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预应力薄壁管桩群桩施工引起的超静孔隙水压力试验研究
引用本文:余闯,杜广印,刘松玉.预应力薄壁管桩群桩施工引起的超静孔隙水压力试验研究[J].工业建筑,2009,39(8).
作者姓名:余闯  杜广印  刘松玉
作者单位:1. 温州大学建筑与土木工程学院,浙江,温州,325005
2. 东南大学岩土工程研究所,南京,210096
基金项目:浙江省钱江人才计划资助项目;;住房和城乡建设部科技计划项目(2008-K2-11)
摘    要:海相软土中预应力薄壁管桩采用锤击法施工会产生较大的超孔隙水压力。通过某工程实测表明:群桩施工引起的孔压在初期消散较快,其后逐渐缓慢;引起的最大孔压接近于80 kPa。在群桩施工结束的1个多月后,桩间土超静孔隙水压力尚未能彻底消散,剩余的最大超静孔隙水压力还有10~20 kPa。群桩的施工导致孔压的叠加,对孔隙水压力的大小产生显著的影响。因此,必须采取合理的施工工艺,来控制孔隙水压力并加快孔隙水压力的消散,以使群桩施工能顺利的进行。

关 键 词:超静孔隙水压力  预应力薄壁管桩  海相软土

TESTS ON EXCESS PORE WATER PRESSURE INDUCED BY DRIVING GROUP PRESTRESSED TUBULAR CONCRETE PILES
Yu Chuang,Du Guangyin,Liu Songyu.TESTS ON EXCESS PORE WATER PRESSURE INDUCED BY DRIVING GROUP PRESTRESSED TUBULAR CONCRETE PILES[J].Industrial Construction,2009,39(8).
Authors:Yu Chuang  Du Guangyin  Liu Songyu
Affiliation:1.College of Architecture and Civil Engineering;Wenzhou University;Wenzhou 325005;China;2.Institute of Geotechnical Engineering;Southeast University;Nanjing 210096;China
Abstract:In marine soft ground,the prestressed tubular concrete pile(PTC Pile) driven by hammering method induces the increase in excess pore water pressure(EPWP).The following results are obtained by field test.The excess pore water pressure increases with time during pile installation and dissipates with time after installation.The maximum EPWP reaches as high as 80 kPa.The dissipation time of excess pore pressure varies with the time and the distance from the pile.As 1 month elapsed after installation,the residua...
Keywords:excess pore water pressure  PTC piles  marine soft soil  
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