Tuesday, February 7, 2017

G. Shanmugam's other geological publications: Tidal Estuaries (Ecuador), Braid deltas, Chert dissolution beneath Erosional unconformities (Prudhoe Bay Field, Alaska), Oil from coal (Gippsland Basin, Australia), and Manganese in carbonates





G. Shanmugam's other geological publications

Introduction

This is a companion Blog to G. Shanmugam’s  main Blog on “Deep-water processes” URL: http://g-shanmugam.blogspot.com/
               The purpose of this Blog is to share G. Shanmugam’s published works on various other topics, such as journal cover photographs, oil generation from terrestrial organic matter (coal), erosional unconformities and porosity development, porosity in sandstones, fan deltas and braid deltas, tide-dominated estuaries, Appalachian tectonics, Mn distribution in marine strata, etc. with free PDF downloads.

Biography

·        G. Shanmugam is a person pf Indian origin. He was born in Sirkali, Tamil Nadu.
·        B.Sc. Geology and Chemistry. Annamalai University, 1965
·        M.Sc. Applied Geology, IIT-Bombay, 1968. IIT Medal for top-ranking student.
·        CSIR Scholar, IITB, 1968-1970.
·        He emigrated to the U.S. in 1970 and became a naturalized U. S. citizen in 1990.
·        Upon completing his Ph.D (1978, University of Tennessee, Knoxville) on tectonics and sedimentation of the Ordovician Appalachians, he joined Mobil Oil Company in Dallas, Texas (retired 2000).
·        As an adjunct professor at Univ. Texas at Arlington, he taught sedimentology and stratigraphy courses during 2003-2004.
·        He is a pragmatic and an iconoclastic deep-water process sedimentologist. However, his research covers a broad spectrum of domains.
·        Consultant on Core studies (2004-2010): Reliance Industries Ltd., Mumbai (India)
·        Scientific Advisor on Research (2010-2011): PetroChina, Beijing (China)
·        He has 350 published works, including two volumes of Elseviers Handbook of Petroleum Exploration and Production (2006 and 2012). Both books were translated into Chinese and republished in 2015 by Elsevier. His publications can be downloaded from ResearchGate.
·        He is an Associate Editor-in-Chief of the  Journal of Palaeogeography  (Elsevier) and an editorial Member of the journal  Petroleum Exploration and Development  (Elsevier).
·        He celebrated his 40th wedding anniversary with his American wife Jean in 2016.


Tide-Dominated Estuarine Facies

 
Shanmugam, G., Poffenberger, M., Toro Alava, J., 2000. Tide-dominated estuarine facies in the Hollin and Napo (‘T’ and ‘U’) formations (Cretaceous), Sacha Field, Oriente Basin, Ecuador. Am. Assoc. Petroleum Geol. Bull. 84, 652-682.
To download PDF, click or copy and paste URL:


Higgs, R., 2002, Tide-dominated estuarine facies in the Hollin and Napo (“T” and “U”) Formations (Cretaceous), Sacha Field, Oriente Basin, Ecuador: Comment: AAPG Bulletin, v. 86, p.331-334.
To download PDF, click or copy and paste URL:


Shanmugam, G., and Poffenberger, M., 2002, Tide-dominated estuarine facies in the Hollin and Napo (“T” and “U”) Formations (Cretaceous), Sacha Field, Oriente Basin, Ecuador: Reply: AAPG Bulletin, v. 86, p.335-340.
To download PDF, click or copy and paste URL:



Fan Deltas and Braid Deltas


McPherson, J. G., Shanmugam, G., and Moiola, R. J., 1987, Fan deltas and braid deltas:  Varieties of coarse‑grained deltas:  GSA Bulletin, v. 99, pp. 331-340.
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McPherson, J. G., Shanmugam, G., and Moiola, R. J., 1988, Fan deltas and braid deltas:  Varieties of coarse‑grained deltas:  Discussion and Reply, Reply:  GSA Bulletin, v. 100, pp. 1309‑1310.
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McPherson, J. G., Shanmugam, G., and Moiola, R. J., 1988, Fan deltas and braid deltas:  Conceptual Problems, in Nemec, W., and Steel, R. J., eds., Fan deltas and related systems:  Sedimentology and tectonic settings:  U. K., Blackie Publishing Group, pp. 14‑22.



Appalachian tectonics and sedimentation

Shanmugam, G., and Walker, K. R., 1978, Tectonic significance of distal turbidites in the Middle Ordovician Blockhouse and lower Sevier formations in east Tennessee:  American Jour. Science, v. 278, pp. 551‑ 578.

Shanmugam, G., and Walker, K. R., 1980, Sedimentation, subsidence, and evolution of a foredeep basin in the Middle Ordovician, Southern Appalachians:  American Jour. Science, v. 280, pp. 479‑496.

 Shanmugam, G., and Lash, G. G., 1982, Analogous tectonic evolution of the Ordovician foredeeps, southern and central Appalachians:  Geology, v. 10, pp. 562‑566.
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Shanmugam, G., and Lash, G. G., 1983a, Comment and reply on "Analogous tectonic evolution of the Ordovician foredeeps, southern and central Appalachians"‑Reply:  Geology, v. 11, pp. 492‑493. To download PDF, click or copy and paste UR: https://docs.google.com/file/d/0B7yqaSoBdSEVRXUyd0NWZzJ2azQ/edit?usp=sharing
Shanmugam, G., and Lash, G. G., 1983b, Comment and reply on "Analogous tectonic evolution of the Ordovician foredeeps, southern and central Appalachians"‑Reply:  Geology, v. 11, pp. 732‑733. To download PDF, click or copy and paste UR:  https://docs.google.com/file/d/0B7yqaSoBdSEVdG5McTlvbkVOU2s/edit?usp=sharing
Shanmugam, G., and Walker, K. R., 1983, Anatomy of the Middle Ordovician  Sevier Shale basin, eastern Tennessee:  Sedimentary Geology, v. 34, pp. 315‑337.
Shanmugam, G., 1985, Ophiolite source rocks for Taconic‑age flysch:  Trace‑ element evidence:  Discussion:  Geol. Soc. America Bulletin, v. 96, pp. 1221‑1222.

Shanmugam, G., et al., 1985, Comment and reply on "Provenance of the Middle Ordovician Blount clastic Wedge, Georgia and Tennessee", Comment:  Geology, v. 13, pp. 889‑891.
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Mixed Carbonate and Clastic Sedimentation

Walker, K. R., Shanmugam, G., and Ruppel, S. C., 1983, A model for carbonate to terrigenous clastic sequences:  Geological Society of America Bull., v. 94, pp. 700‑712.
To download PDF, click or copy and paste URL:

Porosity in sandstones

Shanmugam, G., 1985, Types of porosity in sandstones and their significance in interpreting provenance, in G. G. Zuffa (ed.), Provenance of Arenites:  D. Reidel Publishing Company, Holland, pp. 115‑137.

 Shanmugam, G., 1985, Significance of secondary porosity in interpreting sandstone composition:  AAPG Bulletin, v. 69, pp. 378‑384.
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 Shanmugam, G., 1985, Significance of framework dissolution in interpreting sandstone provenance:  Southwestern Section AAPG Transactions, pp. 179‑182.

 Shanmugam, G., 1989, Porosity development in sandstones beneath erosional unconformities, in Flis, J.E., Price, R.C., and Sarg, J.F., eds.,  Search for the subtle trap hydrocarbon exploration in mature basins: West Texas Geological Society Publication 89-85, p. 269-281.
Shanmugam, G., 1988, Origin, recognition and importance of erosional unconformities in sedimentary basins, in K.L. Kleinspehn and C. Paola, eds., New perspectives in basin analysis: New York, Springer-Verlag, p. 83-108.

Shanmugam, G., 1990, Porosity prediction in sandstones using erosional unconformities, in  I.D. Meshri and P.J. Ortoleva, eds., Prediction of reservoir quality through chemical modeling: AAPG Memoir 49, p. 1-23.
            To download PDF (pre-print summary), click or copy and paste URL
               https://drive.google.com/file/d/0B7yqaSoBdSEVcllfRm9oME1Vbzg/view?usp=sharing

Shanmugam, G., 1990, Diagenetic quartzarenite and destruction of secondary porosity: An example from the Middle Jurassic Brent Sandstone of the northwest Europe: Comment and Reply: Geology, v. 18, p.287.
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3. Unconformity-related porosity enhancement in the Prudhoe Bay Field, Alaska

 Shanmugam, G., and Higgins, J. B., 1988, Porosity enhancement from chert dissolution beneath Neocomian unconformity:  Ivishak formation, North Slope, Alaska:  AAPG Bulletin, v. 72, pp. 523‑535.
To download PDF, click or copy and paste URL:
https://docs.google.com/file/d/0B7yqaSoBdSEVek1pY1ZLZUhING8/edit?usp=sharing

S. Bloch, J.H. McGowen, and J.R. Duncan, 1990, Porosity enhancement from chert dissolution beneath Neocomian unconformity:  Ivishak formation, North Slope, Alaska: Discussion: AAPG Bulletin, v. 74, p. 85-88.
To download PDF, click or copy and paste URL:

Shanmugam, G., and Higgins, J. B., 1990, Porosity enhancement from chert dissolution beneath Neocomian unconformity:  Ivishak formation, North Slope, Alaska: Reply to Discussion by S. Bloch, J.H. McGowen, and J.R. Duncan: AAPG Bulletin, v. 74, p. 89-90.
To download PDF, click or copy and paste URL:

D.A. Barnes and J. Jameson, 1990, Porosity enhancement from chert dissolution beneath Neocomian unconformity:  Ivishak formation, North Slope, Alaska: Discussion: AAPG Bulletin, v. 74, p. 1748-1751.
To download PDF, click or copy and paste URL:

Shanmugam, G., and Higgins, J. B., 1990, Porosity enhancement from chert dissolution beneath Neocomian unconformity:  Ivishak formation, North Slope, Alaska: Reply to Discussion by D.A. Barnes and J. Jameson: AAPG Bulletin, v. 74, p. 1752-1753.
To download PDF, click or copy and paste URL:


Manganese distribution in marine strata

Shanmugam, G., and Benedict, G. L., III, 1983, Manganese distribution  in the carbonate fraction of shallow and deep marine lithofacies, Middle Ordovician, eastern Tennessee:  Sedimentary Geology, v. 35, pp. 159‑175.

 Flume experiments, ACE Language Computer Program, and Sedimentology of Bagh Sandstones (Cretaceous, India)

Karcz, I., and Shanmugam, G., 1974, Decrease in scour rate of fresh deposited muds:  Proc. American Society of Civil Engineers, Jour. of the Hydraulics Division, v. 100, No. HY 11, pp. 1735‑1738.

Shanmugam, G., 1970, ACE Language Computer Program for Computation of Moment Statistics in  Size-Shape Studies of Sedimentary Particles: Geological Bulletin, Geology Section, Department of Civil Engineering, Indian Institute of Technology, Bombay, V. No. 1, p. 13-17.
To download PDF, click or copy and paste URL:


Parthasarathy, A., and Shanmugam, G., 1969, Sedimentological characterisrics and their significance – Studies on Bagh Sandstones in and around Tankhala (Gujarat State): 56th Session of the Indian Science Congress, Proceedings, Part 3, Section V: Geology and Geography, p. 209.

          


Wednesday, November 5, 2014

Recognition of G. Shanmugam’s research expertise by the U.S. Government and other entities as of November 5, 2014

Recognition of G. Shanmugam’s research expertise by the U.S. Government and other entities as of November 5, 2014

Selected topics 

Experts for marine sedimentology

Experts for turbidite sandstones

Submarine fans final: Topics by Science.gov

Submarine fan facies: Topics by WorldWideScience.org

Experts for inverse graded bedding

Experts for paleo depositional environment

Experts for debrite
                            
Experts for deep sliding

Experts for sliding slumping

Experts for sandstone

Experts for core sand

Experts for deep sea deposits

Experts for deep water sand

Experts for deep water massive sands

Experts for deep water structure

Experts for deep water exploration

Experts for exploration of new deposits

Experts for ocean floor

Experts for tidalites

Tropical cyclones. China Science | 2008 | September

Experts for internal waves

Experts for baroclinic sand


Experts for tsunamite

Experts for tsunami flow

Experts for paleo tsunami sediments

Experts for tsunami vs storm deposits

Experts for paleo coastlines

Experts for submarine earthquake geology

Experts for lowstand

Formation unconformably overlies: Topics by Science.gov

Shelfal source facies: Topics by WorldWideScience.org

TSOP: Selected References on Organic Petrology: Coal as Oil Source Rock

Shear stremgth of clays by Karcz and Shanmugam, 1974, ASCE). In: Evaluation of the State-of-the-Art Contaminated Sediment Transport and Fate Modeling System. EPA/600/R-06/108 September 2006


Explanation of Online Sources:

Science.gov is an interagency initiative of 19 U.S. government science organizations within 15 Federal Agencies. These agencies form the voluntary Science.gov Alliance which governs Science.gov. cience.gov is a gateway to government science information and research results. Currently in its fifth generation, Science.gov provides a search of over 60 scientific databases and 200 million pages of science information with just one query, and is a gateway to over 2200 scientific Websites (see Science.gov fact sheet).

EPA represents the United States Environmental Protection Agency.

WorldWideScience.org is a global science gateway—accelerating scientific discovery and progress through a multilateral partnership to enable federated searching of national and international scientific databases and portals.

Linknovate is an online source to rapidly discover relevant publications and related experts in a given scientific domain.

TSOP: The Society of Organic Petrology is a society for scientists and engineers involved with coal petrology, kerogen petrology, organic geochemistry and related disciplines.