G17: Sedimentary Environments
Characteristics of major sedimentary environments (fluvial, aeolian, marine, glacial) and how to recognise them from rock records.
Characteristics of major sedimentary environments (fluvial, aeolian, marine, glacial) and how to recognise them from rock records.
Characteristics of major sedimentary environments (fluvial, aeolian, marine, glacial) and how to recognise them from rock records.
For Sedimentary Environments, you must know:
Q: How can you recognise a fluvial (river) sedimentary environment from the rock record?
Q: What features indicate a glacial depositional environment?
Q: How do turbidites form and what is the Bouma sequence?
Q: What features distinguish aeolian sandstone from fluvial sandstone?
Q: What are varves and how do they form?
✗ Cross-bedding only forms in desert environments ✓ Cross-bedding forms wherever currents (wind or water) deposit sediment on the sloping face of dunes or ripples; it occurs in aeolian, fluvial and shallow marine environments
✗ All sandstone is formed in deserts ✓ Sandstone forms in many environments: fluvial (river channels), aeolian (desert dunes), shallow marine (beaches), and deep marine (turbidites); the sorting, bedding structures and fossils distinguish them
✗ Till is sorted by the glacier ✓ Till is unsorted (all grain sizes mixed together) because glaciers dump all their sediment load simultaneously when they melt, unlike rivers which sort sediment by size during transport
Describe the characteristic features of three sedimentary environments and explain how geologists identify them in the rock record. [6 marks]
Fluvial (river) environments produce fining-upward sequences: channel sandstones with cross-bedding grade upward into floodplain mudstones with rootlet beds and palaeosols. Channel bodies are lens-shaped in cross-section. Sorting is moderate and grains are sub-rounded. Freshwater fossils may occur. Aeolian (desert) environments produce very well-sorted, well-rounded sandstones with large-scale cross-bedding formed by wind-blown dunes. Grains may be frosted from wind abrasion. There are no aquatic fossils, and red/oxidised colours are common (e.g. Old Red Sandstone). Deep marine environments produce turbidite sequences: graded beds (Bouma sequence) with coarse sand at the base and fine mud at the top, deposited by turbidity currents flowing down the continental slope. Greywackes (poorly sorted, dark sandstones) are characteristic, interbedded with basinal mudstones containing marine microfossils. Geologists identify these environments by combining several lines of evidence: grain size and sorting (indicating transport agent and energy), sedimentary structures (cross-bedding, graded bedding, ripple marks), fossil content (marine vs terrestrial organisms), geometry of rock bodies (channel shapes vs sheet deposits), and vertical sequences (fining-upward, coarsening-upward). No single feature is diagnostic; the combination of evidence allows confident interpretation of the palaeoenvironment.
AO1 (Knowledge & Understanding): Demonstrate knowledge and understanding of sedimentary environments, including key geological concepts, observational data and theoretical models relevant to OCR J357.
AO2 (Application of Knowledge): Apply knowledge and understanding of sedimentary environments to both familiar and unfamiliar geological contexts, using field evidence and theoretical principles to explain phenomena.
AO3 (Analysis & Evaluation): Analyse geological data related to sedimentary environments, evaluate evidence from observations and investigations, and construct reasoned arguments using scientific methodology.
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