Review of Energy in the Built Environment

Author:

Lampropoulos IoannisORCID,Alskaif TarekORCID,Schram WouterORCID,Bontekoe Eelke,Coccato Simone,van Sark WilfriedORCID

Abstract

Urban environments can be key to sustainable energy in terms of driving innovation and action. Urban areas are responsible for a significant part of energy use and associated greenhouse gas emissions. The share of greenhouse gas emissions is likely to increase as global urban populations increase. As over half of the human population will live in cities in the near future, the management of energy supply and demand in urban environments will become essential. Developments such as the transformation of the electricity grid from a centralised to a decentralised system as well as the electrification of the transportation and heating systems in buildings will transform the urban energy landscape. Efficient heating systems, sustainable energy technologies, and electric vehicles will be critical to decarbonise cities. An overview of emerging technologies and concepts in the built environment is provided in this literature review on the basis of four main areas, namely, energy demand, supply, storage, and integration aspects. The Netherlands is used as a case study for demonstrating evidence-based results and feasibility of innovative urban energy solutions, as well as supportive policies.

Funder

H2020 Excellent Science

Rijksdienst voor Ondernemend Nederland

Publisher

MDPI AG

Reference169 articles.

1. The 2017 Revision of World Population Prospects. United Nations, Department of Economic and Social Affairs, Population Division, 2017 https://population.un.org/wpp/

2. Human settlements, infrastructure, and spatial planning;Seto,2014

3. World Population Prospects: The 2017 Revision, Key Findings and Advance Tables,2017

4. Investing in Urban Resilience: Protecting and Promoting Development in a Changing World,2015

5. Demand Side Integration,2011

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