Numerical modeling of a hemp-lime blocks wall subject to horizontal in-plane loads

Hemp-lime is one of the nature-based solutions developed since the early 2000s to reduce the huge environmental impact of the building sector; it is produced mixing lime with hemp shives produced by the scutching of industrial hemp plants. The production of such material determines the recovery and...

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Published inAIP conference proceedings Vol. 2428; no. 1
Main Authors Caruso, Marco, Cefis, Nicola, Dotelli, Giovanni, Moletti, Chiara, Sabbadini, Sergio
Format Journal Article Conference Proceeding
LanguageEnglish
Published Melville American Institute of Physics 01.11.2021
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ISSN0094-243X
1551-7616
DOI10.1063/5.0070802

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Abstract Hemp-lime is one of the nature-based solutions developed since the early 2000s to reduce the huge environmental impact of the building sector; it is produced mixing lime with hemp shives produced by the scutching of industrial hemp plants. The production of such material determines the recovery and enhancement of by-products of agricultural cultivation in accordance with the principles of circular economy. Hemp-lime is a carbon negative material mainly due to the utilization of vegetal aggregates and to the carbonation reaction, characteristic of lime, through which carbon dioxide sequestration takes place. In this research, the behavior of a wall built in prefabricated hemp-lime blocks has been investigated focusing on the mortar joints and on the determination of their eventual seismic and wind bracing contribution in a building. Starting from the determination of mechanical properties of the blocks, a finite element numerical analysis of the hemp-lime wall system has been developed. The results show that mortar joints exert a stiffening action in a hemp-lime system as opposite to other building techniques where joints are generally weak parts. Although the mechanical properties of the hemp-lime wall are generally less performing than those offered by a traditional wall (brick, stone) the bracing effect is appreciable for residential buildings in moderate seismicity areas due to the reduction of stress states in the load-bearing elements as frame or pillars.
AbstractList Hemp-lime is one of the nature-based solutions developed since the early 2000s to reduce the huge environmental impact of the building sector; it is produced mixing lime with hemp shives produced by the scutching of industrial hemp plants. The production of such material determines the recovery and enhancement of by-products of agricultural cultivation in accordance with the principles of circular economy. Hemp-lime is a carbon negative material mainly due to the utilization of vegetal aggregates and to the carbonation reaction, characteristic of lime, through which carbon dioxide sequestration takes place. In this research, the behavior of a wall built in prefabricated hemp-lime blocks has been investigated focusing on the mortar joints and on the determination of their eventual seismic and wind bracing contribution in a building. Starting from the determination of mechanical properties of the blocks, a finite element numerical analysis of the hemp-lime wall system has been developed. The results show that mortar joints exert a stiffening action in a hemp-lime system as opposite to other building techniques where joints are generally weak parts. Although the mechanical properties of the hemp-lime wall are generally less performing than those offered by a traditional wall (brick, stone) the bracing effect is appreciable for residential buildings in moderate seismicity areas due to the reduction of stress states in the load-bearing elements as frame or pillars.
Author Caruso, Marco
Sabbadini, Sergio
Dotelli, Giovanni
Moletti, Chiara
Cefis, Nicola
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  email: sergio.sabbadini@polimi.it
  organization: Department of Architecture and Urban Studies, Politecnico di Milano
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Lou, Eric C. W.
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Phung, Quan
Nguyen, The-Quan
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Snippet Hemp-lime is one of the nature-based solutions developed since the early 2000s to reduce the huge environmental impact of the building sector; it is produced...
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SubjectTerms Carbon dioxide
Carbon sequestration
Carbonation
Environmental impact
Finite element method
Hemp
Lime
Load bearing elements
Mechanical properties
Mortars (material)
Numerical analysis
Prefabrication
Residential buildings
Seismicity
Stiffening
Title Numerical modeling of a hemp-lime blocks wall subject to horizontal in-plane loads
URI http://dx.doi.org/10.1063/5.0070802
https://www.proquest.com/docview/2590633248
Volume 2428
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