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旋喷注浆破土机理研究及岩土工程应用 被引量:4
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作者 杜嘉鸿 李范山 +2 位作者 王杰 施小博 郭文生 《地质与勘探》 CAS CSCD 北大核心 1997年第2期48-52,共5页
通过实验室研究,提出了三重管高压喷射注浆时。喷射流轴心压力与被冲击土介质的物理力学参数之间的关系式,并将其成果应用到某工程的污水池软基处理工程中,取得了预期的加固效果。
关键词 喷射注浆 水射流 软土地基 岩土工程 破土机理
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压缩气体射流切割破土机理 被引量:1
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作者 张永光 殷琨 +2 位作者 王如生 曹丽娜 彭枧明 《吉林大学学报(地球科学版)》 EI CAS CSCD 北大核心 2011年第2期518-522,共5页
压缩气体射流切割破土机理既是气力喷射反循环钻孔技术的基础也是其重要的理论依据,而气力喷射反循环钻孔技术又是一项高效环保的软地层钻进技术,所以压缩气体射流切割破土机理研究对于气力喷射反循环钻孔技术有重要意义。首先,应用CFD... 压缩气体射流切割破土机理既是气力喷射反循环钻孔技术的基础也是其重要的理论依据,而气力喷射反循环钻孔技术又是一项高效环保的软地层钻进技术,所以压缩气体射流切割破土机理研究对于气力喷射反循环钻孔技术有重要意义。首先,应用CFD软件模拟,得出8mm直径喷孔切割能力为2.868×103 kPa,与单喷孔地秤实验得到的2.468×103 kPa拟合较好,其值都远远大于软地层破坏强度;其次,通过LS-DYNA模拟可知单次喷射18μs时的切割深度约为2.23mm;最后,用CFD软件分析得到土体微裂隙断裂压力分布图及气体流速图。结果表明,压缩气体射流切割破土机理为:压缩气体沿薄弱环节进入孔隙和微裂隙后急剧膨胀,在恢复到钻孔围压过程中继续膨胀、扩张,同时在反循环抽吸力的共同作用下使土体结构破坏、断裂脱离母体;符合土体微裂隙断裂原理。 展开更多
关键词 气力喷射 破土机理 数值模拟 试验
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黏土中射流破土机理的研究 被引量:7
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作者 王腾 宋斌 《水动力学研究与进展(A辑)》 CSCD 北大核心 2018年第3期337-343,共7页
该文基于Herschel-Bulkley(HB)模型将黏土模拟为黏性流体,采用CFD(computational fluid dynamics)软件Fluent的VOF方法对黏土中射流破土过程进行连续实时模拟,设计实验室半圆喷嘴射流破土试验,直观可视射流切割剖面形状,并验证数值模拟... 该文基于Herschel-Bulkley(HB)模型将黏土模拟为黏性流体,采用CFD(computational fluid dynamics)软件Fluent的VOF方法对黏土中射流破土过程进行连续实时模拟,设计实验室半圆喷嘴射流破土试验,直观可视射流切割剖面形状,并验证数值模拟结果。在此基础上,对影响射流破土机理的敏感性参数进行分析。研究结果表明:用HB模型模拟黏土,采用VOF方法可以较好模拟射流切割过程;射流最大切割深度可由圆形基础的不排水极限承载力确定,承载力系数为6.7;初始射流速度越大、喷距越小和土体不排水抗剪强度越低射流切割深度越大。 展开更多
关键词 射流切割 黏土 破土机理 Herschel-Bulkley模型
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旋转射流破土钻孔机理分析
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作者 贾三春 张东速 王从东 《矿山机械》 北大核心 2008年第19期17-19,共3页
旋转射流相对于普通射流具有良好的扩散性和较大的冲击面积,且因其射流质点具有三维速度,有利于剪切破碎,这正好弥补了普通圆射流冲击面积小、破碎效率低、难以形成连续大孔眼的不足。现针对旋转水射流钻孔的特点及优势,对其破土钻孔机... 旋转射流相对于普通射流具有良好的扩散性和较大的冲击面积,且因其射流质点具有三维速度,有利于剪切破碎,这正好弥补了普通圆射流冲击面积小、破碎效率低、难以形成连续大孔眼的不足。现针对旋转水射流钻孔的特点及优势,对其破土钻孔机理进行了分析。 展开更多
关键词 旋转射流 破土机理 钻孔
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Breach mechanism and numerical simulation for seepage failure of earth-rock dams 被引量:8
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作者 CHEN ShengShui ZHONG QiMing CAO Wei 《Science China(Technological Sciences)》 SCIE EI CAS 2012年第6期1757-1764,共8页
In this study,a numerical model,which can capture the full process of the development of seepage passages,the collapse of dams and the failure due to overtopping,is proposed for earth-rock dams.The critical incipient ... In this study,a numerical model,which can capture the full process of the development of seepage passages,the collapse of dams and the failure due to overtopping,is proposed for earth-rock dams.The critical incipient velocity for the occurrence of seepage failure is derived by analyzing the forces acting on soil particles in the seepage passage.The sediment transport formula is proposed to simulate the erosion process and the evolution of breach within the dam.In this model,the grain size distribution,the compaction density and the strength of dam materials are reasonably accounted for.Furthermore,the influences of the direction of seepage paths,the slope of the dam and the velocity of water flow on the amount of erosion are also taken into consideration.The proposed model and the corresponding numerical programs are employed to simulate the development of breaches and discharge of two typical cases due to seepage failure.The development of breaches,the history of discharge and the peak flood flux predicted by the numerical models are rather comparable to the measured data,which confirms the validity of the proposed model and the feasibility of applying the model in evaluating the disaster consequences and preparing the emergency counter measurements in the case of dam collapse. 展开更多
关键词 earth-rock dam seepage failure dam collapse numerical simulation
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Failure mechanism of full-size concrete filled steel circle and square tubes under uniaxial compression 被引量:2
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作者 CAI JingMing PAN JinLong SHAN QiFeng 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第10期1638-1647,共10页
In this paper, the failure mechanisms of full-size concrete filled steel tubes(CFST) under uniaxial compression were investigated with nonlinear finite element method. Existing experimental results were employed to ve... In this paper, the failure mechanisms of full-size concrete filled steel tubes(CFST) under uniaxial compression were investigated with nonlinear finite element method. Existing experimental results were employed to verify the validity of the finite element models of CFST specimens. Then, the numerical analysis was further conducted to study the mechanical behaviors of full-size CFST columns with circular and square cross sections under uniaxial compression. The simulation results indicate that the distribution of the contact pressure between circular steel tube and core concrete is much more uniform than that between square steel tube and concrete, resulting in much higher confinement and more efficient interaction between steel tube and core concrete in circular CFST columns, as well as ultimate load capacity and ultimate displacement. Extensive parametric analysis was also conducted to examine the effect of various parameters on the uniaxial compression behaviors of circular and square CFST columns. 展开更多
关键词 CFST uniaxial compression finite element analysis interaction mechanism
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