J’NOV event at ESITC Caen

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The SB&WRC project is part of the Programme Interreg VA France (Channel) England and benefits from financial support from the ERDF.

Interreg SB&WRC

The 3rd edition of I'NOV took place on March 8th and 9th, at ESITC Caen, in France. This is the major event of new trends and technologies related to building and civil engineering.

This 3rd edition was articulated around 3 big topics anchored in the air trends: 

  • Energy Transition
  • Preservation of ressources
  • Digital Revolution

To grasp these topics, professionals from the sector as well as researchers and students from ESITC Caen have proposed various activities to the public.

Eco-friendly materials, smart roads, environmentally friendly infrastructures or even virtual reality, many of you came to discover these fascinating themes in line with the challenges of tomorrow in the construction sector.

This event was also the occasion for the ESITC Caen research laboratory to open its doors, to show around its infrastructures and present its research projects. This year, in the theme "Preservation of Resources", the SB&WRC project (Sustainable Bio & Waste Resources for Construction) was highlighted.

The SB&WRC project

Since February 2017, this project aims to design and produce 3 prototypes of thermal insulation for buildings based on bio-based and waste-based raw materials. It's now done!

Tissus usagés de literie, paille de blé, moelle de maïs, qui aurait cru que ces déchets pourraient être de parfaits isolants thermiques bas-carbone. C’est ce que SB&WRC vous a prouvé !

Used fabrics of bedding, wheat straw and corn marrow, who would think that this waste could be perfect low-carbon thermal insulation?! That’s what you’ve been proven!

Following is the work that ESITC Caen has provided based on the production of prototype 2:

Introduction

In this project, ESITC Caen worked on the valorization of the duvets as thermal insulating material in buildings.

In this sense, a prototype (called prototype 2) was built. Prototype 2 is a thermal insulator made of textile waste from duvets (polyester) associated with an OSB timber board, see Figure 1.

 Image1

Figure 1. OSB timber box

Prototype 2 construction

After their reception, the recycled duvets were first cleaned and sanitized, then the polyester was taken out from the duvets and placed layer by layer inside the constructed OSB box.

The box constructed by the OSB wood has the following dimensions: 2 m height, 2 m large and 0.1 m for thickness. The weight of the polyester introduced in the box is approximately 8 kg.

The different steps of the prototype 2 (configuration 1) construction are illustrated in the following pictures (Figure. 2).

Image2

Figure 2. Illustration of the different steps of the prototype 2 construction.

Prototype 2 thermal characterization

To determine the thermal properties of a building material on a real scale, a Hot Box apparatus is often used. With this apparatus, a wall to be tested is positioned between two ambiences, one hot, and the other cold. Once the steady state is reached, measurement of the heat dissipated to keep a constant temperature gradient through the specimen wall is performed. Thanks to these data, dissipated power and temperature difference between the two atmospheres, thermal performance of the wall can be calculated.

In this project, the thermal performance of the prototype 2 (OSB + polyester + OSB) were studied. To do this, a measuring system is developed by following the ASTM C1363-11 and NF EN ISO 8990 norms. In Figure 2, an overview of the Hot Box apparatus is shown.

Image3

Figure 3. Overview of the experimental device used for thermal characterization of the prototype 2.

Results

After the calibration of the developed Hot Box apparatus, thermal properties of the prototype 2 were measured. The results are given in the following table:

Prototype

Dimensions

(cm)

Thermal conductivity

(W.m-1.K-1)

Thermal resistance

(m2.K/W)

Prototype 2

200 x 200 x 10

0.0505

1.98

 

*The thermal properties represents an average of five measurements in the same environmental conditions.

 

We thank all the project partners, French as English, and Interreg France (Channel) England for their contribution of 1.3 M €.

Nearly 300 visitors with a varied profile (schoolchildren, building professionals, manufacturers, researchers, etc.) came to discover the SB&WRC project.

Image4

SB&WRC booth at the I’NOV event. Presentation of a prototype based on polyester tested in climatic chambers.

Article written by ESITC Caen, SB&WRC project partner


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J’NOV event at ESITC Caen

Review of the 11-06-2019 by Alexia ROBIN

J’NOV event at ESITC Caen

Review of the 10-06-2019 by Alexia ROBIN

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