Srikanta mishra biography of martin
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The subsurface operations part of CCS also provides a mechanism for CO2 sources to monetize their emissions through tax credits for long-term geologic storage and/or revenue from incremental oil production due to EOR operations.
CCS is considered a potentially effective technology for the reduction of CO2 emissions from large stationary sources such as power generation units or chemical processing plants.
A modeling template in Excel will be provided.
Learning Level
Introductory
Course Length
This is a 2-day classroom course comprising a mixture of lectures, discussion, and class exercise.
Why Attend
Participants will learn to:
1. Widespread adoption of carbon capture and storage technology is needed to meet the Paris Agreement’s goal of limiting the rise in the global temperature to well below 2°C.
degree from the University of Southampton, England following a masters degree in audiology from the All India Institute of Speech & Hearing, Mysore. Perform capacity and injectivity estimates for suitable geologic formations
4. Notification of changes will be made as quickly as possible; please keep this in mind when arranging travel, as SPE is not responsible for any fees charged for cancelling or changing travel arrangements.
Course Content
Day 1 – Overview of Carbon Capture and Storage
- Session 1 (830-1000): Climate-energy nexus (45 min); Basics of carbon capture, pipeline transport and geological storage (45 min)
- Session 2 (1015-1200): Capacity, injectivity and containment concepts (3x30 min each)
- Session 3 (115-300): CO2 EOR and storage in depleted oil fields (60 min); Assessment of various risk factors (30 min)
- Session 4 (315-500): Project economics (30 min); Permitting process for CCS (30 min); Current status and future outlook for CCS worldwide (30 min)
Day 2 – Reservoir engineering applications
- Session 1 (830-1000): CO2-brine PVT properties (15 min); Saline aquifer characteristics (15 min); Storage capacity estimation (30 min); Single-phase pressure propagation (30 min)
- Session 2 (1015-1200): Two-phase immiscible displacement; Relative permeability & capillary pressure (30 min); Pressure and CO2 plume propagation estimation in saline aquifers with simplified models (60 min)
- Session 3 (115-300): Class exercise – performance assessment for CCS project (90 min)
- Session 4 (315-500): Discussion of class exercise (30 min); Role of numerical models in CCS projects (45 min); Wrap-up (15 min)
Class Exercise: Participants will use a case study based on an existing US EPA Class VI permit application (for CO2 geologic sequestration wells) to: (1) develop a simplified model of the geologic storage complex, (2) predict the evolution of the CO2 plume and the Area of Review (pressurized region of influence), and (3) compare these against available detailed numerical modeling results.
Cancellations made after the 14-day window will not be refunded. Analyze CO2-EOR vis-à-vis saline storage opportunities
6.
Refunds will not be given due to no show situations. Applied Statistical Modeling and Data Analytics: A Practical Guide for the Petroleum Geosciences, Elsevier, New York, NY, 237 p. Please check that page for specific cancellation information. Outline monitoring, risk and economic analysis, and permitting needs for CCS
5. It is also suitable for researchers working in the area of CCS who may not have a reservoir engineering background.
We reserve the right to substitute course instructors as necessary. Srikanta Mishra is the Technical Director for geo-energy modeling and analytics at Battelle Memorial Institute, the world's largest independent contract R&D organization.
Cancellation Policy
All cancellations must be received no later than 14 days prior to the course start date.
Dr. Mishra's research is funded by the National Institute on Deafness & other Communication Disorders, National Institutes of Health.
Dr. Mishra has published scientific papers in Ear & Hearing, the Journal of the Acoustical Society of America, Hearing Research, Journal of the Association for Research in Otolaryngology, and others.
Proc. 1-15
Mishra, M. Zhong and R. LaFollette, 2018.