8 results · AI-generated index
A
asce.org
article

Liquefaction Risk Reduction in Deep Foundations

This article discusses the design and construction of deep foundations to mitigate liquefaction risk, with a focus on seismic design and soil-structure interaction.

N
nrc.gov
official

Deep Foundation Design for Liquefaction-Prone Soils

The U.S. Nuclear Regulatory Commission provides guidelines for designing deep foundations in liquefaction-prone soils, emphasizing the importance of site-specific seismic hazard assessment.

R
researchgate.net
research

Liquefaction Risk Reduction using Pile Foundations

This research paper explores the effectiveness of pile foundations in reducing liquefaction risk, presenting case studies and numerical modeling results.

U
ucsd.edu
edu

Seismic Design of Deep Foundations for Liquefaction Mitigation

The University of California, San Diego, offers a course on seismic design of deep foundations, covering topics such as soil liquefaction, foundation design, and seismic hazard assessment.

B
bentley.com
tool

Deep Foundation Design Tool for Liquefaction Risk Assessment

Bentley Systems offers a deep foundation design tool that includes liquefaction risk assessment capabilities, enabling engineers to design and analyze deep foundations for various seismic scenarios.

Y
youtube.com
video

Liquefaction-Resistant Deep Foundation Design

This video lecture discusses the principles of liquefaction-resistant deep foundation design, including the use of pile foundations, caissons, and other deep foundation systems.

F
fhwa.dot.gov
official

Guidelines for Deep Foundation Design in Liquefaction-Prone Areas

The Federal Highway Administration provides guidelines for designing deep foundations in liquefaction-prone areas, emphasizing the importance of geotechnical investigation and seismic design.

G
geospatialworld.io
news

Advanced Deep Foundation Design for Liquefaction Risk Reduction

This article discusses the application of advanced technologies, such as artificial intelligence and machine learning, to deep foundation design for liquefaction risk reduction, highlighting the potential for improved design efficiency and accuracy.