Geophysical Society of Kansas

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Geophysical Society of Kansas

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HTTP://GSKS.SEG.ORG July-August 2006 Volume 2, Issue 4 Geophysical Society of Kansas Kansas-Ordovician PRESIDENT S MESSAGE In this issue: Program Chairman s Column Technical Program Abstract Note from the Editor 3 GSK Membership 3 GSK Council 3 GSK Committees 3 Crew Tracker 4 Current Research 6 Professional Directory 11 New Members 14 GSK Advertising 14 1 2 On May 16, 2006, your society quietly moved past its first anniversary, about a week ahead of the last Technical Program for the 2005 2006 schedule. (Our Section was chartered by the SEG on August 15, 2006.) As Rick Saenger reports, we had a very productive inaugural season, and I m sure our next one will bring additional high quality sessions, beginning with the September SEG Distinguished Lecture (see below). This month s issue also features a brief look of some of the geophysical research underway at the University of Kansas Department of Geology. Coauthored by Don Steeples and George Tsoflias, it is evident that the secrets of the near surface are likely to become extinct. Ground penetrating radar imaging aside, these novel seismic imaging techniques are certain to shed new light on a host of applications. While many of us will be in and out due to the vacation season, seismic crews see very little downtime these days, and current state of the art acquisition is yielding fruit not believed possible a decade ago. Multicomponent data is being regularly recorded and a number of surveys are being gathered with ultimate processed templates exceeding 100 square miles. We are always looking for new ways to bring useful information technology to our members. One such item our Council is presently considering relates to compiling a database of historically shot 3D surveys within Kansas. As you can imagine, this is not a trivial task, but we are pursuing it. We welcome ideas or suggestions pertaining to items of interest you have as members / readers of this periodical. Have a great summer and travel safely wherever you may be headed. And may your sensors be as noise-free as possible. Dennis Hedke Program Chairman s Column SEG Distinguished Lecturer to Visit GSKS Bill Fahmy to present DHI/AVO Best Practices Methodology and Applications. See more details inside. Web Address: http://gsks.seg.org The Geophysical Society of Kansas had a very good inaugural year. The speakers and titles for the first year were as follows: September 14 October 27 November 22 February 3 March 23 Bill Miller, Miller Consulting Services, Exploring in Kansas with Small Prospect Specific 3-D Surveys. Mark Fortuna of EOG Resources and Dr. John Queen, Characterization of Faults and Fractures in San Juan Basin Gas Reservoirs. Margaret Stratton, of Anadarko Canada Corporation, Impact of the Effects of Anisotropy in Canadian Foothills Exploration: A Case Study. Dr. Gary Mavko, (2006 SEG Distinguished Lecture) Rock Physics Strategies for Facies and Fluids Mapping. [Canceled due to conflict with North American Prospect Expo] James Bogardus (PGS) Update: Evolution of Land Seismic Acquisition, A 3-D Case Study from the Wichita Mountain Front, Oklahoma. Continued on p. 2

Page 2 Program Chairman s Column cont d April 13 April 27 May 24 Dr. Arcangelo G. Sena, Director, Technology and Business Development, Veritas Exploration, Case Study: SAGO Steam Flood Project Using Simultaneous Inversion of Pre-Stack Seismic Data. [Canceled and will be rescheduled in Fall 2006] Cara Kiger, Product Manager, Input-Output Corporation, Full-wave Acquisition with VectorSeis. Scott Stockton, Rocky Mountain Regional Manager, Vector Seismic Data Processing, Vector High Fidelity Seismic Processing. We are in the process of recruiting speakers for the coming year for technical presentations. If you have any recommendations for papers or would care to provide feedback, please email to me at rsaenger@mulldrlg.com. Faults Anyone? On September 15, 2006, we will begin our lecture series with the SEG/AAPG 2006 Fall Distinguished Lecturer Tour. Bill Fahmy, ExxonMobil Corp., will present DHI/AVO Best Practices Methodology and Applications. Please see Mr. Fahmy s abstract and biography below. Other activities of note include the annual KIOGA (Kansas Independent Oil and Gas Association) Convention which will be held August 20-22 at the Wichita Airport Hilton. Information for this event can be found at http://www.kioga.org. A panel discussion will be presented on Monday, August 21 at 2:15pm entitled Geophysical Technology and the Subsurface of Kansas: A Panel Discussion Including Seismic Data Acquisition, Processing & Analysis. Hosted by Richard L. (Dick) Lockhart, President, Lockhart Geophysical, Denver, CO; Bruce Karr, Senior Geophysical Analyst, Fairfield Industries, Denver, CO; Rick Saenger, Exploration Team Leader, Mull Drilling Co., Inc., Wichita, KS; and Dennis Hedke, Geophysical Manager, Woolsey Operating Co., LLC, Wichita, KS, this panel discussion is designed for audience participation, in which the group of panelists will describe examples from each of the fundamental components involved in the imaging/analysis of the subsurface. I hope you are all having a great summer, and will see you at our first talk in September, if not at KIOGA! Please continue to support our societies with your attendance at the technical sessions. We hope that you find the papers interesting and intellectually stimulating. Rick Saenger Two case histories from different geologic and business settings illustrate the application of best practice. Technical Program Abstract DHI/AVO Best Practices Methodology and Applications Bill A. Fahmy ExxonMobil Corp. In 1997, ExxonMobil developed a company wide best practice to evaluate and understand the risk for DHI-dependent plays. Within this best practice, a robust controlled amplitude/ phase processing stream, rigorous analysis, and a calibrated DHI-rating system using both data quality and observed DHI characteristics were designed. The methodology is not dependant on evaluating just a single DHI attribute; e.g. AVO, but on a multitude of seismic characteristics. The rating system provides a consistent approach for evaluating DHIs and data quality and integrating it with risk analysis. Two case histories from different geologic and business settings illustrate the application of the best practice. The data used in both cases were processed with the prescribed controlled amplitude, controlled phase stream which was a key factor for our analysis. The first example is from an exploration setting. The example shows how applying best practices can help identify the risks correctly and set expectations prior to drilling the first well in a frontier basin. By using our best practice methodology the main risk identified here was low gas saturation, even though no low gas saturated sands had previously been encountered in the area. Subsequent drilling confirmed this prediction. The second example is from a development setting. This example illustrates application of an emerging technology, Spectral Decomposition to high-grade an Continued on p. 9

Page 3 Note from the Editor Since last fall your Kansas section of SEG has produced six newsletters (including this issue). It is our hope the information provided in those issues was both professionally useful and a pleasure to read. To better serve you, the membership, we would very much like to hear from you about the newsletter, web information and format, and our technical meetings. Slowly, but steadily, we are getting noticed. In future issues we hope to expand our technical sections to better serve the membership. Key to the future of our business and professional community is the influx of highly qualified, local university students. It is surprising the number of students interested in petroleum geophysics who only look to the majors in Houston for employment opportunities. Clearly, attracting entry-level professionals from local and regional universities is becoming more and more competitive as the number of students coming out of geoscience graduate programs in Kansas seems to be dwindling a bit. With four universities in Kansas offering graduate degrees in geology (KU, KSU, WSU, and FHSU) and KU offering a geophysics emphasis, young homegrown geoscience professionals with at least some background in geophysics should be routinely emerging from academia in this State. In this issue we begin a new column covering departmental news from each of the five geology departments currently active at the various Kansas universities (KU, KSU, WSU, FHSU, ESU). In this issue we feature Dr. Don Steeples and Dr. George Tsoflias from KU. This column will provide our current membership with geo-related news from academia around the State and increase awareness of geostudents about our technical meetings and geophysics activities around the mid-continent. In future newsletters we also hope to highlight geophysics research currently being done by our many geophysics professors in this State. As Dennis pointed out in his column, we just passed our one-year anniversary. We are also are coming up on the 50-year review of Geophysics in Kansas. Your society, with support from the Kansas Geological Survey, will organize and promote a symposia and an associated technical volume. Peer-reviewed proceedings will be published as a KGS Bulletin consistent with the two previous symposia (Bulletins 137 and 226). The first and second reviews of geophysics in Kansas occurred in 1959 and 1984. This makes 2009 the year for the 50-year event. Even though we are three years away, considering the magnitude and level of effort necessary to ensure the success of this milestone of our profession in Kansas, we are not too early in begin planning now. Rick Miller 2006-07 Council OFFICERS FOR THE CURRENT TERM: PRESIDENT Dennis Hedke, Woolsey Operating Co., LLC, Wichita, Kansas VICE-PRESIDENT Rick Saenger, Mull Drilling Co., Inc., Wichita, Kansas SECRETARY Michael Crouch, Consultant, Wichita, Kansas TREASURER Susan Nissen, Kansas Geological Survey, Lawrence, Kansas EDITOR Rick Miller, Kansas Geological Survey, Lawrence, Kansas COUNCIL ADVISOR Kirk Rundle, Consultant, Wichita, Kansas COUNCIL ADVISOR Robert Francis, Independent, Wichita, Kansas GSK Committees TECHNICAL PROGRAMS PUBLICITY MEMBERSHIP NEWSLETTER ADVERTISING WEBPAGE CONTINUING EDUCATION POTENTIAL FIELDS Membership in GSK Rick Saenger Kirk Rundle Mike Crouch Rick Miller Dennis Hedke Matthew Grafel Rick Saenger Open Joining GSK can be accomplished either by requesting an application form from Membership chairman Mike Crouch at segmike@mlcinc.kscoxmail.com, or 316-264-4334, or by downloading an electronic form at http://gsks.seg.org and submitting the form according to instructions provided on the form. Membership Classifications Annual Fees Active $25 Associate $25 Student No Charge

Page 4 The Crew Tracker As of June 27, 2006 Provided by Acquisition Company Representatives System IV sensor planting guide. Acquisition Company Location (County/Parish) Instruments Lockhart Geophysical Crew 1 Ness, KS GDAPS IV Lockhart Geophysical Crew 2 Graham, KS ARAM/ARIES Lockhart Geophysical Crew 3 Clark, KS ARAM/ARIES Lockhart Geophysical Crew 4 Trego, KS ARAM/ARIES Lockhart Geophysical Crew 5 Chase, NE GDAPS IV Global Geophysical Crew 444 Ft. Worth Basin, TX Sercel 408 Global Geophysical Crew 445 Zapata, TX Sercel 428 Global Geophysical Crew 448 Sweetwater, WY I/O FireflyTM Paragon Geophysical Crew 134 Decatur, KS System II Paragon Geophysical Crew 205 Decatur, KS System II Paragon Geophysical Crew 206 Garvin, OK System IV PGS Onshore Crew 300 Wheeler, TX Sercel 408 PGS Onshore Crew 320 Jackson Psh, LA I/O RSR PGS Onshore Crew 330 Carter, OK Sercel 408 SECO Party 42 Hardeman, TX SECO-Image SECO Party 43 Wood, OK SECO-Image 2D & 3D Vibroseis Acquisition JGI GDAPS-4 Distributed Recording System ARAM*ARIES Distributed Recording System 1600 Broadway, Suite 1660 ~ Denver, Colorado 8002-4915 bus (303) 592-5220 fax (303) 592-5225 ~ info@lockhartgeo.com visit our Website at www.lockhartgeo.com

Page 5 ~The MODEL OF EXCELLENCE~ ~For 3D SEISMIC~ FULL DIGITAL 3C RECORDING AVAILABLE John H Beury III ~ Pres. John Aguilar ~ Op. Mgr. NEW 2005 All Terrain Vibrators 3500 N Rock Rd, Bldg 800-B, Wichita, KS 67226 Phone: 316-636-5552 Fax: 316-636-5572 paragon@paragongeo.com

Page 6 Current Near-surface Seismic Imaging Research at KU Our research addresses shallow seismic imaging technology and shallow subsurface structural and stratigraphic characterization. Our objectives typically include providing a structural contour map of bedrock beneath alluvium, detecting shallow faults, and evaluating near-surface stratigraphy to detect preferential groundwater flow paths. Geophysical knowledge about hydrogeological features can be valuable when polluted-groundwater remediation strategies are being planned and executed. We are also involved in research to detect underground cavities, such as detecting abandoned underground coal mines and searching for clandestine tunnels beneath international borders. With funding from the Environmental Management Science Program of the U.S. Department of Energy, our research objective from 1998 to 2001 was to develop and demonstrate the capability to perform seismic reflection imaging at arbitrarily shallow depths (i.e., a few meters). By 1999, we had demonstrated seismic reflection images from depths of less than a meter, easily within reach of even an incompetent grave digger. The process is expensive, however, because of the requirement to plant geophones at intervals of six inches or less. From 2001 to 2004, the DOE funded our research on an automated method of conducting two-dimensional (2-D), shallow-seismic surveys with the goal of saving time, effort, and money. The resulting apparatus is based on agricultural tools towed behind a tractor and has been dubbed the Autojuggie. Under funding in place since 2004, our primary objective has been to develop an automated three-dimensional (3-D) shallow-seismic reflection imaging capability, which is a natural progression of our work and is conceptually parallel to the innovative imaging methods used in the petroleum industry. Among the scientific surprises that have come out of our current research project are that air-blast waves and wind noise in shallow seismic data can be decreased by attaching large numbers of geophones to rigid media such as long iron bars. Continued on p. 8 Figure 1. Overview and detail photographs of the instrumentation for automated deployment of a 2-D geophone array.

Geophysical Society of Kansas Volume 2, Issue 4 Page 7

Page 8 Current Research at KU cont d Our secondary objective is to expand current experiments to involve the automation of near-surface three-component (3-C) seismic data collection, which has the potential to provide much more information about near-surface earth materials than can single-component data. The three-component experiments conducted as part of our current funding have shown why vertical component P-wave data are easier to collect by automated methods than are 3-C data. The most recent automated geophone planter has the potential to overcome those difficulties. Near-surface seismic reflection methods require dense spatial sampling of the wavefield. Two-dimensional, ultra-shallow seismic reflection methods are increasingly used, but placement of geophones remains a labor-intensive deterrent to the acquisition of near-surface, 3-D seismic data. Although 3-D seismic imaging is a mature hydrocarbon-exploration technique, only a handful of 3-D shallow seismic surveys have been acquired worldwide over the last decade. Further refinement of our Autojuggie will lead to affordable, automatic 3-D shallow-seismic reflection imaging. Figure 2. (left) Control line of manually planted geophones and (right) test line of automatically planted array of geophones; lines were parallel and 0.6 m apart. Comparison of the two seismograms shows no differences in subsurface imaging. Water table reflections are marked by arrows. Continued on p. 9

Page 9 Current Research at KU cont d Having successfully recorded accurate seismic data with a singleline, automatically implantable instrument in our previous DOEfunded research, the focus shifted to an array design for the 3-D Autojuggie. In summer 2004 a small array of six lines of geophones with 12 geophones per line was deployed in a matter of seconds using a forklift attachment to a front-end loader on a mediumsized (90 HP) farm tractor. The geophone interval within the array in each direction is 20 cm; this results in an array size of 2.4 m by 1.2 m and equipment that is portable for travel on public roads. Following the same procedures that had resulted in successful data collection with the single-line equipment showed that, though the array could be implanted and moved efficiently, the data subsequently recorded was degraded in quality. It was determined that the energy propagated by the framework of the array attached to the geophones introduced unwanted noise into the data. In early 2005 the array was redesigned so that the geophones could be rapidly implanted but then detached from the framework during data collection. A single-bar prototype of the equipment showed that the geophones could be automatically implanted and retrieved and that temporary separation of the bar and geophones produced clean data. We then moved to development and field-testing of instrumentation for the automatic deployment of a 2-D array of 72 geophones, referred to as the 3-D Autojuggie. The main components of the instrumentation are a) two vertically stacked, rigid steel frames used for positioning, planting, and transporting the array of geophones; b) a hydraulically controlled mechanism for decoupling the geophones from the steel frames during seismic data recording; and c) a 2-D array of seventy-two 100 Hz Mark Products geophones. The geophones have 20.32 cm long spikes and are spaced 20 cm apart in both inline (12 geophones) and cross-line (6 rows) orientations. Seismic noise testing, or walkaways, conducted at The University of Kansas employing automatically planted 2-D geophone arrays next to conventional hand-planted geophones resulted in comparable seismic imaging of the subsurface. The geophoneplanting instrumentation did not degrade the quality of the recorded wavefield. The efficiency of automatically placing a dense 2-D array of geophones on the ground and the ease of moving the array quickly to adjacent positions, along with the ability to acquire comparable quality data to conventional hand-planted geophones, indicate that the 3-D Autojuggie is a viable approach to ultra-shallow 3-D seismic acquisition. We continue work on a larger array using a farm tillage tool. This array will be scalable to 11 meters by 15 meters or larger. Conceptually, the design could accommodate an array of hundreds of geophones at once and make automated 3-D shallowseismic reflection imaging affordable and commonplace. Don Steeples and George Tsoflias Department of Geology, The University of Kansas Technical Program Abstract cont d anomaly not observed on traditional seismic data. Identification of the anomaly with the correct DHI attributes enabled us to successfully position and drill a key development well. The well results helped us gain confidence in the reserve estimate for the field and develop an optimized depletion plan. In summary, for each case history we will present our pre-drill analysis and predictions and share the learnings from the post well drilling results. Also, as an audit of the process, we will show the overall statistics of how the best practices have fared since their implementation. Biography Bill A. Fahmy received a B.S. in Geophysics from the University of the Pacific in Stockton, California in 1979 and a M.S. in Geophysics from the University of Wyoming in 1988. Prior to getting his Masters Degree, Bill spent his early career working for Western Geophysical Company as a Seismic Crew Assistant Manager and Manager. In 1988, he joined Exxon, which later became Exxon- Mobil. Bill is currently a Geophysical Advisor for ExxonMobil Exploration Company. His primary role includes assisting and advising the Angola/Congo exploration teams on technical needs and issues as well as providing perspectives for upper management on all drill wells, resource assessment, and acreage capture opportunities. Bill is a member of SEG, AAPG, and HGS.

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Page 11 Professional Directory

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Geophysical Society of Kansas P.O. Box 48069 Wichita, KS 67201 OUR MISSION: To provide our members a quality venue for disseminating geophysically focused information pertinent to Kansas and surrounding regions. We also seek to advance the geosciences by providing members opportunities to increase the understanding of geophysical principles and practice. We re on the web. Check us out at http://gsks.seg.org If you are aware of speakers / topics which would benefit members, let us know, and we ll pursue. Additionally, we are actively seeking research papers and results to share with our audience. If you are interested in publishing your work, please contact Editor Rick Miller. New Members The Geophysical Society of Kansas is pleased to welcome the following new members: Name Affiliation Location John Aguilar Paragon Geophysical Services, Inc. Wichita, KS Jeff Logan Paragon Geophysical Services, Inc. Wichita, KS GSK ADVERTISING GSK is seeking subscribers to fill space in future newsletters. Our publishing cycle is bi-monthly, January-February, March-April, etc. Preferred formats for electronic files are typical Word document (.doc),.jpg,.pdf, etc. Please check with us if you have questions. ADVERTISING RATE SCHEDULE Description Single Issue Rate 6 Issue Rate Expand your exposure Advertise in the GSK Newsletter. Business Card Annual Rate Only $75 Eighth Page $45 $165 Quarter Page $80 $330 Half Page $150 $500 Full Page $275 $650