黑料社

浏览次数:
周佳锦
副教授
博士研究生导师

[1] Zhang Rihong, Zhou Jiajin*, Gong Xiaonan, Ming Wei, Wang Teng. (2025). Experimental and DEM simulation on engineering properties of soft soil stabilized by industrial solid waste – cement synergy. Case Studies in Construction Materials, 2025, //doi.org/10.1016/j.cscm.2025.e04852

[2] Zhou Jiajin, Zhang Rihong, Gong Xiaonan, Yu Jianlin. (2025). Field study on uplift bearing capacity of pre-bored grouted planted pile and bored pile in deep soft soil. Ocean Engineering, 322, 120477.

[3] Zhou Jiajin, Zhang Rihong, Yu Jianlin, Gong Xiaonan, Ming Wei (2025). Field study on the shaft capacity of pre-bored grouted planted pile embedded in deep soft soil. Acta Geotechnica, 20, 1935–1946.

[4] Li, B., Zhou Jiajin*, Zhang, R., Gong, X., & Liu, Q. (2024). Research on Load Transfer Mechanism of Pre-Stressed High-Strength Concrete Nodular Pile Embedded in Deep Soft Soil. Applied Sciences, 14(22), 10714.

[5] Yu, J., Guo, J., Zhou Jiajin*, Hu, H., & Gong, X. (2024). A Simplified Theoretical Method for Estimating the Effect of Capsule Grouting Expansion Technology on Controlling Pile Deformation. Applied Sciences, 14(13), 5449.

[6] Zhou Jiajin, Zhou Shi-le, Yu Jianlin, Ma Jun-jie, Zhang Rihong, Gong Xiaonan, Ren Jianfei. Experimental study on the frictional capacity of square pile – cemented soil interface with different surface roughness. Acta Geotechnica. 2024, 19(9): 5819-5831.

[7] Yu Jianlin, Chen Jinpeng, Zhou Jiajin*, Xu Jiacheng, Gong Xiaonan. Analytical modeling for the behavior of concrete-cored cement mixing (CCM) pile composite foundation under embankment. Computers and Geotechnics. 2024

[8] Zhou Jiajin, Yu Jianlin, Gong Xiaonan, Zhang Rihong. Field study on installation effects of pre-bored grouted planted pile in deep clayey soil. Canadian Geotechnical Journal, 2023.

[9] Zhou Jia-Jin, Jian-Fei Ren, Jun-Jie Ma, Jian-Lin Yu, Ri-Hong Zhang and Xiao-Nan Gong. Laboratory tests on the frictional capacity of core pile – cemented soil interface. Geotechnical Engineering (Proceedings of the ICE), 2023, 177(6): 692-701.

[10] Yu Jianlin, Zhou Jiajin*, Gong Xiaonan, Rihong Zhang. The frictional capacity of smooth concrete pipe pile – cemented soil interface for pre-bored grouted planted pile. Acta Geotechnica, 2023

[11] Jianlin Yu, Zhou Jia-jin*, Rihong Zhang, Xiaonan Gong. Installation effects and behavior of driven pre-stressed high-strength concrete nodular pile in saturated deep soft clay. ASCE's International Journal of Geomechanics, 2023, 23(3): 05022007.

[12] Jianlin Yu, Zihao Mao, Zhou Jia-jin*, Zhongxiang Yu, Xiangyu Liu and Xiaonan Gong. Experimental Study on Engineering Properties of Cemented Soil with High Water Content. Appl. Sci. 2023, 13, 937. //doi.org/10.3390/app13020937

[13] Hu, H.; Jin, Q.; Yang, F.; Zhou Jia-jin*; Ma, J.; Gong, X.; Guo, J. A Novel Method for Testing the Effect of Base Post-Grouting of Super-Long Piles. Appl. Sci. 2022, 12, 10996. //doi.org/10.3390/app122110996

[14] Hu, H.; Yang, F.; Tang, H.; Zeng, Y.; Zhou Jia-jin*; Gong, X. Field Study on Earth Pressure of Finite Soil Considering Soil Displacement. Appl. Sci. 2022, 12, 8059. //doi.org/10.3390/app12168059

[15] Yu Jianlin, Zhou Jiajin*, Gong Xiaonan, et al. Shaft capacity of prestressed high strength concrete (PHC) pile-cemented soil column embedded in clayey soil. Soils and Foundations, 2021, 61: 1086–1098.

[16] Zhou Jiajin, Yu Jianlin, Gong Xiaonan, et al. Field study on the behavior of pre-bored grouted planted pile with enlarged grout base. Acta Geotechnica, 2021, 16: 3327–3338.

[17] Yu Jianlin, Zhou Jiajin*, Gong Xiaonan, et al. Centrifuge study on behavior of rigid pile composite foundation under embankment in soft soil. Acta Geotechnica, Acta Geotechnica, 2021, 16: 1909–1921.

[18] Zhou Jiajin, Yu Jianlin, Gong Xiaonan, et al. Field tests on behavior of pre-bored grouted planted pile and bored pile embedded in deep soft clay. Soils and Foundations, 2020, 60(2): 551-561.

[19] Zhou Jiajin, Yu Jianlin, Gong Xiaonan, et al. The effect of cemented soil strength on the frictional capacity of precast concrete pile – cemented soil interface. Acta Geotechnica. 2020, 15: 3271-3282.

[20] Zhou Jiajin, Gong Xiaonan, Zhang Rihong, et al. Field behavior of pre-bored grouted planted nodular pile embedded in deep clayey soil. Acta Geotechnica. 2020, 15: 1847-1857.

[21] Zhou Jiajin, Gong Xiaonan, Zhang Rihong, et al. Shaft capacity of pre-bored grouted planted nodular pile under various overburden pressures in dense sand. Marine Georesources & Geotechnology, 2020, 38(1): 97-107.

[22] Zhou Jiajin, Yu Jianlin, Gong Xiaonan, et al. Influence of soil reinforcement on the uplift bearing capacity of pre-stressed high-strength concrete pile embedded in clayey soil. Soils and Foundations, 2019, 59(6): 2367-2375.

[23] Zhou Jiajin, Gong Xiaonan, Zhang Rihong. Model tests comparing the behavior of pre-bored grouted planted piles and wished-in-place concrete pile in dense sand. Soils and Foundations, 2019, 59(1): 84-96.

[24] Zhou Jiajin, Gong Xiaonan, Wang Kuihua, et al. Shaft capacity of the pre-bored grouted planted pile in dense sand. Acta Geotechnica, 2018, 13(5): 1227-1239.

[25] Zhou Jiajin, Gong Xiaonan, Wang Kuihua, et al. Effect of cemented soil properties on the behavior of pre-bored grouting planted nodular pile under compression. Journal of Zhejiang University-Science A(Applied Physics & Engineering), 2018, 19(7): 534-543.

[26] Zhou Jiajin, Gong Xiaonan, Wang Kuihua, et al. A simplified nonlinear calculation method to describe the settlement of pre-bored grouting planted nodular piles. Journal of Zhejiang University-Science A (Appl Phys & Eng), 2017, 18(11): 895-909.

[27] Zhou Jiajin, Gong Xiaonan, Wang Kuihua, et al. Testing and modeling the behavior of pre-bored grouting planted piles under compression and tension. Acta Geotechnica, 2017, 12(9): 1061-1075.

[28] Zhou Jiajin, Gong Xiaonan, Wang Kuihua, et al. A Model Test on the Behavior of a Static Drill Rooted Nodular Pile Under Compression. Marine Georesources & Geotechnology, 2016, 34(3): 293-301.

[29] Zhou Jiajin, Gong Xiaonan, Wang Kuihua, et al. A field study on the behavior of static drill rooted nodular piles with caps under compression. Journal of Zhejiang Universityence A, 2015, 16(12): 951-963.

[30] Zhou Jiajin, Wang Kuihua, Gong Xiaonan, et al. Bearing capacity and load transfer mechanism of a static drill rooted nodular pile in soft soil areas. Journal of Zhejiang University-Science A(Applied Physics & Engineering), 2013, 14(10): 705-719.

[31] 龚晓南, 罗子昂, 周佳锦*, 张日红. 软土地区静钻根植桩抗压承载力计算方法研究 [J]. 岩土工程学报, 2025.

[32] 陈卓杰, 周佳锦*, 陈伟乐, 刘健, 龚晓南. 深中通道沉管隧道深层水泥搅拌桩复合地基沉降计算分析[J]. 浙江大学学报(工学版), 2024.

[33] 周佳锦, 马俊杰, 俞建霖, 龚晓南, 张日红. 静钻根植桩竖向承载性能现场试验研究[J]. 岩土工程学报, 2024.

[34] 周佳锦,马俊杰,俞建霖,龚晓南,张日红. 静钻根植桩施工环境效应现场试验研究[J]. 土木工程学报, 2023, 网络发表 //doi.org/10.15951/j.tmgcxb.22121216

[35] 任建飞, 周佳锦*, 龚晓南, 俞建霖. 方桩 – 水泥土接触面摩擦特性试验研究[J]. 浙江大学学报(工学版), 2023, 57(07): 1374-1381.

[36] 俞建霖, 过锦, 周佳锦*, 等.考虑空间效应的均质地基内撑式基坑开挖对邻近桩基影响分析[J]. 土木工程学报, 2023, 56(08): 140-152.

[37] 刘清瑶,周佳锦*, 龚晓南,张日红,黄晟.软土地基中预应力竹节桩承载性能数值模拟[J].湖南大学学报(自然科学版), 2023, 50(03): 235-244.

[38] 俞建霖, 徐嘉诚, 周佳锦*, 等. 混凝土芯水泥土复合桩混凝土-水泥土界面摩擦特性试验研究[J]. 土木工程学报, 2022, 55(8): 93-104.

[39] 俞建霖, 杨晓萌, 周佳锦*, 等. 砼芯水泥土桩复合地基工作性状研究[J]. 中南大学学报:自然科学版, 2022, 53(7): 2606-2618.

[40] 俞建霖, 杨晓萌, 周佳锦*, 等. 桩网复合地基支承路堤填土荷载传递规律[J]. 中南大学学报:自然科学版, 2022, 52(6): 2199-2210.

[41] 黄晟, 周佳锦*, 龚晓南, 等. 静钻根植桩抗压抗拔承载性能试验研究[J]. 湖南大学学报(自然科学版), 2021, 48(1): 30-36.

[42] 周佳锦, 张日红, 黄晟, 等. 软土地区预应力竹节桩与管桩抗压承载性能研究[J]. 天津大学学报: 自然科学与工程技术版, 2019, 52(A01): 9-15.

[43] 周佳锦, 龚晓南, 严天龙, 等. 软土地区填砂竹节桩抗压承载性能研究[J]. 岩土力学, 2018, 39(9): 3425-3432.

[44] 周佳锦, 龚晓南, 王奎华, 等. 层状地基中静钻根植竹节桩单桩沉降计算[J]. 岩土力学, 2017, 38(1): 109-116.

[45] 周佳锦, 王奎华, 龚晓南, 等. 静钻根植竹节桩桩端承载性能试验研究[J]. 岩土力学, 2016, 37(9):2603-2609.

[46] 周佳锦, 王奎华, 龚晓南, 等. 静钻根植抗拔桩承载性能数值模拟[J]. 浙江大学学报(工学版), 2015, 49(11): 2135-2141.

[47] 周佳锦, 龚晓南, 王奎华, 等. 静钻根植竹节桩桩端承载性能数值模拟研究[J]. 岩土力学, 2015(s1): 651-656.

[48] 周佳锦, 龚晓南, 王奎华, 等. 静钻根植竹节桩荷载传递机理模型试验[J]. 浙江大学学报(工学版), 2015, 49(3):531-537.

[49] 周佳锦, 龚晓南, 王奎华, 等. 静钻根植竹节桩抗拔承载性能试验研究[J]. 岩土工程学报, 2015, 37(3):570-576.

[50] 周佳锦, 龚晓南, 王奎华, 等. 静钻根植竹节桩在软土地基中的应用及其承载力计算[J]. 岩石力学与工程学报, 2014, 33(s2): 4359-4366.

[51] 周佳锦, 王奎华, 龚晓南, 等. 静钻根植竹节桩承载力及荷载传递机制研究[J]. 岩土力学, 2014, 35(5): 1367-1376.

[52] 周佳锦, 龚晓南, 王奎华, 等. 静钻根植竹节桩抗压承载性能[J]. 浙江大学学报(工学版), 2014, 48(5): 835-842.

[53] Zhou Jiajin, Gong Xiaonan, Zhang Rihong. Field Tests on Behavior of Pre-bored Grouted Planted Pile in Soft Soil Area with Existing Pile Foundation[C]// Proceedings of China-Europe Conference on Geotechnical Engineering. Springer Series in Geomechanics and Geoengineering. Springer, Cham.

[54] Zhou Jiajin, Gong Xiaonan, Wang Kuihua, et al. Field test on the influence of the cemented soil around the pile on the lateral bearing capacity of pile foundation[C]// Congress on Advanced Engineering and Technology. 2016: 79-86.

[55] 王腾, 周佳锦*, 龚晓南, 俞建霖. 基于工业副产物的高含水率固化土力学特性试验研究. 地基处理, 2023, 5(5): 361-368.

[56] 周佳锦, 张日红, 黄苏杭, 俞建霖, 龚晓南, 严天龙 .组合桩基础桩身预制桩-水泥土接触面摩擦特性试验研究[C]//桩基工程技术进展2021. DOI:10.26914/c.cnkihy.2023.019959.

[57] 刘清瑶, 张日红, 周佳锦*, 龚晓南, 黄晟, 严天龙. 软土地区预应力竹节桩承载性能数值模拟研究[C]//桩基工程技术进展2021. DOI:10.26914/c.cnkihy.2023.019967.

[58] 周佳锦, 张日红, 任建飞, 龚晓南, 严天龙. 密实砂土中静钻根植桩与混凝土桩承载性能模型试验研究[C]//桩基工程技术进展2021. DOI:10.26914/c.cnkihy.2023.019975.

[59] Zhou Jiajin, Zhou Shile, Zhang Rihong, Yu Jianlin, Gong Xiaonan. Experimental Study on Friction Capacity of Pile-Stabilized Soil Interface. [C]//International Conference on Construction Resources for Environmentally Sustainable Technologies. Singapore: Springer Nature Singapore, 2023. p. 137-144.

[60] Yu Jianlin, Wang Teng, Zhou Jiajin*, Zhang Rihong, Gong Xiaonan. Experimental Study on Mechanical Properties of Soft Clay Stabilized by Industrial By-Products. [C]//International Conference on Construction Resources for Environmentally Sustainable Technologies. Singapore: Springer Nature Singapore, 2023. p. 145-153.

[61] Zhou Jiajin, Xia Fengyong,, Chen ZhuoJie, Gong Xiao-nan, Liu Di, Yu Jian-lin. Research on Settlement Calculation Method for DCM Composite Foundation of Immersed Tunnel in Shenzhen-Zhongshan Link. [C]//Tunnelling for a Better life - Proceedings of the ITA-AITES World Tunnel congress WTC 2024. p. 2500-2506, 2024.