NAPE 2009 Registrant Listing by Company
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TEACHERS' RETIREMENT SYSTEM of the STATE of ILLINOIS 2815 West Washington Street I P.O
Teachers’ Retirement System of the State of Illinois Compliance Examination For the Year Ended June 30, 2020 Performed as Special Assistant Auditors for the Auditor General, State of Illinois Teachers’ Retirement System of the State of Illinois Compliance Examination For the Year Ended June 30, 2020 Table of Contents Schedule Page(s) System Officials 1 Management Assertion Letter 2 Compliance Report Summary 3 Independent Accountant’s Report on State Compliance, on Internal Control over Compliance, and on Supplementary Information for State Compliance Purposes 4 Independent Auditors’ Report on Internal Control over Financial Reporting and on Compliance and Other Matters Based on an Audit of Financial Statements Performed in Accordance with Government Auditing Standards 8 Schedule of Findings Current Findings – State Compliance 10 Supplementary Information for State Compliance Purposes Fiscal Schedules and Analysis Schedule of Appropriations, Expenditures and Lapsed Balances 1 13 Comparative Schedules of Net Appropriations, Expenditures and Lapsed Balances 2 15 Comparative Schedule of Revenues and Expenses 3 17 Schedule of Administrative Expenses 4 18 Schedule of Changes in Property and Equipment 5 19 Schedule of Investment Portfolio 6 20 Schedule of Investment Manager and Custodian Fees 7 21 Analysis of Operations (Unaudited) Analysis of Operations (Functions and Planning) 30 Progress in Funding the System 34 Analysis of Significant Variations in Revenues and Expenses 36 Analysis of Significant Variations in Administrative Expenses 37 Analysis -
Geophysics 210 September 2008
Geophysics 210 September 2008 Geophysics 210 - Physics of the Earth A1: What is geophysics Geophysics: Application of physics to understand the structure and working of the Earth. Geophysics can be divided into exploration geophysics and geodynamics. Exploration geophysics is the process of imaging what is inside the Earth. Direct sampling in the Earth with drilling can only reach depths around 10 km so indirect methods are needed. Often used to describe commercial exploration, but includes investigations to depths of the mantle and core. All geophysical methods can be divided into active and passive techniques. In an active technique, it is necessary to generate a signal (e.g. in seismic studies sound waves are generated with an explosion or an earthquake). In a passive technique a naturally occurring signal is detected (e.g. the pull of gravity of a buried object). Geodynamics is the study of how the Earth works, and considers questions such as: -what drives plate motion? -what triggers earthquakes? -how is the Earth’s magnetic field generated? -how do continent-continent collisions build mountains? This field depends heavily on information derived from geophysical imaging. Advances in computer power now allow simulations of these processes in ever increasing detail and realism. A2 : Basic structure of the Earth • Radially symmetric to first order. • Crust – mainly silicate minerals, enriched in lighter elements (Na, Al) • Mantle – silicate minerals with more heavy elements (Fe and Mg) magnesium. Divided into upper and lower mantle (dashed line) • Outer core - liquid iron that convects rapidly. • Inner core – Lump of solid iron roughly the size of the moon • Crust and mantle are defined in terms of their distinct chemical compositions. -
Ten Years of Marine CSEM for Hydrocarbon Exploration
GEOPHYSICS, VOL.75, NO. 5 ͑SEPTEMBER-OCTOBER 2010͒; P.75A67–75A81, 15 FIGS. 10.1190/1.3483451 Ten years of marine CSEM for hydrocarbon exploration Steven Constable1 years of the first survey three contracting companies had been ABSTRACT formed for the express purpose of providing commercial marine CSEM services to the exploration industry. Now, almost 10 years af- Marine controlled-source electromagnetic ͑CSEM͒ sur- ter the Girassol survey, marine CSEM is a broadly used, if not main- veying has been in commercial use for predrill reservoir ap- stream, geophysical technology, with over 500 surveys reportedly praisal and hydrocarbon exploration for 10 years.Although a having been carried out and several custom-built survey vessels in recent decrease has occurred in the number of surveys and operation. The 75th anniversary of GEOPHYSICS and the 10th anni- publications associated with this technique, the method has versary of commercial marine CSEM seem to constitute an appro- become firmly established as an important geophysical tool priate occasion to review the marine CSEM method: where we have in the offshore environment. This is a consequence of two im- been, where we are today, and where we might be going. portant aspects associated with the physics of the method: The aim of this paper is to provide a technical review, which is ac- First, it is sensitive to high electrical resistivity, which, al- cessible to the nonexpert, of the marine CSEM method. However, to though not an unambiguous indicator of hydrocarbons, is an illustrate some of the important issues, original calculations have important property of economically viable reservoirs. -
Modeling for Inversion in Exploration Geophysics A
MODELING FOR INVERSION IN EXPLORATION GEOPHYSICS A Dissertation Presented to The Academic Faculty By Mathias Louboutin In Partial Fulfillment of the Requirements for the Degree Doctor of Philosophy in the School of CSE in the College of Computing Georgia Institute of Technology February 2020 Copyright c Mathias Louboutin 2020 MODELING FOR INVERSION IN EXPLORATION GEOPHYSICS Approved by: Dr. Felix J. Herrmann, Advisor School Computational Science and Engineering Dr. Tobin Isaac Georgia Institute of Technology School of Computer Science Georgia Institute of Technology Dr. Umit Catalyurek School Computational Science and Dr. Zhigang Peng Engineering School of Earth and Atmospheric Georgia Institute of Technology Sciences Georgia Institute of Technology Dr. Edmond Chow School Computational Science and Date Approved: March 1, 2020 Engineering Georgia Institute of Technology ACKNOWLEDGEMENTS Before anything else, I would like to thank my supervisor Dr Felix J. Herrmann for giv- ing me the opportunity to work with him. Thanks to his leadership I had the opportunity to work and scientifically challenging problems in a collaborative and motivating atmosphere. I would also like to thank Professor Gerard Gorman at Imperial college. And large part of my research was kick-started by a visit at Imperial College and Dr. Gorman’s support and guidance made me achieve my research objective. I would like to thank Professor Umit Catalyurek, Professor Edmond Chow, Professor Tobin Isaac and Professor Zhigang Peng for agreeing to be on my Ph.D. committee at Georgia Tech, for reviewing my thesis, for making time for my proposal and defense and for your valuable input on my work. I would also like to thank my former Ph.D. -
Results of the Application of Seismic- Reflection And
RESULTS OF THE APPLICATION OF SEISMIC- REFLECTION AND ELECTROMAGNETIC TECHNIQUES FOR NEAR-SURFACE HYDROGEOLOGIC AND ENVIRONMENTAL INVESTIGATIONS AT FORT BRAGG, NORTH CAROLINA ByM.T. Meyer and Jason M. Fine U.S. GEOLOGICAL SURVEY Water-Resources Investigations Report 97-4042 Prepared for the Department of the Army Fort Bragg, North Carolina Raleigh, North Carolina 1997 U.S. DEPARTMENT OF THE INTERIOR BRUCE BABBITT, Secretary U.S. GEOLOGICAL SURVEY Gordon P. Eaton, Director The use of firm, trade, and brand names in this report is for identification purposes only and does not constitute endorsement by the U.S. Geological Survey. For additional information write to: Copies of this report can be purchased from: District Chief U.S. Geological Survey U.S. Geological Survey Branch of Information Services 3916 Sunset Ridge Road Box 25286 Raleigh, NC 27607 Denver Federal Center Denver, CO 80225-0286 CONTENTS Page Abstract.................................................................................. 1 Introduction.............................................................................. 2 Background ....................................................................... 3 Purpose and scope ................................................................. 3 Physiographic and geologic settings .................................................. 4 Acknowledgments .............................................................. 6 Surface-geophysical methods ............................................................... 7 Shallow seismic reflection -
An Introduction to Geophysical Exploration, 3E
An Introduction to Geophysical Exploration Philip Kearey Department of Earth Sciences University of Bristol Michael Brooks Ty Newydd, City Near Cowbridge Vale of Glamorgan Ian Hill Department of Geology University of Leicester THIRD EDITION AN INTRODUCTION TO GEOPHYSICAL EXPLORATION An Introduction to Geophysical Exploration Philip Kearey Department of Earth Sciences University of Bristol Michael Brooks Ty Newydd, City Near Cowbridge Vale of Glamorgan Ian Hill Department of Geology University of Leicester THIRD EDITION © 2002 by The right of the Authors to be distributors Blackwell Science Ltd identified as the Authors of this Work Marston Book Services Ltd Editorial Offices: has been asserted in accordance PO Box 269 Osney Mead, Oxford OX2 0EL with the Copyright, Designs and Abingdon, Oxon OX14 4YN 25 John Street, London WC1N 2BS Patents Act 1988. (Orders: Tel: 01235 465500 23 Ainslie Place, Edinburgh EH3 6AJ Fax: 01235 465555) 350 Main Street, Malden All rights reserved. No part of MA 02148-5018, USA this publication may be reproduced, The Americas 54 University Street, Carlton stored in a retrieval system, or Blackwell Publishing Victoria 3053,Australia transmitted, in any form or by any c/o AIDC 10, rue Casimir Delavigne means, electronic, mechanical, PO Box 20 75006 Paris, France photocopying, recording or otherwise, 50 Winter Sport Lane except as permitted by the UK Williston,VT 05495-0020 Other Editorial Offices: Copyright, Designs and Patents Act (Orders: Tel: 800 216 2522 Blackwell Wissenschafts-Verlag GmbH 1988, without the prior -
Bore Hole Ebook, Epub
BORE HOLE PDF, EPUB, EBOOK Joe Mellen,Mike Jay | 192 pages | 25 Nov 2015 | Strange Attractor Press | 9781907222399 | English | Devizes, United Kingdom Bore Hole PDF Book Drillers may sink a borehole using a drilling rig or a hand-operated rig. Search Reset. Another unexpected discovery was a large quantity of hydrogen gas. Accessed 21 Oct. A borehole may be constructed for many different purposes, including the extraction of water , other liquids such as petroleum or gases such as natural gas , as part of a geotechnical investigation , environmental site assessment , mineral exploration , temperature measurement, as a pilot hole for installing piers or underground utilities, for geothermal installations, or for underground storage of unwanted substances, e. Forces Effective stress Pore water pressure Lateral earth pressure Overburden pressure Preconsolidation pressure. Cancel Report. Closed Admin asked 1 year ago. Help Learn to edit Community portal Recent changes Upload file. Is Singular 'They' a Better Choice? Keep scrolling for more. Or something like that. We're gonna stop you right there Literally How to use a word that literally drives some pe Diameter mm Diameter mm Diameter in millimeters mm of the equipment. Drilling for boreholes was time-consuming and long. Whereas 'coronary' is no so much Put It in the 'Frunk' You can never have too much storage. We truly appreciate your support. Fiberscope 0 out of 5. Are we missing a good definition for bore-hole? Gold 0 out of 5. Share your knowledge. We keep your identity private, so you alone decide when to contact each vendor. Oil and natural gas wells are completed in a similar, albeit usually more complex, manner. -
E-Learning Most Socially Active Professionals
The World’s Most Socially Active Oil & Energy Professionals – September 2020 Position Company Name LinkedIN URL Location Size No. Employees on LinkedIn No. Employees Shared (Last 30 Days) % Shared (Last 30 Days) 1 Rystad Energy https://www.linkedin.com/company/572589 Norway 201-500 282 87 30.85% 2 Comerc Energia https://www.linkedin.com/company/2023479 Brazil 201-500 327 89 27.22% 3 International Energy Agency (IEA) https://www.linkedin.com/company/26952 France 201-500 426 113 26.53% 4 Tecnogera Geradores https://www.linkedin.com/company/2679062 Brazil 201-500 211 52 24.64% 5 Cenit Transporte y Logística de Hidrocarburos https://www.linkedin.com/company/3021697 Colombia 201-500 376 92 24.47% 6 Moove https://www.linkedin.com/company/12603739 Brazil 501-1000 250 59 23.60% 7 Evida https://www.linkedin.com/company/15252384 Denmark 201-500 246 57 23.17% 8 Dragon Products Ltd https://www.linkedin.com/company/9067234 United States 1001-5000 350 79 22.57% 9 Kenter https://www.linkedin.com/company/10576847 Netherlands 201-500 246 54 21.95% 10 Repower Italia https://www.linkedin.com/company/945861 Italy 501-1000 444 96 21.62% 11 Trident Energy https://www.linkedin.com/company/11079195 United Kingdom 201-500 283 60 21.20% 12 Odfjell Well Services https://www.linkedin.com/company/9363412 Norway 501-1000 250 52 20.80% 13 XM Filial de ISA https://www.linkedin.com/company/2570688 Colombia 201-500 229 47 20.52% 14 Energi Fyn https://www.linkedin.com/company/1653081 Denmark 201-500 219 44 20.09% 15 Society of Petroleum Engineers International https://www.linkedin.com/company/23356 United States 201-500 1,477 294 19.91% 16 Votorantim Energia https://www.linkedin.com/company/3264372 Brazil 201-500 443 86 19.41% 17 TGT Oilfield Services https://www.linkedin.com/company/1360433 United Arab Emirates201-500 203 38 18.72% 18 Motrice Soluções em Energia https://www.linkedin.com/company/11355976 Brazil 201-500 214 40 18.69% 19 GranIHC Services S.A. -
Speaker Bios
Safety30 Speaker Bios Matt Abraham HSE Director, Oil & Gas UK No bio Rebecca Allison Asset Integrity Solutions Centre Manager, The Oil & Gas Technology Centre Rebecca is a highly driven and motivated Senior Manager with more than 20 years of experience in the oil and gas sector working for various service companies such as Lloyd’s Register, Aker Solutions and Stork. As manager of the Asset Integrity Solution Centre within the Oil & Gas Technology Centre, Rebecca is responsible for leading the Asset Integrity team to identify and appraise the relevance, readiness and accessibility of existing technology in the market place to meet mature basin asset integrity challenges. She is specifically charged with identifying specific technology gaps that remain in asset integrity through designing and delivering programmes to resolve these gaps. Mario Alonso Digital Solutions Product Leader - Subsea Production Systems & Service, Baker Hughes, a GE Company Mario is a digital solutions product leader at Baker Hugues, a GE Business. He is responsible for the digital solutions portfolio within Subsea Production Systems and Services, and has been focused on development of digital analytics applications for the last 13+ years. Mario has an engineering background and hold a PhD in Multi-Phase Fluid Dynamics. He is a chartered engineer and member of the Institution of Mechanical Engineers. Zev Arnold Executive, Accenture Zev is an executive in Accenture's Industry X.0 Practice and a real-time applications practitioner. In his career, he has helped his clients make improvements in operational performance and integrity, and helped secure their license to operate. He has specialized in real-time infrastructure and analytics, working with the Integrated Operations initiatives of several multinational oil and gas operating companies. -
The Future of Onshore Seismic
VOL. 15, NO. 2 – 2018 GEOSCIENCE & TECHNOLOGY EXPLAINED geoexpro.com GEOTOURISM TECHNOLOGY EXPLAINED Aspen: Rocky Mountain High The Future of Onshore Seismic EXPLORATION Awaiting Discovery? The US Atlantic Margin GEOEDUCATION Resources Boosted by Billions GEOPHYSICS A Simple Guide to Depth Conversion Get Ready for the 2018 Egypt West Med License Round Unlock this frontier region with GeoStreamer seismic data for detailed subsurface information Benefit from true broadband depth imaging covering an area of more than 80 000 sq. km over the Herodotus/West Egypt Shelf. In partnership with: Meet our Egypt experts at EAGE in Copenhagen from 11–14 June 2018. Contact us for more information: [email protected] Ministry of Petroleum Ministry andof Petroleum Mineral Resources and Mineral Resources A Clearer Image | www.pgs.com/DataLibrary Previous issues: www.geoexpro.com Contents Vol. 15 No. 2 This edition of GEO ExPro focuses on North America; integrating geoscience for GEOSCIENCE & TECHNOLOGY EXPLAINED exploration; and reserves and resources. i 5 Editorial Egorov The underexplored US 6 Regional Update Atlantic margin may soon be open to exploration. 8 Licensing Update 10 A Minute to Read 14 Cover Story: Technology Explained: f Darts and Drones – The A simple guide to the parameters Future of Onshore Seismic involved in depth conversion. 18 Exploration: Awaiting Discovery? The US Atlantic Margin Earthworks Earthworks Reservoir 22 Industry Issues: Mind the Gaps v 24 GEO Physics: A Simple Guide Lasse Amundsen to Depth Conversion It is one of the oldest exploration areas in the world, but there is still plenty of potential in Central Europe. 26 Hot Spot: Renewed Excitement in Deepwater Gabon 28 Seismic Foldout: Exploring Papua New Guinea Y and Malvinas Become an expert at Finite 34 Exploration: Czeching it Out: Difference Modeling. -
Negativliste. Fossil Energi
Bilag 6. Negativliste. Fossil energi Maj 2017 Læsevejledning til negativlisten: Moderselskab / øverste ejer vises med fed skrift til venstre. Med almindelig tekst, indrykket, er de underliggende selskaber, der udsteder aktier og erhvervsobligationer. Det er de underliggende, udstedende selskaber, der er omfattet af negativlisten. Rækkeetiketter Acergy SA SUBSEA 7 Inc Subsea 7 SA Adani Enterprises Ltd Adani Enterprises Ltd Adani Power Ltd Adani Power Ltd Adaro Energy Tbk PT Adaro Energy Tbk PT Adaro Indonesia PT Alam Tri Abadi PT Advantage Oil & Gas Ltd Advantage Oil & Gas Ltd Africa Oil Corp Africa Oil Corp Alpha Natural Resources Inc Alex Energy Inc Alliance Coal Corp Alpha Appalachia Holdings Inc Alpha Appalachia Services Inc Alpha Natural Resource Inc/Old Alpha Natural Resources Inc Alpha Natural Resources LLC Alpha Natural Resources LLC / Alpha Natural Resources Capital Corp Alpha NR Holding Inc Aracoma Coal Co Inc AT Massey Coal Co Inc Bandmill Coal Corp Bandytown Coal Co Belfry Coal Corp Belle Coal Co Inc Ben Creek Coal Co Big Bear Mining Co Big Laurel Mining Corp Black King Mine Development Co Black Mountain Resources LLC Bluff Spur Coal Corp Boone Energy Co Bull Mountain Mining Corp Central Penn Energy Co Inc Central West Virginia Energy Co Clear Fork Coal Co CoalSolv LLC Cobra Natural Resources LLC Crystal Fuels Co Cumberland Resources Corp Dehue Coal Co Delbarton Mining Co Douglas Pocahontas Coal Corp Duchess Coal Co Duncan Fork Coal Co Eagle Energy Inc/US Elk Run Coal Co Inc Exeter Coal Corp Foglesong Energy Co Foundation Coal -
Offshore References
Past, Ongoing and Future Projects OFFSHORE Date Contractor Project Number of Welding Stations (vessel if offshore) Country Pipelines welded Operator 2020 COOEC Lingshui 17-2-SCR 6 Saturnax stations (HYS201) China 404 welds 6.625" (18.3 mm) for CNOOC - 2.93 km of SRC lines - 2.00 km of flowline 2020 TechnipFMC Nam Con Son 2 & SVDN 4 Saturnax stations (G1200) Vietnam Nam Con Son 2: for PetroVietnam (PV GAS) 89 km 26" (1.1 mm) SVDN: 22 km 26" (19.1 mm) 1 km 26" (23.8 mm) 22 km 18" (15.9 mm) 1 km 18" (17.5 mm) Total : 11,053 welds 2020 Sapura Offshore Pegaga Dev. Project 2 Saturnax stations (S3000) Malaysia 324 welds 38" (22.2 mm, X65) - 4 km for Sarawak Shell Berhad 2020 Thien Nam Offshore Services Nam Con Son 2 3 Saturnax stations (Tos Ha Long) Vietnam Total of 2,542 welds: for PetroVietnam 29.7 km 26" (19.1 mm) 0.8 km 26" (23.8 mm) 2020 Sapura Offshore Merakes 4 Saturnax stations (S1200) Indonesia Deepwater lines : for ENI Sepinggan 2,685 welds 18" (26.7 mm, X65) - 32.74 km 2,688 welds 18" (26.7 mm, X65) - 32.78 km Shallow water lines : 1,083 welds 18" (26.7 mm, X65) - 13.22 km 1,074 welds 18" (26.7 mm, X65) - 13.11 km 2020 Sapura Energy ENI Amoca 2 4 Saturnax stations (Sapura 3500) Mexico Total of 3,377 welds: for ENI 10.75" (14.33 mm, X60) 12.75" (20.6 mm, X60) 14" (15.9 mm, X60) Sweet service 2020 GSP Offshore Midia 1 Saturnax stations (Bigfoot 1) Romania 9,970 welds 16" (11.9/12.7/14.3 mm, X52) for Black Sea Oil & Gas 1,463 welds 8.625" (12.7 mm, X52) 2020 Sapura Energy Kirinskoye 1 Saturnax + 2 manual stations (Sapura 1200) Russie