Economic and Environmental Assessment of Renewable Energy and Energy Storage Integration in Standalone Polygeneration Systems for Residential Buildings

Lazaro, Ana, Pinto, Edwin, Serra, Luis Mª

ISES Solar World Congress 2019 · Santiago, Chile · 2019-11-04
Published by International Solar Energy Society (ISES)
DOI: 10.18086/swc.2019.08.06

Abstract

Energy consumption and CO2 emissions in residential sector plays an important role to face the climate change. Technologies and strategies which allow the reduction of fuel consumption and CO2 emissions in energy supply systems for residential buildings are required. This work analyses the integration of different renewable energy and energy storage technologies for a residential building located in Zaragoza, Spain. It is selected a standalone energy system in order to study in a systematic way how different technologies interact and affect the optimal design, from conventional to polygeneration systems. A Mixed Integer Linear Programming (MILP) model was developed to optimize the system from the economic point of view. Results show that cogeneration and/or photovoltaic provide a remarkable reduction of fuel consumption and CO2 emissions. In addition, it was determined the synergies of different technologies, e.g. batteries capacity is reduced when cogeneration and thermal energy storage are considered.

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