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[1] ʯÓÍ×ÔÈ»Æø¹ú¼Ò´¢±¸¿âÉèÊ©ÖÂÔÖ»úÀíºÍÇå¾²Ó°ÏìÆÀ¼Û-ʯÓͺÍ×ÔÈ»Æø´¢¹Þ¶àÔÖÖÖñîºÏЧӦÓëʹʷ´ÑÝÊÖÒÕÑо¿£¬¹ú¼ÒÖصãÑз¢ÍýÏ룬×Ó¿ÎÌ⣬ÈÏÕæÈË

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[9] µØÃ漯ÊäÔËÐвÎÊýÓÅ»¯ÊÖÒÕÑо¿£¬ÖйúʯÓÍ×ÔÈ»Æø¹É·ÝÓÐÏÞ¹«Ë¾¼ªÁÖÓÍÌï·Ö¹«Ë¾£¬ÈÏÕæÈË

Publications

[1] 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.

[2] 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.

[3] 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.

[4] 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.

[5] 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.

[6] 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.

[7] 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.

[8] 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.

[9] 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.

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