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TitleDateSubjectDescription
26 DOE project review: Subtask 4.2 (B): Examination of in situ production models2011-03-11DOE project review; in situ production models; oil shale; unconventional fuels; oil sands; geomechanics; general reservoir simulation toolA presentation given at the Unconventional Fuels from Oil Shale and Oil Sands Project Review Meeting on March 10-11, 2011. The objectives of the presentation is the examination of in-situ production methods, different in-situ production method options, rigorous energy and carbon balances, exploratio...
27 Earth Energy Resources corporate presentation2008-02-22Oil sands; Earth Energy; Ophus Process; PR Spring, Utah; Bitumen; Oil sand mining; Tailings ponds; Extraction processes; Utah; Water consumption; Athabasca, Canada; Vernal, Utah; Simplot Phosphate MineForward looking statements--Earth Energy Resources, Inc.: This presentation and the Company's website referenced in this presentation contain forward-looking statements including expectations of future production and components of cash flow and earnings. Investors are cautioned that assumptions used...
28 Earth Energy Resources Inc.2006-09-21Uinta Basin; Oil sands; Athabasca; Tailings ponds; Water usage and supply; Emulsion treating; Concurrent Reclamation; Natural Gas; Process heating fuel; Infrastructure; Product transportation; Production issues; Ophus Process; Bitumen; Tar sand; UtahIssues facing oil sand production: -Issues facing Athabasca producers -Likely issues facing Uinta Basin producers -Technology advancements will provide the keys to unlock the oil sands in the USA
29 Earth Energy Resources, Inc. oil sands production in Utah: Continued development2009-02-27Oil Sand; Utah; Hydrocarbon Energy Environmental Gap; HEEG; Earth Energy; Oil sand production; Ophus Process; Oil sand deposits; Bitumen extraction; Oil sand mining; EER Spring Mine Site; Vernal, UtahOverview of Earth Energy Resources, Inc.'s continuing oil sands development activities in Utah, presented at the 2009 Western U.S. Oil Sands Conference by D. Glen Snarr, President & Chief Financial Officer, Earth Energy Resources, Inc.
30 Economic assessment of oil shale development scenarios in the Uinta Basin2013-10-15Economic assessment; Oil shale development; Uinta Basin; In situ; Ex situ
31 Ecoshale: Environmental alternative fuels2008-11-13Unconventional fuel; Oil industry; Oil shale; Utah; Colorado; Wyoming; Tar sand; Red Leaf; Duchesne County; Uintah Basin; Carbon County; Emery County; Grand County; Ecoshale; In-capsule process; Kerogen; Alternative Fule; Environmental; In-capsule; Economic
32 Effects of oxygen concentration and coal composition on aerosol chemistry in oxy firing2010-11-12aerosol chemistry; oxy firing; ICSE; coal aerosols; coal compositionOutline: 1) Objectives 2) Coals examined 3) Furnace, sampling, and analysis 4) Results 5) Conclusions. The objectives of the presentation is to provide a comparison of three different coal aerosols under two different oxy fired scenarios for predicting effects of coal composition on oxy firing. Exam...
33 Efficient parallelization of RMCRT for large scale LES combustion simulations2011-06monte carlo; RMCRT; parallelization; large scale LES combustion; combustion simulations; radiationAt the high temperatures inherent to combustion systems, radiation is the dominant mode of heat transfer. An accurate simulation of a combustor therefore requires precise treatment of radiative heat transfer. This is accomplished by calculating the radiative-flux divergence at each cell of the discr...
34 The energy industry faces a carbon-constrained world2009-02-27carbon regulation; energy industry; carbon control; CO2 sequestration; GHG.Analysis of the impacts of potential frameworks for carbon regulation on the energy industry, presented at the 2009 Western U.S. Oil Sands Conference by Arnold W. Reitze, Jr., Professor, S.J. Quinney College of Law, University of Utah.
35 Enhanced in-situ production through fracturing2010-04-28in-situ production; fracturing; fracturing methodsRationale For Fracturing: 1) Ultra-Low Matrix Permeability 2) Poorly Interconnected Fracture Network 3) Desire to Maximize Surface Area, Minimize Transport Distance In Matrix and Increase Conductivity of Flow Paths For Production 4) Increase Surface Area, Increase Fracture Frequency
36 Environmental concerns for oil sands development in Utah--serious unanswered questions2008-02-22tar sands development; tar sand; Southern Utah Wilderness Association; BLM; PEIS; EIA; tar sand recoveryOverview of environmental issues and concerns associated with potential tar sands development in Utah presented by Stephen Bloch, Conservation Director of the Southern Utah Wilderness Association.
37 Environmental impact of in-situ oil shale processing2007-10in situ processing of oil shale; in situ processing; oil shale; production of oil from kerogen; oil productionThe in situ processing of oil shale for the production of oil from the kerogen involves heating the shale slowly to moderate temperatures of between 3000 C and 4000 C. At this temperature, gaseous products that evolve from the oil shale are condensed and recovered. The pathways of creation of oil fr...
38 Environmental management of Alberta's oil sands2009-02-27environmental management; oil sands; Canadian oil sands development; crude bitumen; mineable resources; in situ resorces; oil sands depositsAnalysis of the challenges and successes of environmental management of Canadian oil sands development, presented at the 2009 Western U.S. Oil Sands Conference by Preston McEachern, Head of Science, Research & Innovation, Oil Sands Environmental Management Division, Alberta Environmental, Canada.
39 Environmental technologies applicable to shale development: Integrating simulation and experiment2008-11-13oil shale technologies; oil shale; environmental technologies; shale developmentPresentation given at the Utah Oil Shale Resources and Technology Update, November 13, 2008, The Leonardo, Salt Lake City, Utah.
40 Estimating water requirements of oil shale development in the Uintah/Piceance Basins2008-03-12water requirements; oil shale development; water resources; oil sandsCollect geospatial data and information on water resources associated information related to oil sands and oil shale development -Conduct a regional analysis of water requirements for oil shale development incorporation urbanization, alternative energy development, and wastewater recycling/reuse -De...
41 Evaluating opportunities for reducing life-cycle, well-to pump GHG emissions from conventional and unconventional fuels2010-04-28unconventional fuels; GHG emissions; conventional fuels; reducing life-cycle; oil shale; oil sands; coalResource extraction and upgrading.
42 Evaluation of different in-situ recovery strategies2006-10in-situ recovery strategies; in-situ recovery; oil shale; thermal simulator; oil shale reservoirs; in-situ combustion; in-situ pyrolysis; modified in-situ processAnalysis of different in-situ production strategies from oil shale using a general purpose thermal simulator.
43 Evaluation of well spacing and arrangement for in-situ thermal treatment of oil shale using HPC simulation tools2014-10well spacing; in-situ thermal treatment; oil shale; HPC simulation tools; oil shale resources; oil sands resources; basin scale simulation; liquid fuel productionThe mission of this presentation is to pursue research that improves industry's ability to utilize the vast energy stored in oil shale and oil sands resources with minimal environmental impact. Three main research areas looked at are: 1. Basin scale simulation of environmental and economic impacts o...
44 Federal control of greenhouse gas emissions2010-04-28greenhouse gas emissions; federal control efforts; domestic legislationFederal Control Efforts: 1) International 2) New Domestic Legislation 3) Using Existing Domestic Legislation
45 Financing unconventional fuels2013-05-07ICSE; Unconventional fuels; Energy deveopment; Energy financingPresentation given at the University of Utah Unconventional Fuels Conference, Salt Lake City, Utah, May 7, 2013. Unconventional fuels project.
46 From oil sand to fuel pump: The challenges of upgrading oil sand bitumen2006-09-21oil sand; upgrading oil sand bitumen; oil sand bitumen; oil sands development; crude; bitumenOil sands development--develop a resource that has market value.
47 Geologic characterization of Utah oil shale deposits2010-04-28oil shale development; geologic framework; lake evolution; oil shale; stratigraphic correlationWhy Geology? Economic prospectivity of oil shale development in the Uinta Basin relies heavily on establishing a solid geologic framework. Understanding lake evolution matters.
48 High efficiency electrical generation2008-05-23efficiency of electrical generation; electrical generation; fossil fuel energy resources; mitigatint GHG emissions; CO2 capture and sequestrationOutline: 1-Electricity outlook and fossil fuel energy resources. 2-Technology options for mitigating GHG emissions. 3-CO2 cpature and sequestration. 4-Costs. 5-Concluding remarks.
49 High performance computing (hpc) in unconventional fuel production2013-05-07ICSE; Unconventional fuels; High performance computing; unconventional fuel productionPresentation given at the University of Utah Unconventional Fuels Conference, Salt Lake City, Utah, May 7, 2013.
50 High performance computing simulations of in-situ thermal treatment of oil shale2013-10-14high performance computing; in-situ; in-situ thermal treatment; oil shale; thermal treatment of oil shale; HPC.
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