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24-Pet-A1 Principles of Stratigraphy and Sedimentation · May 2016

Question 2 of 20: Paleocurrent Indicators and Rose-Diagram Depositional Patterns

Nivaar worked solution (AI-drafted; not reviewed by a licensed engineer)

Notes on this paper

EGBC National Exam — Petroleum Engineering, 98-Pet-A1 Principles of Stratigraphy & Sedimentation, 2016-May. 3 hours duration; closed book, no calculator permitted. The paper has two parts: Part 1 (Questions 1–12, Sedimentology and Sedimentary Processes – 10 marks each; answer any eight of the twelve, 80 marks total) and Part 2 (Questions 13–20, Stratigraphy and Sedimentary Basin Analysis – 10 marks each; answer any five of the eight, 50 marks total) – a 130-mark maximum (80 for Part 1 + 50 for Part 2).

Reference texts: Boggs, S. Jr., Principles of Sedimentology and Stratigraphy, 5th ed., Pearson (grain texture, sediment transport, bedforms, carbonate/evaporite systems, sequence stratigraphy, unconformities, stratigraphic principles); Tucker, M.E., Sedimentary Petrology, 3rd ed., Blackwell (carbonate classification, diagenesis, dolomitization); Nichols, G., Sedimentology and Stratigraphy, 2nd ed., Wiley-Blackwell (fluvial systems, sequence stratigraphy, stratigraphic units); Reading, H.G. (ed.), Sedimentary Environments: Processes, Facies and Stratigraphy, 3rd ed., Blackwell (facies models, trace fossils, coastal processes); Selley, R.C. & Sonnenberg, S., Elements of Petroleum Geology, 3rd ed., Academic Press (source rocks, basin classification, reservoir quality); International Commission on Stratigraphy, International Chronostratigraphic Chart (geological time scale).

Question 2: Paleocurrent Indicators and Rose-Diagram Depositional Patterns (10 marks)

Question text not reproduced: the examination questions are © Engineers and Geoscientists BC. Open the official past paper (linked at the top of this page) to read the question, then follow the worked solution below.

Three directional sedimentary structures. Cross-bedding (trough or planar) – foreset laminae of a migrating dune or ripple dip in the transport direction, so the dip azimuth (best read from a trough's three-dimensional axis) gives the paleoflow vector. Flute casts – asymmetric scours cut by a turbulent current into a muddy substrate and preserved as casts on the base of the overlying sandstone; the blunt, deeper end points up-current and the tapering end points down-current. Imbricated clasts – elongate pebbles that settle with their long axes tilted up-current (like overlapping roof shingles facing into the flow), giving a stable, current-parallel fabric directly readable in outcrop.

Three rose-diagram patterns and the processes they represent. Plotting many paleocurrent azimuths as a circular (rose) histogram yields one of several characteristic shapes.

Rose-diagram paleocurrent patterns Unimodal fluvial channel / delta-front Bimodal-bipolar tidal channel (flood/ebb) Polymodal storm-dominated shelf
Rose-diagram paleocurrent patterns: unimodal (one dominant vector – unidirectional fluvial or delta-front flow), bimodal-bipolar (two opposed modes – reversing tidal-channel flow, classically producing herringbone cross-stratification), and polymodal (several dispersed modes – a storm-dominated shelf reworked from many directions over time).