Mary Sharon Rose Bondugula
Senior Research Engineer-fluid Dynamics @Aqua Membranes, Inc
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WORK HISTORY
Senior Research Engineer-fluid Dynamics @Aqua Membranes, Inc
US
Lead pattern optimization efforts to support R&D in membrane technologies, focusing on flow characterization and transport rates- Utilise Computational Fluid Dynamics (CFD) and advanced modeling to enhance membrane performance, lifespan, and energy efficiency- Design and build specialized equipment to visualize flow dynamics, measure concentration polarisation, and localized shear in test channels- Conduct analysis of failure mechanisms and propose solutions to improve membrane performance and operational efficiency- Collaborate with cross-functional teams to scale up membrane technologies and transition innovations from lab to market- Leverage Finite Element Analysis to evaluate the impact of print patterns, materials, and rolling processes on membrane performance- Analyse and predict membrane behavior under diverse operating conditions using advanced modeling techniques- Drive the development of sustainable water management solutions to address global challenges in water treatment.
EDUCATION
Karunya Institute of Technology and Sciences
Bachelor of Technology, Aerospace, Aeronautical and Astronautical Engineering
Politecnico di Milano
Master's degree, Space engineering
New Hope High School
High School, English,Maths, Science, Social
Florida Institute of Technology
Doctor of Philosophy - Ph.D., Thermal Fluid Sciences | Heat and Mass Transfer | Energy Systems
St. Anns Junior College
Intermediate, Maths, Physics, Chemistry (M.P.C)
ABOUT MARY SHARON ROSE BONDUGULA
I am an Aerospace/Space/Mechanical Engineering Graduate with the specialisation in Aerospace Propulsion and Thermal Energy & Fluid Flow.Currently, I am a Senior Research Engineer specializing in Fluid Dynamics at Aqua Membranes, where I lead pattern optimization efforts to support cutting-edge research and development in membrane technologies. My role focuses on developing tools and methodologies to characterize flows, transport rates, sediment deposition, and other critical factors influencing flow through patterned channels and membrane performance. By leveraging Computational Fluid Dynamics (CFD) and advanced modeling techniques, I aim to enhance membrane performance, lifespan, and energy efficiency, contributing to innovative solutions in sustainable water management. I am driven by a desire to contribute to the advancement of sustainable energy solutions and address the challenges of climate change.
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