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秦 力

时间:[2017-11-18]  来源:

姓 名: 秦 力

办公电话: 0432-64806188

手 机:13843228989

Email : jilinql @163.com

主要学历及工作经历:

秦力 教授,男,19709月出生,辽宁省葫芦岛市人。20047月毕业于大连理工大学土木水利学院,获博士学位。20053月批准为结构工程专业硕士生导师。现任东北电力大学研究生院院长。吉林省有突出贡献的中青年专业技术人才、吉林省拔尖创新人才、吉林省高等学校教学名师。政协吉林市第十三届委员会常务委员。民建吉林市委直属东北电力大学支部主委。 

研究领域:

高层混凝土结构;高强混凝土材料;碳纤维导线应用;建筑节能技术 

指导硕士生研究方向:

框架-剪力墙结构优化设计,C60高强混凝土材料本构关系及耐久性,碳纤维复合芯导线运行特性,严寒地区居住建筑围护结构节能技术。 

出版著作和论文(第一作者)

  1. 严寒地区既有公寓围护结构节能技术研究.应用基础与工程科学学报.2017252)(EI

  2. 高掺量粉煤灰和矿渣高强混凝土抗渗性和抗冻性试验.农业工程学报.2017,336)(EI

  3. The transmission tower with angles composed by the variable cross-section is studied modal analysis and secondary stress. Applied Mechanics and Materials. 2015EI

  4. Numerical analysis of the iced transmission line galloping. Applied Mechanics and Materials. 2014EI

  5. Research on application of suction bucket foundation for transmission tower in river network area. Advanced Materials Research. 2014EI

  6. Research and simplified calculation of a new-type forging flange under Bending Moments. Advanced Materials Research.2014EI

  7. Aeolian vibration analysis of different node connectivity steel rods. Advanced Materials Research. 2014EI

  8. Nonlinear finite element analysis for galloping of iced quad-bundled conductor. Applied Mechanics and Materials. 2014EI

  9. Calculating algorithm for torsional stiffness of conductors-spacers. Applied Mechanics and Materials. 2013EI

  10. Gobi inclined excavation based numerical analysis. Applied Mechanics and Materials .2013EI

  11. ACSR strands stress numerical simulation .Applied Mechanics and Materials. 2013EI

  12. Conductors vibration model improved and nonlinear vibration analysis. Advanced Materials Research.2012EI

  13. Structural optimization of transmission line of steel poles .Applied Mechanics and Materials.2012EI

  14. The feasibility study for new-type forging flange of in steel tower .Advanced Materials Research.2012EI

  15. Rain-wind-induced analysis of transmission steel tower .Advanced Materials Research.2012EI

  16. The Optimization Study of the Pile Spacing for the transmission tower Foundation Considering soil-pile Interaction. MACE2011EI

  17. Research on selection of tall building structures based on artificial neural network. ICNC 2010.EI

  18. Analysis on interruption and plane layout of shear wall for frame-shear wall structure with top fault shear wall .ICIII 2009.EI

  19. Seismic response analysis of RC frame-shear wall structure with specially shaped columns. ICIII 2009.EI

  20. 考虑剪切变形影响的L形柱单元刚度矩阵. 同济大学学报. 2009.37(10)EI

  21. Lectotype Optimization of Mid-highrise Residential Building based on Site Conditions and Seismic Fortification Intensity. Journal of Harbin Institute of Technology.2006.12EI

  22. 基于场地条件和抗震设防烈度的中高层住宅结构方案优选. 大连理工大学学报.2005,45(1)EI

  23. 中高层异形柱框-剪结构的剪力墙抗侧刚度优化分析. 哈尔滨工业大学学报,2004,36(8)EI 

科研项目:

参加国家自然科学基金项目2项,主持省市级科研项目6项。 

教改项目:

主持省部级教改项目4项,校级教改项目3项。

获奖情况:

获省科技进步三等奖3项,省自然科学学术成果二等奖1项,市科技进步一等奖2项;

获省教学成果二等奖1项、三等奖1项,省教育技术成果二等奖1项,校优秀教学成果特等奖1项、一等奖1项、二等奖1项;

吉林省精品课程《混凝土及砌体结构》课程负责人;

吉林省优秀教学团队《混凝土结构系列课程教学团队》负责人

获批计算机软件著作权2项。

已毕业硕士人数:

74人(含在职工程硕士18人) 

在读硕士人数:

23人(含工程硕士6人) 

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