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

Question 3 of 20: Sedimentary Facies and a Shallowing-Upward Carbonate Succession

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 3: Sedimentary Facies and a Shallowing-Upward Carbonate Succession (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.

(a) Sedimentary facies. A sedimentary facies is a body of rock distinguished from adjacent rock bodies by a characteristic combination of lithology (rock type, texture, mineralogy), physical and biogenic sedimentary structures, and fossil content, such that the combination reflects the specific depositional environment and processes that formed it. A facies is defined descriptively but interpreted genetically – identifying it is the first step toward reconstructing the paleoenvironment.

(b) Shallowing-upward carbonate succession. From base to top, water depth decreases and depositional energy/exposure frequency generally increases (with a brief high-energy peak at the intertidal grainstone shoal), producing a classically recognizable log:

Shallowing-upward carbonate log (subtidal → supratidal) Subtidal – burrowed skeletal wackestone/packstone, bioturbation, open-marine fauna Intertidal – laminated algal (stromatolitic) boundstone; fenestral (birdseye) porosity; thin tidal-channel grainstone Supratidal – laminated dolomitic mudstone, desiccation cracks, sabkha anhydrite nodules top base Subtidal wackestone/packstone (burrowed) Intertidal laminated boundstone/grainstone Supratidal dolomitic mudstone (sabkha)
Vertical log of a shallowing-upward carbonate succession: burrowed subtidal wackestone/packstone grades up into laminated intertidal boundstone with fenestral porosity, capped by supratidal dolomitic mudstone with desiccation cracks and sabkha anhydrite – the classic peritidal cycle.