人民黄河
人民黃河
인민황하
Yellow River
2014年
2期
115-117
,共3页
李吕英%张立勇%王利容%陈贤%廖鸣宇
李呂英%張立勇%王利容%陳賢%廖鳴宇
리려영%장립용%왕리용%진현%료명우
闸坝%有限元法%变形%应力%双河水电站
閘壩%有限元法%變形%應力%雙河水電站
갑패%유한원법%변형%응력%쌍하수전참
sluice dam%finite element method%deformation%stress%Shuanghe Hydlropower Station
考虑双河水电站深厚覆盖层及古坐落体地基问题,采用D-P非线性弹塑性本构模型及ANSYS三维有限元软件计算典型工况下三维应力场和位移场,分析结构的稳定性,揭示闸坝区应力分布情况及变形规律。计算得出:4种工况下的变形及应力规律一致,其中完建工况变形及应力水平最大,其次为正常蓄水位工况,然后依次是校核洪水位工况和设计洪水位工况;各工况下闸坝变形量和各坝段间变形差均较小,且与实际监测资料较吻合;各工况下闸坝各向最大正应力和主应力均较小,且闸基绝大部分为压应力,最大压应力小于地基允许承载力;闸室结构变形和应力符合设计要求。
攷慮雙河水電站深厚覆蓋層及古坐落體地基問題,採用D-P非線性彈塑性本構模型及ANSYS三維有限元軟件計算典型工況下三維應力場和位移場,分析結構的穩定性,揭示閘壩區應力分佈情況及變形規律。計算得齣:4種工況下的變形及應力規律一緻,其中完建工況變形及應力水平最大,其次為正常蓄水位工況,然後依次是校覈洪水位工況和設計洪水位工況;各工況下閘壩變形量和各壩段間變形差均較小,且與實際鑑測資料較吻閤;各工況下閘壩各嚮最大正應力和主應力均較小,且閘基絕大部分為壓應力,最大壓應力小于地基允許承載力;閘室結構變形和應力符閤設計要求。
고필쌍하수전참심후복개층급고좌락체지기문제,채용D-P비선성탄소성본구모형급ANSYS삼유유한원연건계산전형공황하삼유응력장화위이장,분석결구적은정성,게시갑패구응력분포정황급변형규률。계산득출:4충공황하적변형급응력규률일치,기중완건공황변형급응력수평최대,기차위정상축수위공황,연후의차시교핵홍수위공황화설계홍수위공황;각공황하갑패변형량화각패단간변형차균교소,차여실제감측자료교문합;각공황하갑패각향최대정응력화주응력균교소,차갑기절대부분위압응력,최대압응력소우지기윤허승재력;갑실결구변형화응력부합설계요구。
It took Shuanghe Hydropower Station as the research background,considering the deep cover layer and the ancient located body founda-tion problems. By using nonlinear D-P constitutive model,with the ANSYS three-dimensional finite element software,it had proven the typical con-ditions of three-dimensional stress field and displacement field,analyzed the stability of the structure,revealed stress distribution of sluice founda-tion and deformation law of the sluice chamber,evaluated the effectiveness of sluice impervious curtain measures. It obtains from the calculation that in four kinds of conditions of deformation and stress laws are consistent. Finished built deformation and stress level are the largest,followed by normal water level conditions. The final in turn is checking flood operating conditions and design flood conditions. Sluice dam deformation and de-formation difference between the monoliths are both small and agreement with the actual monitoring data. Under various conditions to the maximum normal stress and principal stress are small,and most of the sluice base are compressive stress. The maximum compressive stress is less than the foundation allowed bearing capacity. Gate chamber structural deformation and stress meet the design requirements.