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Integrated Organic Rankine Cycle system for simultaneous utilization of solar energy and LNG cold energy

Descripción del proyecto

Sistemas energéticos futuros basados en la energía solar y la energía fría del gas natural licuado

El cambio a las fuentes de energía renovables está motivado por una creciente demanda de electricidad, las reservas finitas de combustibles fósiles y las preocupaciones ambientales. Sin embargo, tanto las energías renovables como los carburantes convencionales, tales como el gas natural licuado (GNL, o LNG por sus siglas en inglés), desempeñarán un papel importante en el futuro mercado energético. Con ello en mente, el proyecto SO-LNG-ORC, financiado con fondos europeos, tiene como objetivo desarrollar un método sistemático y holístico para el diseño de sistemas energéticos futuros. El diseño comprenderá un ciclo de Rankine orgánico integrado para utilizar simultáneamente energía solar y energía fría de GNL. Los resultados del proyecto abrirán paso a sistemas energéticos altamente eficientes y rentables, con pocos riesgos y de bajo impacto ambiental.

Objetivo

Both renewable energy (e.g. solar energy) and conventional fuels (e.g. Liquified Natural Gas (LNG)) play an important role in the future energy market. Rising electricity demand, finite fossil fuel reserves and environmental concerns motivate the switch to renewable energy sources, increasing energy efficiency, and recovery of unused energy streams. I am determined to make my own contribution in dealing with these issues. This project aims to develop a holistic systematic method for a future energy system design for an integrated Organic Rankine Cycle (ORC) for simultaneous utilization of solar energy and LNG cold energy. Through various training during my Ph.D. research, I am equipped with good knowledge regarding (ORC), process integration and optimization. As a postdoc at Norwegian University of Science and Technology and Massachusetts Institute of Technology, I obtained experience in the field of Process Systems Engineering and energy system optimization. I would like to extend my knowledge and skills with the optimization under uncertainties, process risk analysis, and environmental impact assessment to design a combined renewable and conventional energy system based on an interdisciplinary approach. Therefore, I have decided to apply for a Marie Curie Individual Fellowship at the Process and Systems Engineering Center at DTU, which excels in the simulation-based optimization, process risk analysis, and environmental impacts assessment. In the future, I would like to continue focusing on future energy system design as well as greenhouse gas emissions and aim to deliver novel applicable energy systems featuring high efficiency and profitability, but low risk and low environmental impacts. The training I would get through a Marie Curie fellowship, would also bring me closer to a more permanent faculty position and job opportunities in LNG related industries.

Ámbito científico

CORDIS clasifica los proyectos con EuroSciVoc, una taxonomía plurilingüe de ámbitos científicos, mediante un proceso semiautomático basado en técnicas de procesamiento del lenguaje natural.

Coordinador

DANMARKS TEKNISKE UNIVERSITET
Aportación neta de la UEn
€ 207 312,00
Dirección
ANKER ENGELUNDS VEJ 101
2800 Kongens Lyngby
Dinamarca

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Región
Danmark Hovedstaden Københavns omegn
Tipo de actividad
Higher or Secondary Education Establishments
Enlaces
Coste total
€ 207 312,00