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2019 | OriginalPaper | Buchkapitel

5. Case Studies

verfasst von : Francesca Thiébat

Erschienen in: Life Cycle Design

Verlag: Springer International Publishing

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Abstract

This chapter will present three case studies illustrating the proposed tool. Two of these examples show how the method can be applied during the early design stage (primarily regarding selection of building elements or components), while one case study demonstrates how the method can be applied during the detailed design stages to assess the entire life cycle performance of the building.

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Fußnoten
1
See website https://​lifecyclearchite​cture.​wordpress.​com and download the spreadsheets for further applications.
 
2
Having seen the results the client opted to install an EPS envelope (option 1). The analysis took one week: a total of 24 hours including 2 meetings, several telephone conversations, data analyses, spreadsheet calculations, and the drafting of the final report.
 
3
In 2011 the design studios PAT. and BV were asked to draft a preliminary project after winning a competition of ideas in 2008. The project was never implemented.
 
4
According to regulation UNI 11235 “instructions for the design, execution, control and maintenance of green roofs”, a green roof can be extensive (8–20 cm substrata) or intensive (20–150 cm substrata). See the cited standard for more in-depth information regarding green roofs.
 
5
In physics, thermal resistance (R-value) represents the difficulty faced by heat to pass through a solid, liquid, or gas. Instead the positive effects of thermal inertia can be quantified using the attenuation factor (fa) representing the ratio between the variation in temperature and the flow of heat that needs to be introduced to maintain a constant indoor temperature. The periodic thermal transmittance (YIE), expressed by the two previous parameters, represents the capacity of a building component to attenuate the external thermal flow over a 24 hour period. The formula is \( Y_{IE} = \frac{1}{RT} \times f_{a} \).
 
7
Cf. Chap. 4 (Sect. 4.​1).
 
8
Cfr. Sect. 4.​2.
 
9
Results of the Life Cycle Assessment and Life Cycle Costing were presented at the PLEA congress in Los Angeles (2016) and published in a scientific paper that same year (see references at the end of this chapter).
 
Literatur
Zurück zum Zitat Albano J (2005) La maintenance des bâtiments en 250 fiches pratiques. Le Moniteur, La Croix de Berny (FR) Albano J (2005) La maintenance des bâtiments en 250 fiches pratiques. Le Moniteur, La Croix de Berny (FR)
Zurück zum Zitat Di Giulio R (2007) Manuale di manutenzione edilizia. Valutazione del degrado e programmazione della manutenzione, Maggioli, Santarcangelo di Romagna Di Giulio R (2007) Manuale di manutenzione edilizia. Valutazione del degrado e programmazione della manutenzione, Maggioli, Santarcangelo di Romagna
Zurück zum Zitat Swiss Ecoinvent Centre, Frischknecht R, Jungbluth N (eds) Althaus HJ, Doka G, Dones R, Heck T, Hellweg S, Hischier R, Nemecek T, Rebitzer G, Spielmann M, Wernet G (authors) (2007): Ecoinvent report no 1: overview and methodology for the ecoinvent database v. 2.0. Dübendorf (www.ecoinvent.org) Swiss Ecoinvent Centre, Frischknecht R, Jungbluth N (eds) Althaus HJ, Doka G, Dones R, Heck T, Hellweg S, Hischier R, Nemecek T, Rebitzer G, Spielmann M, Wernet G (authors) (2007): Ecoinvent report no 1: overview and methodology for the ecoinvent database v. 2.0. Dübendorf (www.​ecoinvent.​org)
Zurück zum Zitat Thiébat F (2012) Life-cycle methods as design tools for sustainability assessment of technologies. In: What is sustainable technology? The role of life cycle-based methods in addressing the challenges of sustainability assessment of technologies. Proceedings of 2̊ DIRE meeting. Rome 27 Sept 2012. Rome, ENEA. pp 72–74 Thiébat F (2012) Life-cycle methods as design tools for sustainability assessment of technologies. In: What is sustainable technology? The role of life cycle-based methods in addressing the challenges of sustainability assessment of technologies. Proceedings of 2̊ DIRE meeting. Rome 27 Sept 2012. Rome, ENEA. pp 72–74
Zurück zum Zitat Thiébat F (2013). Life-cycle design for sustainable architecture. Techne—J Technol Archit Environ 5 177–183. ISSN: 2239-0243 Thiébat F (2013). Life-cycle design for sustainable architecture. Techne—J Technol Archit Environ 5 177–183. ISSN: 2239-0243
Zurück zum Zitat Thiébat F (2016) An evaluation tool to support strategical evaluations for the reclamation and reuse of dismissed sites. Techne—J Technol Archit Environ 12:172–179 Thiébat F (2016) An evaluation tool to support strategical evaluations for the reclamation and reuse of dismissed sites. Techne—J Technol Archit Environ 12:172–179
Zurück zum Zitat Thiébat F, Veglia A, Porceddu V (2016) Sustainability strategies for the reuse of dismissed industrial architecture: life-cycle design in an Italian case study PLEA16, Los Angeles 11–13 July 2016 Thiébat F, Veglia A, Porceddu V (2016) Sustainability strategies for the reuse of dismissed industrial architecture: life-cycle design in an Italian case study PLEA16, Los Angeles 11–13 July 2016
Metadaten
Titel
Case Studies
verfasst von
Francesca Thiébat
Copyright-Jahr
2019
DOI
https://doi.org/10.1007/978-3-030-11497-8_5