The fingerprint of environmental change in the fluvial-aeolian sedimentary record

NERC · United Kingdom government procurement

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March 30, 2028
Response Due
Active
Status

Opportunity Overview

Desert aeolian sedimentary systems are sensitive to changes in a wide range of environmental variables, including climate, sea level, sediment supply and tectonic factors. As such, the preserved sedimentary deposits of desert dune fields record a fingerprint of past environmental change. This research project will use a combined field-based, remote-sensing and modelling approach to characterise a variety of different types of aeolian sedimentary system, and will develop a suite models that will enable regional palaeoenvironmental reconstruction for desert systems that evolved during several different periods in earth history and in different geographic settings in response to dramatically changing environmental conditions. Developed models will be used as predictors of the sediment system response to future environmental change, especially desertification arising from on-going climate change.

The aim of this research project is to develop a model to account for the response of preserved desert aeolian sedimentary systems to global drivers of environmental change, including climate, sea level, sediment supply and tectonics. Work will involve field-based data collection from world-class outcrops in the SW United States, analysis of remotely sensed data of modern systems, and lab-based modelling of sedimentary system evolution.

Specific research objectives of this research are: (i) to collect field-derived and remotely sensed data sets describing a range of sedimentary styles from both modern and ancient examples of major aeolian systems for which external controls can be shown to have played a key role in determining the preserved system state; (ii) to demonstrate evidence to show that primary allogenic and autogenic controls on preserved aeolian sedimentary systems are interdependent and interrelated via a series of complex feedback mechanisms; (iii) to develop a novel and innovative "next-generation" sequence stratigraphic model with which to explain how a range...

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Solicitation Details

Issuing agencyNERC
CountryUnited Kingdom
CategoryEnvironmental Services
PublishedSeptember 30, 2024
Procurement stageActive solicitation
Response dueMarch 30, 2028
StatusOpen — accepting responses
Official sourceView original notice
Last verifiedSeptember 21, 2026

Source: UK Research and Innovation (UKRI) — Open Government Licence v3.0.

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