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
2013年
z2期
4098-4104
,共7页
路基工程%桩网结构路基%附加应力%条形抛物线荷载%Boussinesq解
路基工程%樁網結構路基%附加應力%條形拋物線荷載%Boussinesq解
로기공정%장망결구로기%부가응력%조형포물선하재%Boussinesq해
subgrade engineering%geosynthetic reinforced pile supported embankment%additional stress%strip parabolic load%Boussinesq?s solution
高速铁路严格的工后沉降控制标准对沉降计算的精度提出了高要求,沉降计算精度的提高很大程度上依赖于地基附加应力计算精度的提高,因此附加应力的计算问题尤为重要。针对桩网结构路基现有研究中对桩间土荷载均匀分布和对称三角形分布的假设,提出桩间土荷载呈抛物线形式分布的假定;从推导桩网结构路基桩间土条形抛物线荷载的分布函数着手,提出条形抛物线荷载下弹性地基的附加应力计算公式;通过数值模拟验证理论推导的正确性和可靠性,并结合工程实例分析验证所提的桩网结构路基附加应力计算方法的合理性和优越性。研究成果可为提高桩网结构路基的附加应力计算精度提供参考。
高速鐵路嚴格的工後沉降控製標準對沉降計算的精度提齣瞭高要求,沉降計算精度的提高很大程度上依賴于地基附加應力計算精度的提高,因此附加應力的計算問題尤為重要。針對樁網結構路基現有研究中對樁間土荷載均勻分佈和對稱三角形分佈的假設,提齣樁間土荷載呈拋物線形式分佈的假定;從推導樁網結構路基樁間土條形拋物線荷載的分佈函數著手,提齣條形拋物線荷載下彈性地基的附加應力計算公式;通過數值模擬驗證理論推導的正確性和可靠性,併結閤工程實例分析驗證所提的樁網結構路基附加應力計算方法的閤理性和優越性。研究成果可為提高樁網結構路基的附加應力計算精度提供參攷。
고속철로엄격적공후침강공제표준대침강계산적정도제출료고요구,침강계산정도적제고흔대정도상의뢰우지기부가응력계산정도적제고,인차부가응력적계산문제우위중요。침대장망결구로기현유연구중대장간토하재균균분포화대칭삼각형분포적가설,제출장간토하재정포물선형식분포적가정;종추도장망결구로기장간토조형포물선하재적분포함수착수,제출조형포물선하재하탄성지기적부가응력계산공식;통과수치모의험증이론추도적정학성화가고성,병결합공정실례분석험증소제적장망결구로기부가응력계산방법적합이성화우월성。연구성과가위제고장망결구로기적부가응력계산정도제공삼고。
The strict control standards for post-construction settlement of high-speed railway require high accuracy of settlement calculation,and the improvement of settlement calculation precision directly results from the high computational accuracy of additional stress,which makes the issue of calculating additional stress of significant importance. Differing from the assumption that the load acting on soil between piles in geosynthetic reinforced pile supported embankment presents uniform or symmetrical triangular distribution in the present study,the parabolic distribution form is proposed. Starting with the distribution function of strip parabolic load acting on soil between piles,the computational formula of additional stress caused by strip parabolic load in elastic foundation is put forward. The theoretical derivation is proved to be correct and reliable by numerical simulation;and the rationality and superiority of the computing method of additional stress are guaranteed by case study. The research achievements can provide reference for improving computational accuracy of additional stress along with settlement in geosynthetic reinforced pile supported embankment.