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Floating Building Opportunities for Future Sustainable Development and Energy Efficiency Gains | OMICS International | Abstract
ISSN: 2168-9717

Journal of Architectural Engineering Technology
Open Access

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Research Article

Floating Building Opportunities for Future Sustainable Development and Energy Efficiency Gains

Shahryar Habibi*

Faculty of Architecture, University of Ferrara, Via Quartieri 8 44100 Ferrara, Italy

*Corresponding Author:
Shahryar Habibi
PhD Candidate, Faculty of Architecture
University of Ferrara, Via
Quartieri 8 44100 Ferrara, Italy
Tel: +393886474741
E-mail: [email protected]

Received Date: April 28, 2015 Accepted Date: May 18, 2015 Published Date: May 29, 2015

Citation: Habibi S (2015) Floating Building Opportunities for Future Sustainable Development and Energy Efficiency Gains. J Archit Eng Tech 4:142. doi:10.4172/2168-9717.1000142

Copyright: © 2015 Habibi S. This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.

Abstract

This paper presents the study concerning floating buildings in terms of energy efficiency performance and improving awareness to build them. It includes their capacity to deal with climate change by leading the use and implementation of innovative technologies in the built environment. Comparing floating buildings with land-based buildings reveals several advantages including the use of renewable energy sources and embarks on developing new settlement planning. This paper presents a review of the principal features of floating buildings that have a direct impact on global energy supplies and alternative renewable energy sources. Development of floating buildings needs the implementation of new technology, social and community knowledge. The new knowledge and experience gained in floating buildings can lead to optimum future approaches. This paper presents guidelines for developing sustainability strategies or decision-making frameworks for offshore renewable energy facilities. It will analyze example projects built on the seas in relation to offshore wind energy, wave energy and photovoltaic cells. The development and assessment of sea energy sources should be considered as renewable energy source. It also provides new strategies and methods to reduce climate crisis regarding floating architecture and promoting offshore energies as renewable energy resources. This paper highlights the importance of relevance to floating buildings as strategies for adapting to climate change and clarifies that offshore renewable energy resource should be focused in the study of future sustainable development and energy efficiency targets.

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