: In the presence of pseudo-static seismic forces, passive earth pressure coefficients behind retaining walls were generated using the limit equilibrium method of analysis for the negative wall friction angle case (i.e., the wall moves upwards relative to the backfill) with logarithmic spirals as rupture surfaces. Individual density, surcharge, and cohesion components were computed to obtain the total minimum seismic passive resistance in soils by adding together the individual minimum components. The effect of variation in wall batter angle, ground slope, wall friction angle, soil friction angle, and horizontal and vertical seismic accelerations on seismic passive earth pressures are considered in the analysis. The seismic passive earth pr...
To design a retaining wall, conventional Mononobe-Okabe method, which is based on the pseudo-static ...
The author needs to be commended for his computational efforts in determining the passive earth pres...
A numerical method is developed to evaluate the passive earth pressure coefficients for an inclined ...
Seismic passive earth pressure coefficients were computed by the method of limit equilibrium using a...
In earthquake prone areas, understanding of the seismic passive earth resistance is very important f...
The method of characteristics was used to generate passive earth pressure coefficients for an inclin...
By taking the failure surface as a combination of the arc of a logarithmic spiral and a straight lin...
Computation of seismic passive resistance and its point of application is an important aspect of sei...
The sparsity of examination of seismic passive earth pressure acting on retaining wall holding soil ...
© 2017 Elsevier Ltd Evaluation of seismic passive earth pressure is an important topic of research i...
Design of retaining walls under seismic conditions is based on the calculation of seismic earth pres...
Passive resistance is a significantly important factor for successful design and performance of vari...
Calculation of seismic earth pressure is important for design of retaining walls in earthquake-prone...
A stress plasticity solution is proposed for evaluating the gravitational and dynamic active earth p...
The dynamic passive earth pressure as a resistance to the retaining wall movement is often required ...
To design a retaining wall, conventional Mononobe-Okabe method, which is based on the pseudo-static ...
The author needs to be commended for his computational efforts in determining the passive earth pres...
A numerical method is developed to evaluate the passive earth pressure coefficients for an inclined ...
Seismic passive earth pressure coefficients were computed by the method of limit equilibrium using a...
In earthquake prone areas, understanding of the seismic passive earth resistance is very important f...
The method of characteristics was used to generate passive earth pressure coefficients for an inclin...
By taking the failure surface as a combination of the arc of a logarithmic spiral and a straight lin...
Computation of seismic passive resistance and its point of application is an important aspect of sei...
The sparsity of examination of seismic passive earth pressure acting on retaining wall holding soil ...
© 2017 Elsevier Ltd Evaluation of seismic passive earth pressure is an important topic of research i...
Design of retaining walls under seismic conditions is based on the calculation of seismic earth pres...
Passive resistance is a significantly important factor for successful design and performance of vari...
Calculation of seismic earth pressure is important for design of retaining walls in earthquake-prone...
A stress plasticity solution is proposed for evaluating the gravitational and dynamic active earth p...
The dynamic passive earth pressure as a resistance to the retaining wall movement is often required ...
To design a retaining wall, conventional Mononobe-Okabe method, which is based on the pseudo-static ...
The author needs to be commended for his computational efforts in determining the passive earth pres...
A numerical method is developed to evaluate the passive earth pressure coefficients for an inclined ...