Active Engineering

Durham-Newcastle-Adelaide: DNA research project

In plain English

AI plain-English summary

A British-Australian research team is extending an existing collaboration to launch a new project on making geotechnical structures—such as foundations, retaining walls, and tunnels—more reliable through better design methods. The problem is that geotechnical structures are built in or on the ground, which is notoriously variable and difficult to predict. Current design approaches often rely on conservative safety factors that can be either wasteful or insufficient. This project aims to develop reliability-based design methods that account for uncertainty in soil properties and loading conditions more rigorously. If successful, the research could lead to infrastructure that is both safer and more cost-effective. Bridges, embankments, and deep excavations might be designed with greater confidence, reducing the risk of failure while avoiding unnecessary over-engineering. The work is primarily fundamental in nature, advancing the mathematical and statistical tools for geotechnical engineering. While immediate practical applications are not the direct goal, such methods have historically underpinned improvements in building codes and construction standards that quietly protect public safety.

View original technical description
The goal of DNA is twofold. On the one hand, the funds will allow extending the research time of a visit already planned in an existing collaboration between Durham University (DU, United Kingdom), the University of Newcastle (UoN, Australia) and the University of Adelaide (UofA, Australia), funded by the Australian Research Council. On the other hand, the extended visit will be key to form and initiate a new research collaboration in the area of reliability-based design for geotechnical structures involving leading experts in the field from UoN and UofA.

View the original record at the funder ↗

Researchers

Marti Lloret-Cabot (Principal Investigator)

Related Research

Grants with similar aims, by meaning.

University of Durham - Equipment Account
Overseas Short Visit - Neutron Scattering Studies on DNA Compaction by Dendrimers
Sub-micron X-ray Computed Tomography Facility at Durham University - non-equipment part
From single-molecule to synchrotron: New tools for investigating the molecular mechanisms of Aicardi-Goutires Syndrome and other aberrant DNA diseases
DNA nanostructures as probes for multi-omic analyses

Original classification

Research and Innovation

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