信阳师范学院学报(自然科学版)
信暘師範學院學報(自然科學版)
신양사범학원학보(자연과학판)
JOURNAL OF XINYANG NORMAL UNIVERSITY(NATURAL SCIENCE EDITION)
2013年
3期
351-356
,共6页
黏弹性%扭转振动%本构模型%复刚度%相互作用
黏彈性%扭轉振動%本構模型%複剛度%相互作用
점탄성%뉴전진동%본구모형%복강도%상호작용
viscoelasticy%torsional vibration%constitutive model%complex stiffness%interaction
针对土体中单桩的扭转振动问题,分别采用 Kelvin 黏弹性模型、三参数固体黏弹性模型和分数阶黏弹性(FDV)模型描述桩周土体的本构关系,对黏弹性土体和土体中单桩的扭转振动进行了求解,并对3种模型描述的黏弹性土中单桩的扭转振动进行了分析,讨论了有关参数对单桩扭转振动的影响。结果表明:三参数固体模型描述的土中单桩扭转振动的复刚度实部和虚部随频率变化曲线较其他两个模型波动要小,黏弹性土体中单桩的扭转振动特性与本构模型有关,经典黏弹性模型的桩顶扭转复刚度要比分数阶模型的复刚度大。
針對土體中單樁的扭轉振動問題,分彆採用 Kelvin 黏彈性模型、三參數固體黏彈性模型和分數階黏彈性(FDV)模型描述樁週土體的本構關繫,對黏彈性土體和土體中單樁的扭轉振動進行瞭求解,併對3種模型描述的黏彈性土中單樁的扭轉振動進行瞭分析,討論瞭有關參數對單樁扭轉振動的影響。結果錶明:三參數固體模型描述的土中單樁扭轉振動的複剛度實部和虛部隨頻率變化麯線較其他兩箇模型波動要小,黏彈性土體中單樁的扭轉振動特性與本構模型有關,經典黏彈性模型的樁頂扭轉複剛度要比分數階模型的複剛度大。
침대토체중단장적뉴전진동문제,분별채용 Kelvin 점탄성모형、삼삼수고체점탄성모형화분수계점탄성(FDV)모형묘술장주토체적본구관계,대점탄성토체화토체중단장적뉴전진동진행료구해,병대3충모형묘술적점탄성토중단장적뉴전진동진행료분석,토론료유관삼수대단장뉴전진동적영향。결과표명:삼삼수고체모형묘술적토중단장뉴전진동적복강도실부화허부수빈솔변화곡선교기타량개모형파동요소,점탄성토체중단장적뉴전진동특성여본구모형유관,경전점탄성모형적장정뉴전복강도요비분수계모형적복강도대。
For the torsional vibration problem of a single pile in soil , the constitutive relationship of the pile a -round soil was described by Kelvin viscoelastic model , three-parameters viscoelastic model and fractional derivative vis -coelastic (FDV) model, and the torsional vibration of the soil and the pile were also solved , respectively.The torsion-al vibration of a single pile in soil described by the three viscoelastic models were investigated , and the influences of the parameters on the torsional vibration were discussed .The results indicated that the fluctuation of the curves of the real and imaginary part of torsional complex stiffness of pile in soil described by three -parameters solid model varying with frequency was smaller than that of the other two models , the characteristics of torsional vibration of a single pile in viscoelastic soil had related with the constitutive relationship of the soil , and the torsional complex stiffness of the pile in the soil described by classic viscolestic model was larger than that of the soil described by fractional derivative visco -elastic model.