岩石力学与工程学报
巖石力學與工程學報
암석역학여공정학보
CHINESE JOURNAL OF ROCK MECHANICS AND ENGINEERING
2014年
1期
199-208
,共10页
基坑工程%复杂应力路径%硬化土本构模型%FLAC3D%二次开发%应力路径试验
基坑工程%複雜應力路徑%硬化土本構模型%FLAC3D%二次開髮%應力路徑試驗
기갱공정%복잡응력로경%경화토본구모형%FLAC3D%이차개발%응력로경시험
foundation pit engineering%complex stress paths%hardening soil constitutive model%FLAC3D%secondary development%stress path tests 
基于塑性增量理论,推导硬化土本构模型的有限差分格式。在 VC++编程环境下,利用 FLAC3D提供的二次开发平台,编制硬化土本构模型的有限差分程序,实现硬化土本构模型在 FLAC3D中的二次开发,并给出二次开发的步骤、方法和编程要点。通过不同应力路径室内试验结果与采用不同本构模型的 FLAC3D数值计算结果进行对比分析,验证硬化土本构模型在 FLAC3D中二次开发的正确性和必要性。对比分析表明:采用硬化土本构模型的 FLAC3D数值计算结果与试验结果吻合较好,而且硬化土本构模型的模型参数可从常规三轴试验获得,模型参数简单,硬化土本构模型不仅能够反映土体的非线性特性,还能够反映深基坑工程复杂的应力路径,与其他土体本构模型相比,硬化土本构模型更适合用于深基坑工程的计算分析。硬化土本构模型在 FLAC3D中二次开发的实现,扩大了FLAC3D的适用范围,在一定程度上弥补FLAC3D在分析岩土工程尤其是深基坑工程方面上的不足。
基于塑性增量理論,推導硬化土本構模型的有限差分格式。在 VC++編程環境下,利用 FLAC3D提供的二次開髮平檯,編製硬化土本構模型的有限差分程序,實現硬化土本構模型在 FLAC3D中的二次開髮,併給齣二次開髮的步驟、方法和編程要點。通過不同應力路徑室內試驗結果與採用不同本構模型的 FLAC3D數值計算結果進行對比分析,驗證硬化土本構模型在 FLAC3D中二次開髮的正確性和必要性。對比分析錶明:採用硬化土本構模型的 FLAC3D數值計算結果與試驗結果吻閤較好,而且硬化土本構模型的模型參數可從常規三軸試驗穫得,模型參數簡單,硬化土本構模型不僅能夠反映土體的非線性特性,還能夠反映深基坑工程複雜的應力路徑,與其他土體本構模型相比,硬化土本構模型更適閤用于深基坑工程的計算分析。硬化土本構模型在 FLAC3D中二次開髮的實現,擴大瞭FLAC3D的適用範圍,在一定程度上瀰補FLAC3D在分析巖土工程尤其是深基坑工程方麵上的不足。
기우소성증량이론,추도경화토본구모형적유한차분격식。재 VC++편정배경하,이용 FLAC3D제공적이차개발평태,편제경화토본구모형적유한차분정서,실현경화토본구모형재 FLAC3D중적이차개발,병급출이차개발적보취、방법화편정요점。통과불동응력로경실내시험결과여채용불동본구모형적 FLAC3D수치계산결과진행대비분석,험증경화토본구모형재 FLAC3D중이차개발적정학성화필요성。대비분석표명:채용경화토본구모형적 FLAC3D수치계산결과여시험결과문합교호,이차경화토본구모형적모형삼수가종상규삼축시험획득,모형삼수간단,경화토본구모형불부능구반영토체적비선성특성,환능구반영심기갱공정복잡적응력로경,여기타토체본구모형상비,경화토본구모형경괄합용우심기갱공정적계산분석。경화토본구모형재 FLAC3D중이차개발적실현,확대료FLAC3D적괄용범위,재일정정도상미보FLAC3D재분석암토공정우기시심기갱공정방면상적불족。
The finite difference scheme of hardening soil constitutive model is derived based on the increment theory of plastic. The finite difference program of hardening soil constitutive model is established so as that the secondary development of hardening soil constitutive model is realized with the platform for secondary development offered by FLAC3D software in VC++ environment. And then,the steps,methods and program essentials of constitutive model′s secondary development based on FLAC3D software are given. The comparison analysis between test results under different stress paths and FLAC3D numerical simulation results with different constitutive model is made so as to verify that the development of hardening soil constitutive model in FLAC3D is correct and necessity. Comparative analysis shows that the FLAC3D numerical simulation results with hardening soil constitutive model accord with test results. The parameters of hardening Soil constitutive model is simple and can be easily determined by conventional triaxial test. Hardening soil constitutive model can not only reflect the nonlinear characteristics of soil,but also can reflect complex stress path of deep foundation pit engineering. So,hardening soil constitutive model is more suitable for computing analysis of deep foundation pit engineering compared with other constitutive model of soil. Implementation of secondary development that hardening soil constitutive model is developed in FLAC3D software expands the scope of FLAC3D application,to some extent, it makes up for disadvantages of FLAC3D in analysis of geotechnical engineering,especially deep foundation pit engineering.