近年来发表的主要论文:
[2] Wen JY*, Li XX, Zhu YX. Improved seismic risk evaluation for high-voltage switchgear equipment: A copula-based framework considering joint failure modes. Earthquake Engineering & Structural Dynamics, 2023, 53:694-716.
[3] Wen JY*, Li XX, Xie Q. Seismic disadvantages and formation mechanism of weak coupling effects in interconnected power infrastructures. Soil Dynamics and Earthquake Engineering, 2023, 173:108082.
[4] Li XX, Xie Q, Wen JY*. Double friction pendulum-based isolation optimization for transformer-bushing systems. Engineering Structures, 2024, 320: 118909.
[5] Li XX, Xie Q Wen JY*, Seismic performance evaluation and retrofit strategy of overhead gas-insulated transmission lines. Buildings, 2023, 13:2968.
[6] 文嘉意*, 薛经纬, 李晓璇.考虑电气功能的多元失效模式下变电站设备地震易损性评估. 工程力学, 2023.
[8] Wen JY, Li XX, Xie Q. Cost-effectiveness of base isolation for large transformers in areas of high seismic intensity. Structure and Infrastructure Engineering, 2022, 18(6): 745-759.
[9] Wen JY, Xie Q. Field investigation and structural analysis of wind-induced collapse of outdoor single-post billboards. Engineering Failure Analysis, 2020, 117:104810.
[10] Wen JY, Xie Q. Seismic evaluation of +/- 800kV UHVDC disconnect switch by shake table test. Journal of Engineering, 2018, 16:2772-2776.
[11] Xie Q, Wen JY, Liu WC. Coupling effects of power substation equipment with multiple configurations. Soil Dynamics and Earthquake Engineering, 2021, 150:106908.
[12] 文嘉意, 谢强.弱耦联体系地震响应的隔离分析求解. 工程力学, 2021, 38(4): 102-110+122.
[13] 谢强,文嘉意, 庞准.大型变压器-套管体系基底隔震及其经济效用分析. 高电压技术, 2020, 46(3): 890-897.
编制标准:
[1]《高原用换流站电气设备抗震技术第1部分:抗震试验及评价导则》(GB/T 42558.1-2023,国家标准)
[2]《高原用换流站电气设备抗震技术第2部分:抗震设计规范》(GB/T 42558.2-2024,国家标准)
[3]《高原用换流站电气设备抗震技术第3部分:减隔震设计规范》(GB/T 42558.3-2024,国家标准)
[4]《变电站(换流站)电气设备抗震构造措施导则》(T/CSEE 0386-2023,国家级团体标准)
[5]《换流站直流主设备抗震仿真技术规范》(国家级团体标准,立项编制)
学术报告:
[1]线形基础设施抗震中弱耦联作用的发现与形成机理研究(西安,第十一届全国地震工程学术会议,口头报告)
[2]考虑电气使用功能的变电站设备抗震多尺度分析及易损性评估(南京,第九届结构设计与工程应用学术会议,口头报告)
[3] Functional failure included seismic risk evaluation of substation equipment under dual failure modes(北京,9th ISLIEE 2024,特邀报告)