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Associate AnalystAug 2015 - Aug 2016 (1 year)
* Conducting in-depth data analyses using traditional and advanced methods * Assess reliability of secondary sources and data * High attention to detail * Analyze data and communicate findings * Designing or assisting in the development of questionnaires and moderator guides to ensure the necessary data is captured * Monitor, collect, synthesize, and help develop reports based upon media outlets, press releases, and other third party publications into concise and actionable insights
Research AssistantAug 2014 - Apr 2015 (8 months)
I was working as research assistant and assisted my supervisor in two International Journal Publications. The first journal publication in Industrial and Engineering Chemistry Research published by American Chemical Society and second journal publication in International Journal of Oil, Gas and Coal Technology. During the same time I have also presented my work in PETROTECH 2014, the 11th International Oil and Gas Conference & Exhibition held in New Delhi, which later got published.
InternshipSep 2013 - Oct 2013 (1 month)
Overview of the Plant refinery, in-depth process flow description of the Crude Distillation Unit, Heat Exchanger, Propane Unit and Furnace. Detailed design and calculation of Crude Pre Heat Exchanger, Calculation of Theoretical Plates in Propane Tower and Furnace Efficiency calculation.
M.E. in Petroleum Engineering2012 - 2014 (2 years)
B.E. in Chemical Engineering2008 - 2012 (4 years)
Geo-Chemical Diagenesis of Proppant Packs in Stimulated Wells
The purpose of this paper was to investigate the effect of the geo-chemical diagenesis in proppant packs as a result of interactions between proppants, formation fluids, formation minerals and fracturing fluids under conditions of high temperature and high pressure and its impact on permeability loss. Data pertaining to mineralogy, compositions and fluids is derived from literature and used to build a case study which supports this work.
Mathematical Modeling of Stimulated Shale Gas Reservoirs
This paper utilizes a fracture-completed horizontal well in different configurations of quad-porosity shale gas reservoir models to assess the effect of gas flow and storage in these systems on production parameters. A mathematical model was developed which characterizes the change in width of the created fracture, due to the phenomenon of diffusion and precipitation.
Impact of Proppant Diagenesis on Shale Gas Productivity
A mathematical model was developed in this paper. It inculcates the phenomenon of mass transfer along the length of the fracture coupled with associated surface chemical reactions, and mass conservation equations are solved for individual components. Further, the impact of finite difference techniques on the results is studied. This is supplemented with studies involving changes in fracture aperture as well as velocity profile of the flowing fluid.
Shale Gas Productivity: A Geo-chemical Diagenesis Perspective
I assisted my supervisor in writing this paper and our was presented by him at SPE Annual Technical Conference and Exhibition on 28-30 September held at Houston, Texas, USA.
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