Abstract
Sustainable Energy Action Plan (SEAP) is the key document in which outlines how it intends to reach its
CO2 reduction target by 2020. It defines the activities and measures set up to achieve the targets, together
with time frames and assigned responsibilities. However to orient cities toward a low carbon society, longer
lasting investment decisions and organisational changes will be necessary.
In this conttext, the overall objective of CitInES European project is to design and demonstrate a multi-scale
multi-energy decision-making tool to optimise the energy efficiency of cities to support the cities for the
developemnt and monitoring of their SEAP. To achieve this goal, innovative energy system modelling and
optimization algorithms were designed to allow end-users to optimize and monitor their energy strategy
through detailed simulations of local energy production, storage, transport, distribution and consumption,
including demand side management and coordination functionalities enabled by smart grid technologies.
This paper presents the study case of the municipality of Cesena. This municipality, as a partner of the
project, has implemented its SEAP under the tool to assess the impact of the measures taken under several
scenarios and monitor its activities to validate the developed software. The different measure adopted to
reduce the CO2 emissions and energy consumption together with an increase of the energy efficiency and use
of renewables are such as increase of the green areas, increase of the use of cogeneration, renovation of the
building or the promotion the use of PV and thermal solar panels.
Originalsprache | Englisch |
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Titel | Plan it Smart - Clever Solutions for Smart Cities REAL CORP 2014 |
Publikationsstatus | Veröffentlicht - 2014 |
Veranstaltung | Plan it Smart - Clever Solutions for Smart Cities REAL CORP 2014 - Dauer: 21 Mai 2014 → 23 Mai 2014 |
Konferenz
Konferenz | Plan it Smart - Clever Solutions for Smart Cities REAL CORP 2014 |
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Zeitraum | 21/05/14 → 23/05/14 |
Research Field
- Ehemaliges Research Field - Energy