Caroline Graham (British Geological Society) - CONTAIN: The Impact of Hydrocarbon Depletion on the Treatment of Caprocks Within Performance Assessment for CO2 Injection Schemes - UKCCSRC Cranfield Biannual 21-22 April 2015
Caroline Graham (British Geological Society) - CONTAIN: The Impact of Hydrocarbon Depletion on the Treatment of Caprocks Within Performance Assessment for CO2 Injection Schemes - UKCCSRC Cranfield Biannual 21-22 April 2015
DHI and FORCE Technology have together developed a cutting-edge software package for quantifying and optimising channel operability, which sets a new industry standard for how accurately vessel under keel clearance (UKC) predictions can be incorporated effectively into the design and day-to-day operational management of navigational channels in some of the world’s most complex waterways.
Introduction to session and key findings from the Baltic Scope project on preconditions for building coherent MPA network in the Baltic Sea by Anda Ruskule, MoEPRD, Latvia at the workshop 'Linking maritime spatial planning with marine protected areas (Baltic SCOPE)' at the 2nd Baltic Maritime Spatial Planning Forum in Riga, Latvia on 23-24 November 2016 (the final conference of the Baltic SCOPE collaboration).
Video and other presentations - www.balticscope.eu
www.vasab.org
CO2 storage and groundwater management – work program modulesGlobal CCS Institute
The Groundwater and Storage interactions project arose out of a meeting on the shoulder of the Greenhouse Gas Technologies Conference in Amsterdam in 2010. It was decided to concentrate initially on the Australian Flagships projects. On 3 May 2011 Australian researchers and government agencies met and presented their work to date.
In these slides, the Global CCS Institute presents on CO2 Storage and Groundwater Management – Work Program Modules
DHI and FORCE Technology have together developed a cutting-edge software package for quantifying and optimising channel operability, which sets a new industry standard for how accurately vessel under keel clearance (UKC) predictions can be incorporated effectively into the design and day-to-day operational management of navigational channels in some of the world’s most complex waterways.
Introduction to session and key findings from the Baltic Scope project on preconditions for building coherent MPA network in the Baltic Sea by Anda Ruskule, MoEPRD, Latvia at the workshop 'Linking maritime spatial planning with marine protected areas (Baltic SCOPE)' at the 2nd Baltic Maritime Spatial Planning Forum in Riga, Latvia on 23-24 November 2016 (the final conference of the Baltic SCOPE collaboration).
Video and other presentations - www.balticscope.eu
www.vasab.org
CO2 storage and groundwater management – work program modulesGlobal CCS Institute
The Groundwater and Storage interactions project arose out of a meeting on the shoulder of the Greenhouse Gas Technologies Conference in Amsterdam in 2010. It was decided to concentrate initially on the Australian Flagships projects. On 3 May 2011 Australian researchers and government agencies met and presented their work to date.
In these slides, the Global CCS Institute presents on CO2 Storage and Groundwater Management – Work Program Modules
Jon Gibbins (University of Edinburgh) presenting a short review of the National Academy of Sciences Report on Carbon Dioxide Removal at the UKCCSRC/IMechE/CO2Chem Air Capture Workshop on 20th February 2015 in London
Presentation given by Alexandre Morin of SINTEF Energy Research on "IMPACTS - The impact of the quality of CO2 on transport and storage behaviour" at the EC FP7 Projects: Leading the way in CCS implementation event, London, 14-15 April 2014
Increasing interest by governments worldwide on reducing CO2 released into the atmosphere form a nexus of of opportunity with enhanced oil recovery which could benefit mature oil fields in nearly every country. Overall approximately two-thirds of original oil in place (OOIP) in mature conventional oil fields remains after primary or primary/secondary recovery efforts have taken place. CO2 enhanced oil recovery (CO2 EOR) has an excellent record of revitalizing these mature plays and can dramatically increase ultimate recovery. Since the first CO2 EOR project was initiated in 1972, more than 154 additional projects have been put into operation around the world and about two-thirds are located in the Permian basin and Gulf coast regions of the United States. While these regions have favorable geologic and reservoir conditions for CO2 EOR, they are also located near large natural sources of CO2.
In recent years an increasing number of projects have been developed in areas without natural supplies, and have instead utilized captured CO2 from a variety of anthropogenic sources including gas processing plants, ethanol plants, cement plants, and fertilizer plants. Today approximately 36% of active CO2 EOR projects utilize gas that would otherwise be vented to the atmosphere. Interest world-wide has increased, including projects in Canada, Brazil, Norway, Turkey, Trinidad, and more recently, and perhaps most significantly, in Saudi Arabia and Qatar. About 80% of all energy used in the world comes from fossil fuels, and many industrial and manufacturing processes generate CO2 that can be captured and used for EOR. In this 30 minute presentation a brief history of CO2 EOR is provided, implications for utilizing captured carbon are discussed, and a demonstration project is introduced with an overview of characterization, modeling, simulation, and monitoring actvities taking place during injection of more than a million metric tons (~19 Bcf) of anthropogenic CO2 into a mature waterflood.
Longer versions of the presentation can be requested and can cover details of geologic and seimic characterization, simulation studies, time-lapse monitoring, tracer studies, or other CO2 monitoring technologies.
C6.03: User engagement within the ocean-colour climate change initiative - Sh...Blue Planet Symposium
Ocean colour is the only marine Essential Climate Variable amenable to remote sensing that targets a biological field. Phytoplankton abundance, which can be indexed as Chlorophyll (Chl-a) concentration (and derived from ocean-colour data), is a key factor in the ocean carbon cycle and hence important in all discussions dealing with the pathways of carbon in the Earth System. The user community, both ecosystem modellers and remote-sensing scientists, were polled through an on-line questionnaire as well as at small targeted meetings during Phase 1 of the Ocean Colour Climate Change Initiative project; followed up at the start of Phase 2 by a review of the feedback received after the public product release. The consultation details are available in a User Requirements document, with a key point being that the Global Climate Observing System identified requirements may be considered a minimum in the sense that the user community is interested in additional ocean-colour derived products for climate research; including primary production and phytoplankton functional types in addition to Chl-a concentration.
The main product (i.e. Chl-a), received a variety of spatial and temporal resolution requirements depending on the user type (remote sensing scientists or modellers) and on the areas of research within those categories (global scale versus operational). Accordingly, spatial resolution requirements ranged from 1 km or less for the remote sensing scientists to 1 degree for modellers. Temporal requirements ranged from 1 day to monthly for both groups. In addition, all users identified the importance of having uncertainty or error characteristics associated with each product as well as products with sufficient stability over the long term e.g. 1-2% trends on Chl-a concentration over 10 years was desirable.
In addition, a number of products (with their requirements characteristics) were mentioned to extend the spatial extent and scope of climate studies e.g. inherent optical properties so that algorithms could be extended to optically-complex coastal (i.e. Case-2) waters, or, failing that, algorithms that would at least identify the boundaries of Case-2 waters. Also, since phytoplankton absorption characteristics are used in many primary-production algorithms it would also be desirable to retrieve and provide the spectral phytoplankton absorption values.
Jon Gibbins (University of Edinburgh) presenting a short review of the National Academy of Sciences Report on Carbon Dioxide Removal at the UKCCSRC/IMechE/CO2Chem Air Capture Workshop on 20th February 2015 in London
Similar to Caroline Graham (British Geological Society) - CONTAIN: The Impact of Hydrocarbon Depletion on the Treatment of Caprocks Within Performance Assessment for CO2 Injection Schemes - UKCCSRC Cranfield Biannual 21-22 April 2015
Presentation given by Alexandre Morin of SINTEF Energy Research on "IMPACTS - The impact of the quality of CO2 on transport and storage behaviour" at the EC FP7 Projects: Leading the way in CCS implementation event, London, 14-15 April 2014
Increasing interest by governments worldwide on reducing CO2 released into the atmosphere form a nexus of of opportunity with enhanced oil recovery which could benefit mature oil fields in nearly every country. Overall approximately two-thirds of original oil in place (OOIP) in mature conventional oil fields remains after primary or primary/secondary recovery efforts have taken place. CO2 enhanced oil recovery (CO2 EOR) has an excellent record of revitalizing these mature plays and can dramatically increase ultimate recovery. Since the first CO2 EOR project was initiated in 1972, more than 154 additional projects have been put into operation around the world and about two-thirds are located in the Permian basin and Gulf coast regions of the United States. While these regions have favorable geologic and reservoir conditions for CO2 EOR, they are also located near large natural sources of CO2.
In recent years an increasing number of projects have been developed in areas without natural supplies, and have instead utilized captured CO2 from a variety of anthropogenic sources including gas processing plants, ethanol plants, cement plants, and fertilizer plants. Today approximately 36% of active CO2 EOR projects utilize gas that would otherwise be vented to the atmosphere. Interest world-wide has increased, including projects in Canada, Brazil, Norway, Turkey, Trinidad, and more recently, and perhaps most significantly, in Saudi Arabia and Qatar. About 80% of all energy used in the world comes from fossil fuels, and many industrial and manufacturing processes generate CO2 that can be captured and used for EOR. In this 30 minute presentation a brief history of CO2 EOR is provided, implications for utilizing captured carbon are discussed, and a demonstration project is introduced with an overview of characterization, modeling, simulation, and monitoring actvities taking place during injection of more than a million metric tons (~19 Bcf) of anthropogenic CO2 into a mature waterflood.
Longer versions of the presentation can be requested and can cover details of geologic and seimic characterization, simulation studies, time-lapse monitoring, tracer studies, or other CO2 monitoring technologies.
C6.03: User engagement within the ocean-colour climate change initiative - Sh...Blue Planet Symposium
Ocean colour is the only marine Essential Climate Variable amenable to remote sensing that targets a biological field. Phytoplankton abundance, which can be indexed as Chlorophyll (Chl-a) concentration (and derived from ocean-colour data), is a key factor in the ocean carbon cycle and hence important in all discussions dealing with the pathways of carbon in the Earth System. The user community, both ecosystem modellers and remote-sensing scientists, were polled through an on-line questionnaire as well as at small targeted meetings during Phase 1 of the Ocean Colour Climate Change Initiative project; followed up at the start of Phase 2 by a review of the feedback received after the public product release. The consultation details are available in a User Requirements document, with a key point being that the Global Climate Observing System identified requirements may be considered a minimum in the sense that the user community is interested in additional ocean-colour derived products for climate research; including primary production and phytoplankton functional types in addition to Chl-a concentration.
The main product (i.e. Chl-a), received a variety of spatial and temporal resolution requirements depending on the user type (remote sensing scientists or modellers) and on the areas of research within those categories (global scale versus operational). Accordingly, spatial resolution requirements ranged from 1 km or less for the remote sensing scientists to 1 degree for modellers. Temporal requirements ranged from 1 day to monthly for both groups. In addition, all users identified the importance of having uncertainty or error characteristics associated with each product as well as products with sufficient stability over the long term e.g. 1-2% trends on Chl-a concentration over 10 years was desirable.
In addition, a number of products (with their requirements characteristics) were mentioned to extend the spatial extent and scope of climate studies e.g. inherent optical properties so that algorithms could be extended to optically-complex coastal (i.e. Case-2) waters, or, failing that, algorithms that would at least identify the boundaries of Case-2 waters. Also, since phytoplankton absorption characteristics are used in many primary-production algorithms it would also be desirable to retrieve and provide the spectral phytoplankton absorption values.
Techno-economic assessment and global sensitivity analysis for biomass-based CO2 capture storage and utilisation (CCSU) technologies - presentation by Maria Botero in the Biomass CCS session at the UKCCSRC Cardiff Biannual Meeting, 10-11 September 2014
Workover Optimization & Horizontal Well Intervention 2014LBCG
With unconventional wells typically depleting 65-85% in the first year and another 20% in the subsequent years, there is a growing impetus to optimize and innovate workover and well intervention operations to improve the life of existing wells and restore production to maximize the recovery of costly unconventional wells.
Innovations in coiled tubing, conveyance, eline and logging tools and the introduction of techniques for re-completions may ensure that depleting wells can be recovered and production maximized but such operations are not without significant cost implications and technical challenges. Unpredictable complications throughout production including damaged casing, blocked perforations and broken and lost equipment downhole incur great risk, come at a high cost to repair and can, of course, result in complete failure of the well. Additionally, the economic viability of re-completions operations is still relatively unknown and the technical challenges of re-fracturing are complex.
Operators therefore need to carefully consider the economic gamble in repairing a depleting well or potential in-fill drilling operations against the cost of drilling a new well. A balance must be struck between optimizing the cost and speed of workovers and remedial well intervention, while increasing the long-term effectiveness and safety of operations to reduce the economic risk of repairing wellbores and adequately extend the production time between workovers.
The Workover Optimization & Horizontal Well Intervention 2014 is the only E&P led forum to provide technical talks and case study based strategies on effective optimization and cost reduction of both workovers and remedial well interventions. Senior E&P presenters will examine techniques for optimizing plug drillouts, cleanouts, coiled tubing interventions, casing repairs and fishing and evaluate how to enable re-completions in depleting wells. The content of the detailed two-day agenda has been created entirely by workover and intervention professional across American unconventional oil and gas operators.
Even with the implementation of waste
reduction, recycling, material recovery and
transformation technologies, disposal of solid
waste in a landfill remains an important
component of solid waste management
strategies.
• It is not always economical to recycle/recover
all waste under all conditions.
• Safe and reliable long-term disposal of solid
waste is one of the most essential components
of solid waste management.
• The landfill is the most economical form of solid
waste disposal that minimises adverse
environmental effects, associated risks and
inconveniences; allowing the waste to
decompose under controlled conditions
IUKWC Workshop November 2016: Developing Hydro-climatic Services for Water Security
Session 2.1 R Kolli
Similar to Caroline Graham (British Geological Society) - CONTAIN: The Impact of Hydrocarbon Depletion on the Treatment of Caprocks Within Performance Assessment for CO2 Injection Schemes - UKCCSRC Cranfield Biannual 21-22 April 2015 (20)
CCUS Roadmap for Mexico - presentation by M. Vita Peralta Martínez (IIE - Electric Research Institute, Mexico) for the UKCCSRC, Edinburgh, 13 November 2015
Advances in Rock Physics Modelling and Improved Estimation of CO2 Saturation, Giorgos Papageorgiou - Geophysical Modelling for CO2 Storage, Leeds, 3 November 2015
Numerical Modelling of Fracture Growth and Caprock Integrity During CO2 Injection, Adriana Paluszny - Geophysical Modelling for CO2 Storage, Leeds, 3 November 2015
Assessing Uncertainty of Time Lapse Seismic Response Due to Geomechanical Deformation, Doug Angus - Geophysical Modelling for CO2 Storage, Leeds, 3 November 2015
Modelling Fault Reactivation, Induced Seismicity, and Leakage During Underground CO2 Injection, Jonny Rutquvist - Geophysical Modelling for CO2 Storage, Leeds, 3 November 2015
Pore scale dynamics and the interpretation of flow processes - Martin Blunt, Imperial College London, at UKCCSRC specialist meeting Flow and Transport for CO2 Storage, 29-30 October 2015
Passive seismic monitoring for CO2 storage sites - Anna Stork, University of Bristol at UKCCSRC specialist meeting Geophysical modelling for CO2 storage, monitoring and appraisal, 3 November 2015
Multiphase flow modelling of calcite dissolution patterns from core scale to reservoir scale - Jeroen Snippe, Shell, at UKCCSRC specialist meeting Flow and Transport for CO2 Storage, 29-30 October 2015
Long term safety of geological co2 storage: lessons from Bravo Dome Natural CO2 reservoir - Marc Hesse, University of Texas at Austin, at UKCCSRC specialist meeting Flow and Transport for CO2 Storage, 29-30 October 2015
Research Coordination Network on Carbon Capture, Utilization and Storage Funded by National Science Foundation in USA - A.-H. Alissa Park, Columbia University - UKCCSRC Strathclyde Biannual 8-9 September 2015
Computational Modelling and Optimisation of Carbon Capture Reactors, Daniel Sebastiá Sáez, Cranfield University - UKCCSRC Strathclyde Biannual 8-9 September 2015
Effective Adsorbents for Establishing Solids Looping as a Next Generation NG PCC Technology, Hao Liu, University of Nottingham - UKCCSRC Strathclyde Biannual 8-9 September 2015
Adsorption Materials and Processes for Carbon Capture from Gas-Fired Power Plants - AMPGas, Enzo Mangano, University of Edinburgh - UKCCSRC Strathclyde Biannual 8-9 September 2015
More from UK Carbon Capture and Storage Research Centre (20)
Industrial Training at Shahjalal Fertilizer Company Limited (SFCL)MdTanvirMahtab2
This presentation is about the working procedure of Shahjalal Fertilizer Company Limited (SFCL). A Govt. owned Company of Bangladesh Chemical Industries Corporation under Ministry of Industries.
Cosmetic shop management system project report.pdfKamal Acharya
Buying new cosmetic products is difficult. It can even be scary for those who have sensitive skin and are prone to skin trouble. The information needed to alleviate this problem is on the back of each product, but it's thought to interpret those ingredient lists unless you have a background in chemistry.
Instead of buying and hoping for the best, we can use data science to help us predict which products may be good fits for us. It includes various function programs to do the above mentioned tasks.
Data file handling has been effectively used in the program.
The automated cosmetic shop management system should deal with the automation of general workflow and administration process of the shop. The main processes of the system focus on customer's request where the system is able to search the most appropriate products and deliver it to the customers. It should help the employees to quickly identify the list of cosmetic product that have reached the minimum quantity and also keep a track of expired date for each cosmetic product. It should help the employees to find the rack number in which the product is placed.It is also Faster and more efficient way.
Water scarcity is the lack of fresh water resources to meet the standard water demand. There are two type of water scarcity. One is physical. The other is economic water scarcity.
Final project report on grocery store management system..pdfKamal Acharya
In today’s fast-changing business environment, it’s extremely important to be able to respond to client needs in the most effective and timely manner. If your customers wish to see your business online and have instant access to your products or services.
Online Grocery Store is an e-commerce website, which retails various grocery products. This project allows viewing various products available enables registered users to purchase desired products instantly using Paytm, UPI payment processor (Instant Pay) and also can place order by using Cash on Delivery (Pay Later) option. This project provides an easy access to Administrators and Managers to view orders placed using Pay Later and Instant Pay options.
In order to develop an e-commerce website, a number of Technologies must be studied and understood. These include multi-tiered architecture, server and client-side scripting techniques, implementation technologies, programming language (such as PHP, HTML, CSS, JavaScript) and MySQL relational databases. This is a project with the objective to develop a basic website where a consumer is provided with a shopping cart website and also to know about the technologies used to develop such a website.
This document will discuss each of the underlying technologies to create and implement an e- commerce website.
Hybrid optimization of pumped hydro system and solar- Engr. Abdul-Azeez.pdffxintegritypublishin
Advancements in technology unveil a myriad of electrical and electronic breakthroughs geared towards efficiently harnessing limited resources to meet human energy demands. The optimization of hybrid solar PV panels and pumped hydro energy supply systems plays a pivotal role in utilizing natural resources effectively. This initiative not only benefits humanity but also fosters environmental sustainability. The study investigated the design optimization of these hybrid systems, focusing on understanding solar radiation patterns, identifying geographical influences on solar radiation, formulating a mathematical model for system optimization, and determining the optimal configuration of PV panels and pumped hydro storage. Through a comparative analysis approach and eight weeks of data collection, the study addressed key research questions related to solar radiation patterns and optimal system design. The findings highlighted regions with heightened solar radiation levels, showcasing substantial potential for power generation and emphasizing the system's efficiency. Optimizing system design significantly boosted power generation, promoted renewable energy utilization, and enhanced energy storage capacity. The study underscored the benefits of optimizing hybrid solar PV panels and pumped hydro energy supply systems for sustainable energy usage. Optimizing the design of solar PV panels and pumped hydro energy supply systems as examined across diverse climatic conditions in a developing country, not only enhances power generation but also improves the integration of renewable energy sources and boosts energy storage capacities, particularly beneficial for less economically prosperous regions. Additionally, the study provides valuable insights for advancing energy research in economically viable areas. Recommendations included conducting site-specific assessments, utilizing advanced modeling tools, implementing regular maintenance protocols, and enhancing communication among system components.
Saudi Arabia stands as a titan in the global energy landscape, renowned for its abundant oil and gas resources. It's the largest exporter of petroleum and holds some of the world's most significant reserves. Let's delve into the top 10 oil and gas projects shaping Saudi Arabia's energy future in 2024.
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Student information management system project report ii.pdfKamal Acharya
Our project explains about the student management. This project mainly explains the various actions related to student details. This project shows some ease in adding, editing and deleting the student details. It also provides a less time consuming process for viewing, adding, editing and deleting the marks of the students.
Explore the innovative world of trenchless pipe repair with our comprehensive guide, "The Benefits and Techniques of Trenchless Pipe Repair." This document delves into the modern methods of repairing underground pipes without the need for extensive excavation, highlighting the numerous advantages and the latest techniques used in the industry.
Learn about the cost savings, reduced environmental impact, and minimal disruption associated with trenchless technology. Discover detailed explanations of popular techniques such as pipe bursting, cured-in-place pipe (CIPP) lining, and directional drilling. Understand how these methods can be applied to various types of infrastructure, from residential plumbing to large-scale municipal systems.
Ideal for homeowners, contractors, engineers, and anyone interested in modern plumbing solutions, this guide provides valuable insights into why trenchless pipe repair is becoming the preferred choice for pipe rehabilitation. Stay informed about the latest advancements and best practices in the field.
The Benefits and Techniques of Trenchless Pipe Repair.pdf
Caroline Graham (British Geological Society) - CONTAIN: The Impact of Hydrocarbon Depletion on the Treatment of Caprocks Within Performance Assessment for CO2 Injection Schemes - UKCCSRC Cranfield Biannual 21-22 April 2015