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备用地保护项目对土壤质量的影响 被引量:2
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作者 黄毅 鹏翔 +2 位作者 D. L. Karlen M.J. Rosek J. C. Gardner 《水土保持科技情报》 2000年第2期1-3,共3页
土壤质量指标对评价备用地保护规划(CRP)很实用。在依阿华、明尼苏达、北达科他和华盛顿的CRP试区与农地试区分别测定了土壤团聚体的稳定性和大小分布、密度、全碳、全氮、硝态氮、铵态氮、阳离子交换量、微生物碳和氮、土壤呼... 土壤质量指标对评价备用地保护规划(CRP)很实用。在依阿华、明尼苏达、北达科他和华盛顿的CRP试区与农地试区分别测定了土壤团聚体的稳定性和大小分布、密度、全碳、全氮、硝态氮、铵态氮、阳离子交换量、微生物碳和氮、土壤呼吸、荧光素双乙酸盐分解、真菌菌丝长度、麦角甾醇浓度。在依阿华州的CRP试区水稳性团聚体的百分数高于农地。在明尼苏达州,CRP试区的平均团聚体直径明显高于农地,但在北达科他州区别并不明显。参试各州CRP试区生物体含碳量比农地和休闲地高17%~64%,含氮量比农地高18%~74%,土壤呼吸量也高于农地。仅据依阿华州测定,CRP试区的真菌菌丝长度增加26%~62%。只是在依阿华州的享利县CRP样本的麦角甾醇含量较高,这里的农地每年用凿式犁耕翻。测定结果表明,土壤的生物指标既明显地区别物理指标,也有别于化学指标。该项多点试验研究表明:强侵蚀农地退耕种植多年生牧草,改善了若干土壤质量指标。通过提炼,这些指标可以用于评估农业管理措施的长期影响。 展开更多
关键词 土壤弹性 备用地保护项目 美国 土壤质量评估
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Elastoplastic pipe-soil interaction analyses of partially-supported jointed water mains 被引量:4
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作者 Yu SHAO Tu-qiao ZHANG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2008年第11期1497-1506,共10页
Water distribution networks are essential components of water supply systems. The combination of pipe structural deterioration and mechanics leads to the failure of pipelines. A physical model for estimating the pipe ... Water distribution networks are essential components of water supply systems. The combination of pipe structural deterioration and mechanics leads to the failure of pipelines. A physical model for estimating the pipe failure must include both the pipe deterioration model and mechanics model. Winkler pipe-soil interaction (WPSI), an analytical mechanics model developed by Rajani and Tesfamariam (2004), takes external and internal loads, temperature changes, loss of bedding support, and the elastoplastic effect of soil into consideration. Based on the WPSI model, a method to evaluate the elastic and plastic areas was proposed in the present study. An FEM model based on pipe-soil interaction (PSI) element was used to verify the analytical model. Sensitivity analyses indicate that the soft soil, long pipe and high temperature induced the axial plastic deformation more likely, which, however, may not occur in normal scenarios. The soft soil, pipes in small diameters, long unsupported bedding are prone to form flexural plastic area. The results show that the pipes subjected to the same loads have smaller stresses in the elastoplastic analysis than elastic analysis. The difference, however, is slight. 展开更多
关键词 Elastoplastic soil Winkler pipe-soil interaction (WPSI) Jointed water mains
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Transient response of a spherical cavity with a partially sealed shell embedded in viscoelastic saturated soil 被引量:14
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作者 刘干斌 谢康和 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2005年第3期194-201,共8页
Based on Biot’s wave equation, this paper discusses the transient response of a spherical cavity with a partially sealed shell embedded in viscoelastic saturated soil. The analytical solution is derived for the trans... Based on Biot’s wave equation, this paper discusses the transient response of a spherical cavity with a partially sealed shell embedded in viscoelastic saturated soil. The analytical solution is derived for the transient response to an axisymmetric surface load and fluid pressure in Laplace transform domain. Numerical results are obtained by inverting the Laplace transform presented by Durbin, and are used to analyze the influences of the partial permeable property of boundary and relative rigidity of shell and soil on the transient response of the spherical cavity. It is shown that the influence of these two parameters is remarkable. The available solutions of permeable and impermeable boundary without shell are only two extreme cases of this paper. 展开更多
关键词 VISCOELASTICITY Partial sealing Spherical shell Transient response
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Influence of water saturation on propagation of elastic waves in transversely isotropic nearly saturated soil 被引量:1
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作者 李保忠 蔡袁强 《Journal of Zhejiang University Science》 EI CSCD 2003年第6期694-701,共8页
Biot' s two-phase theory for fluid-saturated porous media was applied in a study carried out to investigate the influence of water saturation on propagation of elastic wave in transversely isotropic nearly saturat... Biot' s two-phase theory for fluid-saturated porous media was applied in a study carried out to investigate the influence of water saturation on propagation of elastic wave in transversely isotropic nearly saturated soil. The characteristic equations for wave propagation were derived and solved analytically. The results showed that there are four waves: the first and second quasi-longitudinal waves (QP1 and QP2), the quasitransverse wave (QSV) and the anti-plane transverse wave (SH) . Numerical results are given to illustrate theinfluence of saturation on the velocity, dispersion and attenuation of the four body waves. Some typical numerical results are discussed and plotted. The results can be meaningful for soil dynamics and earthquake engineering. 展开更多
关键词 SATURATION Transversely isotropic Nearly saturated DISPERSION ATTENUATION
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Stable response of axisymmetric two-phase water-saturated soil 被引量:6
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作者 蔡袁强 孟楷 徐长节 《Journal of Zhejiang University Science》 EI CSCD 2004年第9期1022-1027,共6页
Biot's dynamic consolidation equations and Hankel transform were used to derive the integral solutions of stress and displacement for axisymmetric harmonic excitations in the two-phase saturated soil with subjacen... Biot's dynamic consolidation equations and Hankel transform were used to derive the integral solutions of stress and displacement for axisymmetric harmonic excitations in the two-phase saturated soil with subjacent rock-stratum. The influence of the coefficient of permeability and loading frequency on the soil displacement at the ground surface were studied. The results showed that higher loading frequency led to more dynamic characteristics; and that the effect of the soil permeability was more obvious at higher frequencies. 展开更多
关键词 Biot's dynamic consolidation Lamb's problem Saturated subsoil
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Relationship between rectification moment and angle of shield based on numerical simulation 被引量:10
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作者 孙伟 岳明 魏建 《Journal of Central South University》 SCIE EI CAS 2012年第2期517-521,共5页
The finite element method is used to simulate the rectification process of shield machine, to study the relationship between rectification moment and angle and to explore the influence laws of different soil parameter... The finite element method is used to simulate the rectification process of shield machine, to study the relationship between rectification moment and angle and to explore the influence laws of different soil parameters and buried depth on rectification moment. It is hoped that the reference value of rectification moment can be offered to operator, and theoretical foundation can be laid for future automatic rectification technology. The results show that the rectification moment and angle generally exhibit good linear behavior in clay layers with different soil parameters or buried depths, and then the concept of rectification coefficient, that is, the ratio of rectification angle to rectification moment, is proposed; different soil parameters and buried depths have different influences on rectification coefficient, in which elastic modulus has great influence but others have little influences; the simulations of rectification process are preformed in clay layers with different elastic modulus, and fitting results show that elastic modulus and rectification coefficient present the quadratic function relation. 展开更多
关键词 finite element method rectification moment rectification angle elastic modulus
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Hydraulic and mechanical properties of wax-coated sands
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作者 Jesmani Mehrab Bardet Jean-Pierre +1 位作者 Jabbari Nima Kamalzare Mehrad 《Journal of Central South University》 SCIE EI CAS 2013年第12期3667-3675,共9页
Wax-coated sands are a new category of synthetic soils, which are gradually becoming a reliable construction material. Because of their valuable drainage ability and mechanical properties, wax coated sandy soils are s... Wax-coated sands are a new category of synthetic soils, which are gradually becoming a reliable construction material. Because of their valuable drainage ability and mechanical properties, wax coated sandy soils are specifically applicable to pavement construction of horseracing tracks and sport fields. Although the mechanical and hydraulic properties of these synthetic soils are well-proven, there is still a lack of studies on how the soil samples behave differently when mixing with different wax fractions. Adding the wax affects permeability and compressibility of pure sand. Intensity of influences is a function of weight percentage of wax that has been added, and other physical and environmental factors. The effects of wax content on hydraulic properties(permeability), and mechanical properties(stress strain behavior, compressibility) of sandy soils based on a series of experimental efforts were investigated. Obtained experimental results infer that increasing the amount of wax up to 6% causes an about 50% increase in permeability, mainly because of the significant effect of wax in lowering the friction along with covering and filling the angular parts of particles' surfaces and forming rounded particles. In addition, wax-coated sands show a 20% to 60% decrease in confined compression modulus compared to non wax-coated sands. 展开更多
关键词 wax-coated sand confined compression coefficient PERMEABILITY COMPRESSIBILITY stress-strain behavior
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Elastic-plastic analysis for pile-anchor supporting system of deep foundation pit
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作者 JIN Yingyu BAI Yu 《Global Geology》 2009年第4期236-240,共5页
By using numerical analysis methods to simulate the deep excavation,a lot of analyses are established on the basis of two-dimensional plane strain,ignoring the fact that foundation pit possesses three dimensions. For ... By using numerical analysis methods to simulate the deep excavation,a lot of analyses are established on the basis of two-dimensional plane strain,ignoring the fact that foundation pit possesses three dimensions. For soil constitutive relation,people always take linear and nonlinear model,without considering the plastic behavior of soil. Using plastic-elastic hardening model to simulate constitutive relation of soil characteristics,the authors carried out mechanical analysis for pit excavation and support. The results show that the analysis for the stress state of pile anchor system is an effective way which provides theoretical basis for calculation of soil displacement. 展开更多
关键词 deep foundation pit elastic-plastic constitutive relation flowing law bearing characteristic
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Study of elastic-plastic damage model of cement consolidated soil with high organic content
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作者 CHEN Huie WANG Qing CAI Keyi 《Global Geology》 2009年第1期17-21,共5页
On the basis of elastic-plastic damage model of cement consolidated soil,the authors took organic contents into reasonable damage variable evolution equation in order to seek relation between the organic contents and ... On the basis of elastic-plastic damage model of cement consolidated soil,the authors took organic contents into reasonable damage variable evolution equation in order to seek relation between the organic contents and parameters in the equation,and established the elastic-plastic damage model of cement consolidated soil considering organic contents.The results show that the parameters change correspondingly with difference of the organic contents.The higher the organic contents are,the less the valves of the parameters such as elastic modulus(E),material parameters(K,n) and damage evolution parameter(ε) become,but the larger strain damage threshold value(εd) of the sample is.Meanwhile,the calculation results obtained from established model are compared with the test data in the condition of common indoors test,which is testified with reliability. 展开更多
关键词 cement consolidated soil organic content elastic-plastic damage model
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Dynamic Properties of Long Large Cross-section Underground Structures in Dynamic Seismic Analysis
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作者 Chen Canshou Qi Chengzhi +2 位作者 Yang Xiuren Chen Guoxing Chen Jianjie 《Earthquake Research in China》 2011年第3期330-339,共10页
Seismic safety of underground structures is one of the main concerns in underground space exploitation. As the first step for dynamic seismic response analysis, the free vibration of long large cross-section undergrou... Seismic safety of underground structures is one of the main concerns in underground space exploitation. As the first step for dynamic seismic response analysis, the free vibration of long large cross-section underground structures is studied in the present paper. The general free transverse vibration motion equation of long large cross-section underground structure is derived with the comprehensive consideration of internal and external damping, effects of shear, cross-sectional rotational inertia and axial force, and a twoparameter soil model. In this way, Timoshenko's beam theory is extended. Two limit cases of free transverse vibration of underground structures are discussed. Parameter study shows that in general wave propagation velocities in structures increase with soil elastic parameters. However the influence of Winkler's parameter k is significant while the effect of the second soil elastic parameter gp is insignificant. The free vibration frequency of underground structures increases with relative wave number and soil elastic parameters. Unlike the influence of soil elastic parameters on wave propagation velocities, the influence of soil elastic parameters k and gp on the vibration frequency of underground structures have the same order; therefore the influence of the second soil parameter gp on the free vibration of underground structures should not be neglected in dynamic seismic analysis of underground structures 展开更多
关键词 Seismic safety Underground structure Free vibration Two-parameter soilmodel
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A nonlinear multi-field coupled model for soils 被引量:15
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作者 CAI GuoQing ZHAO ChengGang +1 位作者 LIU Yan LI Jian 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第5期1300-1314,共15页
A nonlinear multi-field coupled model for multi-constituent three-phase soils is derived by using the hybrid mixture theory. The balance equations with three levels (constituents, phases and the whole mixture soil) ar... A nonlinear multi-field coupled model for multi-constituent three-phase soils is derived by using the hybrid mixture theory. The balance equations with three levels (constituents, phases and the whole mixture soil) are set up under the assumption that soil is composed of multi-constituent elastic-plastic solid skeleton (which is different from the linearization method) and viscous liquid and ideal gas. With reasonable constitutive assumptions in such restrictive conditions as the principles of determinism, equipresence, material frame-indifference and the compatible principle in continuum mechanics, a theoretical framework of constitutive relations modeling three-phase soil in both non-equilibrium and equilibrium states is established, thus the closed field equations are formed. In the theoretical framework, the concept of effective generalized thermodynamic forces is introduced, and the nonlinear coupling constitutive relations between generalized dissipation forces and generalized flows within the system at nonequilibrium state are also presented. On such a basis, four special coupling relations, i.e., solid thermal elastic-plastic constitutive relation, liquid visco-elastic-plastic constitutive relation, the generalized Fourier’s law, and the generalized Darcy’s law are put forward. The generalized or nonlinear results mentioned above can degenerate into the linear coupling results given by Bennethum and Singh. Based on a specific dissipation function, the concrete form of generalized Darcy’s law is deduced, which may degenerate into the traditional form of Darcy’s law by neglecting the influence of skeleton deformation and temperature. Without considering temperature and other coupling effects, the nonlinear coupled model in this paper can degenerate into a soil elastic-plastic constitutive model. 展开更多
关键词 multi-field coupled model for soils hybrid mixture theory NON-LINEAR multi-constituent
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