Life Cycle Assessment for historic building renovation projects - case study

Kaulwar, Snigdha (2023) Life Cycle Assessment for historic building renovation projects - case study. [Laurea magistrale], Università di Bologna, Corso di Studio in Ingegneria dei processi e dei sistemi edilizi [LM-DM270], Documento full-text non disponibile
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Abstract

It is always a clever idea to preserve the Historical Buildings for the further use. Historical buildings often have unique architectural and cultural significance and preserving them through adaptive reuse can help to maintain this heritage for future generations. Adaptive reuse of existing buildings can be a more sustainable option than demolishing and building new structures, which can have a significant impact on the environment. This Thesis explores the key elements of sustainable building design, including the use of passive solar design, and the implementation of renewable energy technologies. The benefits of sustainable construction, including reduced energy costs will also be discussed. The green house is a sustainable architectural concept that aims to reduce the environmental impact of buildings by integrating plants and trees into the structure. This approach to sustainable architecture aims to preserve buildings of historical or cultural significance while providing new functions and benefits to the community. The benefits of adaptive reuse include conservation of valuable cultural resources, reduction of waste through the reuse of existing structures, and reduction of the carbon footprint of new construction. Despite the challenges, adaptive reuse has become a popular approach in modern architecture as it provides a sustainable and cost-effective way to reuse existing buildings and community improvement.

Abstract
Tipologia del documento
Tesi di laurea (Laurea magistrale)
Autore della tesi
Kaulwar, Snigdha
Relatore della tesi
Correlatore della tesi
Scuola
Corso di studio
Indirizzo
Historic buildings rehabilitation
Ordinamento Cds
DM270
Parole chiave
sustainability, green house, adaptive reuse, life cycle assessment, carbon emission, energy efficiency
Data di discussione della Tesi
20 Marzo 2023
URI

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