论文
发表科研论文100余篇,代表性论文主要有:
1.薛毓铖,王成文*,陈泽华,等.两亲高温缓凝剂制备及自组装与温度智能响应特性.石油学报,2023.
2.王成文*,王桓,薛毓铖,杨乐,王瑞和,等.高密度水泥浆高温沉降稳定调控热增黏聚合物研制与性能.石油学报,2020.
3.于永金,薛毓铖,夏修建,王成文*,等.抗240℃超高温固井缓凝剂的合成及性能评价,天然气工业,2022.
4.王成文*,杨乐,薛毓铖,等.南海天然气水合物地层固井二界面胶结特性模拟.中南大学学报(自然科学版),2022.
5.王成文*,周伟,陈新,陈泽华,李勇.纳米SiO2溶胶对高温加砂油井水泥石强度作用规律及机制.中国石油大学学报(自然科学版),2021.
6.孙晗森,王成文*.固井水泥浆对裂缝割理发育型煤层气储层的伤害机理.天然气工业,2018.
7.王成文*,郑飞,孙晗森,王德桂,王瑞和,马洪涛.改善煤岩润湿性的强化煤层固井胶结技术.天然气工业,2017.
8.王力,郑飞,孙晗森,马洪涛,王德桂,王成文*.煤储层固井胶结强度性能及改善方法研究.煤炭科学技术,2019.
9.曹利民,王成文,刘宝山,刘建林,马驰骋.套管-水泥-地层系统水泥层应力分析.山东理工大学学报(自然科学版),2022.
10. 郭辛阳,宋雨媛,步玉环,郭胜来,柳华杰,王成文.基于损伤力学变内压条件下水泥环密封完整性模拟.石油学报,2020.
11.郭辛阳,步玉环,沈忠厚,李娟,王成文,柳华杰.井下复杂温度条件对固井界面胶结强度的影响.石油学报,2010.
12.刘书杰,刘和兴,王成文*,孟仁洲,等.超深水裂缝储层自降解随钻堵漏剂性能研究.中国海上油气,2022.
13.刘书杰,徐一龙,宋丽芳,王成文*,等.超深水裂缝储层钻井堵漏高效降解凝胶体系.油田化学,2023.
14.陈二丁,赵洪涛,李秀灵,张明星,周向东,王成文*.用于滩坝砂低渗透油藏的复合盐低伤害钻井液技术.钻井液与完井液,2018.
15.王翔,王星星,王成文*,张辉.化学充氮泡沫水泥浆制备原理与应用.钻井液与完井液,2018.
16.王楚峰,王瑞和,王方祥,王成文.煤层气井固井泡沫水泥浆密度变化规律及应用.中国石油大学学报(自然科学版),2017.
17.陈二丁,王成文*,孟仁洲.一种高效清除井壁滤饼的新型固井冲洗液.天然气工业,2015.
18.孟仁洲,牟少敏,李渊,王成文,等.纳米乳液型冲洗隔离液体系构建及性能评价.钻井液与完井液,2023.
19.王成文,王瑞和,陈二丁,等.锂盐早强剂改善油井水泥的低温性能及其作用机理.石油学报,2011.
20.王成文,王瑞和,等.深水固井水泥性能及水化机理.石油学报,2009.
21.Yucheng Xue, Chengwen Wang*, Jingping Liu, Jinsheng Sun, et al. A cement hydration kinetics model and its application in designing cement formulation for natural gas hydrate well. Cement and Concrete Research, 2024.
22.Wang CW*, Meng RZ, Chen ZH, Yang SJ, Chen SL, Yu YJ, Jin JZ. Study on the Key Issue in the Application of Nanoemulsions in Preflush Spacer: Contamination of Cement Slurry by Nanoemulsions. SPE Journal, 2022.
23.Wang CW*, Chen ZH, Chen ED, Liu JY, Xiao FF, Zhao HX. Ultrasonic-Assisted Removal of Undesirable Submicron-Sized Particulates To Realize Sustainable and Eco-Friendly Circulation of Drilling Fluid. SPE Journal,2021.
24.Meng RZ, Wang CW*, Shen ZH. Optimization and characterization of highly stable nanoemulsion for effective oil-based drilling fluid removal. SPE Journal, 2020.
25. Wenjian Yue, Chengwen Wang,* Qi Feng, Feng Zhao, et al. Nano-Enhancing Polymer as A Fluid Loss Additive for Ultra-High Temperature Cementing. Construction and Building Materials, 2024.
26.Zhang Yaxiong, Wang Chengwen, Chen Zehua, Yu Yongjin, Jing Jianzhou, et al. Research on the strength retrogression and mechanism of oil well cement at high temperature (240 ℃) . Construction and Building Materials, 2023.
27.Chen X, Wang CW*, Xue YC, Chen ZH, Jin JZ, Wang RH. A novel thermo-thickening viscosity modifying admixture to improve settlement stability of cement slurry under high temperatures. Construction and Building Materials, 2021.
28.Xue Yucheng, Wang Chengwen*, Chen Zehua, et al. Enhanced cement formation for well completion in gas hydrates reservoirs. Geoenergy Science and Engineering, 2023.
29.Cui Xinying, Wang Chengwen*, Huang Weian, Zhang Shifeng,et al. Multiple Hydrogen Bonding-Assisted High-Strength Hydrogel of Silica/Polyacrylamide Nanocomposite Cross-Linked with Polyethylenimine. ACS omega, 2023.
30.Meng RZ, Wang CW*, Jin JZ, Wang RH. Self-assembly of hydrophobically associating amphiphilic polymer with surfactant and its effect on nanoemulsion. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2022.
31.Lifang Song, Chengwen Wang*, Zehua Chen*, Kaihe Lv, Zhiyuan Wang. Effects of Salty Additives in Drilling Fluids on Hydrate Formation Dynamics and Phase Equilibrium. Energy & Fuels, 2023.
32.Wei Zhou, Chengwen Wang*, Renzhou Meng, et al. Study on thermal insulation cement and its thermal insulation characteristics for geothermal wells. Scientific Reports, 2023.
33.Wang CW*, Meng RZ, Li MZ, Kuru Ergun, Jin JZ. A Novel Casing Eccentricity Limit Model for Optimizing the Placement of Centralizers in Highly-Deviated Wells. Arabian Journal for Science and Engineering, 2022.
34.Ying Zhang, Xule Chen, Miao Dong, Meiyan Li, Chengwen Wang, Yanzong Zhang. Boron removal by iron-aluminum combined anodes from fracturing flowback fluid: Advantages and mechanisms. Desalination and Water Treatment,2024.
35.Xinxiang Yang, Ergun Kuru, Murray Gingras, Chengwen Wang, Rui Wang. Nano-computed tomography analysis of downscaled cement sheath samples: Insights into porosity distribution. Geoenergy Science and Engineering, 2024.
36.Wu ZQ, Chen ZH, Liu JP, Wang CW. An Investigation into PVA Fiber Modified with SiO2 for Improving Mechanical Properties of Oil-Well Cements. Materials, 2024.
37.Zhiqiang Wu, Zehua Chen, Chengwen Wang. Study of Retention of Drilling Fluid Layer on Annulus Wall during Cementing. Processes 2024.
38. Xu Hongzhi;Wang Jian;Li Shuxia;Zhao Fengrui;Wang Chengwen;Guo Yang. Numerical Investigation of Combined Production of Natural Gas Hydrate and Conventional Gas. Fluid Dynamics & Materials Processing , 2024.
39. Hongzhi Xu, Zhiwei Hao, Chengwen Wang, Junyu Deng, Tianju Wang, Jianhua Zhang. In Situ Emulsion Polymerization to Multifunctional Polymer Nanocomposites: A Review. Macromolecular Chemistry and Physics, 2023.
40.Wu ZQ, Chen ZH, Zhao YP, Xue YC, Wang CW*, et al. Theoretical and Experimental Study on Cementing Displacement Interface for Highly Deviated Wells. Energies, 2023.
41.Wang CW*, Wang YJ, Ergun K, Chen ED, Xiao FF, Chen ZH, Yang DY. A new low-damage drilling fluid for sandstone reservoirs with low-permeability: Formulation, evaluation, and applications. Journal of Energy Resources Technology, 2021.
42.Meng RZ, Wang CW*, Shen ZH, Wang RH, Ergün K, Jin JZ. Low-energy formation of in-situ nanoemulsion at constant temperature for oil removal. Journal of Molecular Liquids, 2020.
43.Chen X, Wang CW*, Wang YJ, Wang H, Wang RH. Prevention Strategy of Cement Slurry Sedimentation under High Temperature. Part 1: A Polymer with Continuous Thermo-Thickening Behavior from 48 to 148 °C. Journal of Physical Chemistry C, 2019.
44.Wang CW*, Chen X, Wang RH, Xiao FF. Synthesis and performance evaluation of a novel biodegradable dispersant for offshore cementing. Journal of Natural Gas Science and Engineering, 2017.
45.Wang CW*, Chen X, Wang RH. Do chlorides qualify as accelerators for the cement of deepwater oil wells at low temperature? Construction and Building Materials, 2017.
46.Wang CW*, Chen X, Wang RH. Can nanosilica sol prevent oil well cement from strength retrogression under high temperature? Construction and Building Materials, 2017.
47.Wang, CW*, Meng RZ, Xiao FF, Wang RH. Synthesis and performance evaluation of a novel biodegradable dispersant for offshore cementing. Journal of Natural Gas Science and Engineering, 2017.
48.Wang CW*, Chen X, Wang L, Ma HT, Wang RH. A novel self-generating nitrogen foamed cement: The preparation, evaluation and field application. Journal of Natural Gas Science and Engineering, 2017.
49. Wang Chengwen*, Wang Ruihe, Zhou Weidong. The Use of a Novel Spacer and Ultralow-Density Cement System to Control Lost Circulation in Coalbed- Methane Wells. SPE Drilling & Completion. 2015.
50. Wang Chengwen*, Wang Ruihe, Li Huazhou, et al. Design and Performance Evaluation of a Unique Deepwater Cement Slurry. SPE Drilling & Completion, 2011.
专利
授权发明专利50余件,近年来代表性专利主要有:
1.美国专利:High-temperature retarder suitable for oil and gas well cementation, preparation method thereof and cementing slurry,第一发明人,2020年授权.
2.美国专利:Oil well cement settlement stabilizer for high-temperature cementing of oil and gas wells and preparation method thereof, and cement slurry,第一发明人,2020年授权.
3.美国专利:Foam stabilizer composition foamed cement slurry and additive composition thereof,第一发明人,2017年授权.
4. 中国发明专利:高温高密度固井水泥浆用悬浮稳定剂及制备方法与应用,第一发明人,2024年授权.
5. 中国发明专利:高温固井悬浮稳定剂乳液聚合物及其制备方法与应用,第一发明人,2024年授权.
6. 中国发明专利:高温钻井液主动降温用耐高温高压微球制备方法及其应用,第一发明人,2024年授权.
7. 中国发明专利:一种提高海洋天然气水合物地层固井二界面胶结强度的方法,第一发明人,2024年授权.
8. 中国发明专利:高温高压可膨胀堵漏剂组成与制备方法及其应用,第一发明人,2023年授权.
9. 中国发明专利:一种油气井固井用超高温弹韧剂及其组成与应用,第一发明人,20234年授权.
10. 中国发明专利:非常规油气井下原位加热开采固井材料体系与组成及应用,第一发明人,2023年授权.
11. 中国发明专利:固井用铝酸盐水泥两性离子聚合物缓凝剂的组成、制备及应用,第一发明人,20234年授权.
12. 中国发明专利:油井水泥石微观结构仿生增强增韧调控方法与水泥浆体系及应用,第一发明人,2023年授权.
13. 中国发明专利:纤维接枝可膨胀树脂堵漏材料组成与制备方法及其固井防漏堵漏应用,第一发明人,2023年授权.
14. 中国发明专利: 一种适用于深水、超深水钻井液的自降解防漏堵漏聚合物复合材料制备方法及应用,发明人,2023年授权.
15. 中国发明专利:深水、超深水裂缝性储层钻井堵漏用降解凝胶体系制备谢文法及应用,发明人,2023年授权.
16.中国发明专利:适用于低温固井用致密韧性防气窜水泥浆体系及其组成,第一发明人,2022年授权.
17.中国发明专利:一种钻井液微细钻屑颗粒清除方法及其钻井液固相控制的随钻处理应用方法,第一发明人,2021年授权.
18.中国发明专利:纳米材料混合改性超高温高性能固井水泥浆体系及其制备方法,第一发明人,2021年授权.
19.中国发明专利:适用于油气井固井的温度自适应型高温缓凝剂及其制备方法和固井水泥浆,第一发明人,2021年授权.
20.中国发明专利:适用于油气井固井的温度响应型高温缓凝剂及其制备方法和固井水泥浆,第一发明人,2021年授权.
21.中国发明专利:稳泡剂组合物和泡沫水泥浆及其制备方法,第一发明人,2020年授权.
22.中国发明专利:一种抗高温耐腐蚀低密度固井液及其添加剂组合物和应用,第一发明人,2020年授权.
23.中国发明专利:一种高强度高韧性耐高温固井水泥浆体系及其制备方法和设计方法,第一发明人,2019年授权.
24.中国发明专利:一种适用于油井水泥浆的热增黏沉降稳定剂及制备方法与应用,第一发明人,2019年授权.
25.中国发明专利:一种耐高温固井材料体系,第一发明人,2018年授权.
26.中国发明专利:一种低温固井水泥浆体系及组成,第一发明人,2018年授权.
27.中国发明专利:稳泡剂组合物及其应用和泡沫水泥浆及其添加剂组合物和应用,第一发明人,2018年授权.
28.中国发明专利:一种高效固井冲洗液体系,第一发明人,2017年授权.
29.中国发明专利:一种新型高温低密度水泥浆体系,第一发明人,2017年授权.
30.中国发明专利:高温固井材料体系及组成,第一发明人,2017年授权.