35, 5853-5866.

[3] Xuedong Gao, Qiyu Huang, Xun Zhang, Xiangrui Zhu, and Yu Zhang. A New Wax Removal Empirical Model of Fully Coated Foam Pig.SPE Journal. 2021, 26: 737-749.

[4] Xuedong Gao, Qiyu Huang, Xun Zhang, Yu Zhang, Xiangrui Zhu, and Jinxu Shan. Experimental study on the wax removal physics of foam pig in crude oil pipeline pigging. Journal of Petroleum Science and Engineering, 2021, 205(5):108881.

[5] Yang Lyu, Qiyu Huang, Rongbin Li, et al. Effect of temperature on wall sticking of heavy oil in low-temperature transportation. Journal of Petroleum Science and Engineering, 2021, 206, 108944.

[6] Yang Lyu, Qiyu Huang, Fuqiang Zhang, et al. Study on adhesion of heavy oil/brine/substrate system under shear flow condition. Journal of Petroleum Science and Engineering, 2021, 109225.

[7] Xun Zhang, Qiyu Huang, Yu Zhang., et al. Predicting the yield stress of oil-wax gels with long-chained n-alkanes [J]. Journal of Petroleum Science and Engineering, 2021(2):109238.

[8] Xun Zhang, Qiyu Huang, Yu Zhang, et al. A Comprehensive Model for Cup Pig Incorporating Deposits Rheology and Pig Deformation, Energy & Fuels 35 (2021) 16578-16598.

[9] Yan Zhang, Qiyu Huang, Yue Cui, et al. Estimating wall sticking occurrence temperature based on adhesion force theory[J]. Journal of Petroleum Science and Engineering, 2020, 187: 106778.

[10] Rongbin Li, Qiyu Huang, Dongxu Zhang, et al. An aging theory-based mathematic model for estimating the wax content of wax deposits using the Fick's second law[J]. AIChE Journal, 2020, 66(4): 16892.

[11] Wei Wang, Qiyu Huang, Sijia Hu, et al. Influence of Wax on Cyclopentane Clathrate Hydrate Cohesive Forces and Interfacial Properties[J]. Energy & Fuels, 2020, 34(2): 1482-1491.

[12] Xuedong Gao, Qiyu Huang, Xun Zhang, et al. Estimating Wax Plug Transportation Force in Crude Oil Pipeline Pigging[J]. Energy & Fuels, 2020, 34(3): 3110-3120.

[13] Weidong Li, Qiyu Huang, Xue Dong, et al. A new model for predicting oil-wax gel strength as a function of wax crystal precipitation and structural characteristics[J]. Journal of Petroleum Science and Engineering, 2020, 188: 106811.

[14] Xuedong Gao, Qiyu Huang, Xun Zhang, et al. Study on wax precipitation characteristics of wax deposit in pipes[J]. The Canadian Journal of Chemical Engineering, 2020, 98(5): 1202-1210.

[15] Rongbin Li, Qiyu Huang, Fuyong Huo, et al. Effect of shear on the thickness of wax deposit under laminar flow regime[J]. Journal of Petroleum Science and Engineering, 2019, 181: 106212.

[16] Dongxu Zhang, Qiyu Huang, Haimin Zheng, et al. Effect of Wax Crystals on Nucleation during Gas Hydrate Formation[J]. Energy & Fuels, 2019, 33(6): 5081-5090.

[17] Weidong Li, Qiyu Huang, Wenda Wang, et al. Estimating the wax breaking force and wax removal efficiency of cup pig using orthogonal cutting and slip-line field theory[J]. Fuel, 2019, 236: 1529-1539.

[18] Yue Cui, Qiyu Huang, Yang Lv, et al. Investigating the dynamical stability of heavy crude oil-water systems using stirred tank[J]. Journal of Petroleum Science and Engineering, 2019, 183: 106386.

[19] Wei Wang, Qiyu Huang, Haimin Zheng, et al. Investigation of wax deposition and effective diffusion coefficient in water-in-oil emulsion system[J]. Journal of Thermal Analysis and Calorimetry, 2018, 134(2): 1031-1043.

[20] Si Li, Qiyu Huang, Dan Zhao, et al. Relation of heat and mass transfer in wax diffusion in an emulsion of water and waxy crude oil under static condition[J]. Experimental Thermal and Fluid Science, 2018, 99: 1-12.

[21] Weidong Li, Qiyu Huang, Xue Dong, et al. A theoretical model for predicting the wax breaking force during pipeline pigging[J]. Journal of Petroleum Science and Engineering, 2018, 169: 654-662.

[22] Weidong Li, Qiyu Huang, Wenda Wang, et al. Study on wax removal during pipeline-pigging operation[J]. SPE Production & Operations, 2018

[23] Haimin Zheng, Qiyu Huang, Wei Wang, et al. Induction Time of Hydrate Formation in Water-in-Oil Emulsions[J]. Industrial & Engineering Chemistry Research, 2017, 56(29): 8330-8339.

[24] Qiyu Huang, Wenda Wang, Weidong Li, Yijie Ren, Fangda Zhu. A Pigging Model for Wax Removal in Pipes[J], SPE Production & Operations, 2017.

[25] Si Li, Qiyu Huang, Kaifeng Fan, Dan Zhao, Zhijuan Lv, Transportation technology with pour point depressant and wax deposition in a crude oil pipeline[J],Petroleum Science and Technology,2016.09

[26] Kaifeng Fan, Qiyu Huang, Si Li, Determination of the optimizing operating procedure for DSC test of wax-solvent samples with narrow and sharp wax peak and error analysis of data reliability[J], Journal of Thermal Analysis and Calormetry, 2016.12

[27] Haimin Zheng, Qiyu Huang,Wei Wang, Viscosity variation of ice suspensions formed from water-in-oil emulsions [100], 11th International Pipeline Conference, Calgary, AB, Canada 2016.09.26-2016.09.3

[28] Qiyu Huang, Wenda Wang, Weidong Li, et al. A Pigging Model for Wax Removal in Pipes[100], SPE annual technical conference and exhibition, Dubai, 2016.09.26-2016.09.28.

[29] Zheng, Haimin, Huang, Qiyu; Wang, Changhui. Wall sticking of high water-cut crude oil transported at temperatures below the gel point[J]. Journal of Geophysics and Engineering; 2015, 12(6): 1008-1014.

[30] Wenda Wang, Qiyu Huang, Yangjin Liu, Kamy Sepehrnoori. Experimental Study on Mechanisms of Wax Removal during Pipeline Pigging[100]. SPE ATCE, 2015.

[31] Kaifeng Fan, Qiyu Huang, Si Li and Dan Zhao. Wax Deposition Study in a Cold-finger System with Model Oil[100]. SPE Apogce, 2015.

[32] Wenda Wang, Qiyu Huang, Changhui Wang, Si Li, Wenxing Qu, Jiadi Zhao and Manqiu He. Effect of operating conditions on wax deposition in a laboratory flow loop characterized with DSC technique [J]. Journal of Thermal Analysis and Calorimetry, 2015, 119 (1): 471-485.

[33] Li S, Huang Q, Wang L, et al. Research on viscoelastic properties of water in waxy crude oil emulsion gels with the effect of droplet size and distribution [J]. Canadian Journal of Chemical Engineering, 2015, 93(12).

[34] Wang Wenda, Huang Qiyu, Huang Jun, Pang Quan, Fu Jun and Wang Fenghui. Study of Paraffin Wax Deposition in Seasonally Pigged Pipelines [J]. Chemistry and Technology of Fuels and Oils, 2014, 50 (1): 39-50.

[35] Wenda Wang, Qiyu Huang, Si Li, Changhui Wang and Xi Wang. Identifying Optimal Pigging Frequency for Oil Pipelines Subject to Non-uniform Wax Deposition Distribution[100]. IPC, 2014.

[36] Si Li, Qiyu Huang, Wenda Wang, Changhui Wang and Zhenjun Ding. Experimental Investigation of Wax Deposition at Different Deposit locations through a Detachable Flow Loop Apparatus[100]. IPC, 2014.

[37] Si Li, Qiyu Huang, Man He and Wenda Wang. Effect of water fraction on rheological properties of waxy crude oil with emulsions [J]. Journal of Dispersion Science and Technology, 2014, 35 (8): 1114-1125.

[38] Wenda Wang, Qiyu Huang. Prediction for Wax Deposition in Oil Pipelines Validated by Field Pigging [J]. Journal of the Energy Institute, 2014, 87(3): 196-207.

[39] Shasha He, Qiyu Huang. Research on Wax Deposition in the Pipeline without Pigging for a Long Time [J]. Petroleum Science and Technology, 2014, 32 (3): 316-323.

[40] Yanting Wang, Qiyu Huang. Evaluation of Measurement Methods of Waxy Crude Oil Thixotropy[J]. Journal of Dispersion Science and Technology, 2014, 35 (9): 1255-1263.

[41] 李思, 黄启玉,范开峰,石油流体析蜡特性检测技术[J],石油学报(石油加工)2016.12.1032(06).

[42] 毕权,黄启玉,范开峰,原油蜡沉积规律及沉积物性质的径向差异[J],油气储运,2016.06.293509):952~957.


代表性专利与软著:

1、黄启玉、郑海敏、王唯,一种高压蜡沉积模拟装置和方法
2、黄启玉、王文达、刘阳进,原油管道通球清蜡模拟实验装置及实验方法
3、黄启玉、孙旭、李文欣、林福贺、赵旗,测试原油储罐中不同高度沉积层相对硬度的装置及其应用
4、黄启玉、吕志娟、李思,管输条件下蜡沉积定量化实验装置及实验方法


重要奖励与荣誉:

12018年“油气管道流动保障关键技术研究及应用”获win德赢福利入口部高等win德赢福利入口科学研究优秀成果二等奖。

22016年“含蜡原油管道蜡沉积预测技术研究与应用”获中国石油和化学工业联合会科学进步一等奖

32014年“高凝原油管道预热投产与低输量运行技术及应用”获中国石油和化学工业联合会科学进步二等奖

42013年“西部能源战略通道多品种原油安全高效输送技术研究”获新疆维吾尔自治区科技进步奖一等奖

52010年“多品种原油同管道高效安全输送新技术”获中国石油天然气win德赢福利入口win德赢福利入口科技进步一等奖(同时入选“2010年中国石油十大科技进展”)

62007年“多种原油混输流变性研究”获中国石油化工win德赢福利入口科技进步三等奖

72004年“原油流变学和改性输送技术研究”获中国石油天然气股份win德赢福利入口科技进步二等奖

82001年“西部原油长输管道常温输送技术研究”获中国石油天然气win德赢福利入口win德赢福利入口科技进步二等奖

91999年“库鄯线常温输送与大落差地段工艺条件技术研究”获中国石油天然气win德赢福利入口win德赢福利入口科技进步一等奖


社会与学术兼职:

1、中国石油天然气win德赢福利入口win德赢福利入口试验基地地面工程试验基地油气田地面系统复杂流动与传热研究室主任

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