河海大学学报(自然科学版)
河海大學學報(自然科學版)
하해대학학보(자연과학판)
JOURNAL OF HOHAI UNIVERSITY (NATURAL SCIENCES)
2015年
1期
1-5
,共5页
蔡新%严伟%朱杰%郭兴文%江泉
蔡新%嚴偉%硃傑%郭興文%江泉
채신%엄위%주걸%곽흥문%강천
充填管袋堤坝%断面优化设计%复合形法%条子泥Ⅰ期匡围工程
充填管袋隄壩%斷麵優化設計%複閤形法%條子泥Ⅰ期劻圍工程
충전관대제패%단면우화설계%복합형법%조자니Ⅰ기광위공정
geotextile tube dam%optimal design of structural section%complex method%first phase of Tiaozini Reclamation Project
采用现代设计理论研究充填管袋堤坝结构断面的优化设计问题。构建以充填管袋堤坝结构断面关键几何尺寸为设计变量,堤坝工程造价最低为目标函数,设计高水位、设计低水位以及水位骤降3种工况下的边坡稳定安全系数等为主要约束条件的结构优化设计数学模型,借助FLAC3D软件进行结构分析并验证其边坡稳定性,优化模型求解采用复合形法。实例计算结果显示:优化设计方案与原设计方案相比,堤坝结构工程造价降低22.7%,土工管袋抗拉强度达到临界约束,堤坝结构的受力和变形状态有所改善,优化调整效果明显且经济效益显著。
採用現代設計理論研究充填管袋隄壩結構斷麵的優化設計問題。構建以充填管袋隄壩結構斷麵關鍵幾何呎吋為設計變量,隄壩工程造價最低為目標函數,設計高水位、設計低水位以及水位驟降3種工況下的邊坡穩定安全繫數等為主要約束條件的結構優化設計數學模型,藉助FLAC3D軟件進行結構分析併驗證其邊坡穩定性,優化模型求解採用複閤形法。實例計算結果顯示:優化設計方案與原設計方案相比,隄壩結構工程造價降低22.7%,土工管袋抗拉彊度達到臨界約束,隄壩結構的受力和變形狀態有所改善,優化調整效果明顯且經濟效益顯著。
채용현대설계이론연구충전관대제패결구단면적우화설계문제。구건이충전관대제패결구단면관건궤하척촌위설계변량,제패공정조개최저위목표함수,설계고수위、설계저수위이급수위취강3충공황하적변파은정안전계수등위주요약속조건적결구우화설계수학모형,차조FLAC3D연건진행결구분석병험증기변파은정성,우화모형구해채용복합형법。실례계산결과현시:우화설계방안여원설계방안상비,제패결구공정조개강저22.7%,토공관대항랍강도체도림계약속,제패결구적수력화변형상태유소개선,우화조정효과명현차경제효익현저。
This paper is concerned with the optimal design of the structural section of the geotextile tube dam via application of modern design theories. To realize this objective, a mathematical model for optimal design is proposed, with the key geometric sizes of dam section taken as the design variables, the minimum construction cost as the objective function, and the safety coefficient of slope stability under the working conditions of high and low design water levels and rapid reduction of water level as the main constraint condition. FLAC3D is used for structural analysis and verification of slope stability where the complex method is used to solve the optimal model. The obtained numerical results show that, compared with the original design scheme, the optimal design scheme can reduce the construction cost by 22. 7%, the tensile strength of the geotextile tube reaches the critical constraint value, and the performance of the dam structure with stress and deformation is improved, which indicates the helpful effect of section optimization and high economic benefits.