Selection of Heat-Insulating Materials for the Thermal Rehabilitation of a Building

Article Preview

Abstract:

The paper presents a selection method of the most used thermal insulation materials used in the thermal rehabilitation of a building. A good thermal insulation requires that the material chosen, meets the technical and safety characteristics, is easily recyclable and is reasonable in price. After establishing the characteristics that must be analysed, the calculation is make to establish the optimal thermal insulation for a certain type of building. The calculation method takes into account the characteristics established, as the most important for the completion of the paper for thermal insulation and at the end, the material that best meets the required conditions is indicate. This method can be used for any type of building, for any type of thermal insulation, walls, roof, ceilings, etc., provided we correctly impose the desired characteristics.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

123-132

Citation:

Online since:

June 2026

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2026 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Osztroluczky Miklos, Izolații termice, Casa, Oradea, (2012) 60-120.

Google Scholar

[2] L.Tcaci, V.Arion, Performanţa energetică a clădirilor, Tehnica-UTM, Chișinău, 2016.

Google Scholar

[3] Susanne Rexroth, Friedrich May, Ulrich Zink, Izolarea termică a clădirilor. Soluții contemporane și adaptabile. MatrixRom, 2016. pp.87-115.

Google Scholar

[4] Mehmet Şahbaz, Aykut Kentli, Ahmet Eren, Cangül Bilik - Material selection for insulation of buildings by multi-criteria Decision making methods Conference On Advances In Mechanical Engineering Istanbul 2016 – ICAME2016.

Google Scholar

[5] V. Motuzienė, A. Rogoža, V. Lapinskienė, T. Vilutienė, Construction solutions for energy efficient single-family house based on its life cycle multi-criteria analysis: a case study, Journal of Cleaner Production, 112, Part 1 (2016) 532-541.(MCDM).

DOI: 10.1016/j.jclepro.2015.08.103

Google Scholar

[6] R.V. Rao, A decision making methodology for material selection using an improved compromise ranking method, Materials & Design, 29 (2008) 1949-1954. (AHP).

DOI: 10.1016/j.matdes.2008.04.019

Google Scholar

[7] A. Kluczek, B. Gladysz, Analytical Hierarchy Process/Technique for Order Preference by Similarity to Ideal Solution-based approach to the generation of environmental improvement options for painting process e Results from an industrial case study, Journal of Cleaner Production, 101 (2015) 360-367. (AHP).

DOI: 10.1016/j.jclepro.2015.03.079

Google Scholar

[8] R. Mikučionienė, V. Martinaitis, E. Keras, Evaluation of energy efficiency measures sustainability by decision tree method, Energy and Buildings, 76 (2014) 64-71.

DOI: 10.1016/j.enbuild.2014.02.048

Google Scholar

[9] Benjamin Durakovic, Gokhan Yildiz, Mohamed E. Yahia, Comparative Performance Evaluation of Conventional and Renewable Thermal Insulation Materials Used in Building Envelops ISSN 1330-365.

DOI: 10.17559/tv-20171228212943

Google Scholar

[10] Information on https://mathaus.ro/blog/ce-este-spuma-poliuretanica-si-la-ce-se-foloseste-Art149.

Google Scholar

[11] Information on https://greeninsulation.ro/materiale-izolante-si-proprietatile-lor-termice/ .

Google Scholar

[12] Information on https://www.macostore.ro/blog/2018/07/25/izolare-termica-interior-exterior-materiale-si-preturi/.

Google Scholar

[13] Information on https://isoterm.ro/noutati/fisa-tehnica-spuma-poliuretanica/.

Google Scholar

[14] Information on https://eurodomik.ru/ro/installation/koefficient-soprotivleniya-paropronicaemosti-soprotivlenie-paropronicaniyu.html.

Google Scholar

[15] Information on https://www.dedeman.ro/ro/vata-minerala/c/397.

Google Scholar

[16] Information on https://www.hornbach.ro/s/termoizola%C8%9Bii.

Google Scholar

[17] Information on https://www.knaufinsulation-ts.com/reaction-to-fire-vs-fire-resistance.

Google Scholar