Evaluation of the Energy-Efficiency of an Aerated Slurry-Infiltrated Mesh Building System with Biomass-Based Insulation

Areej T. Almalkawi, Parviz Soroushian, Som S. Shrestha

Research output: Contribution to journalArticlepeer-review

12 Scopus citations

Abstract

Experimental investigations and numerical analyses were conducted on the thermal attributes of a building system made with locally available structural and insulation materials. The structural material, which also offers some insulation qualities, is referred to as aerated slurry-infiltrated mesh. The insulation materials used in this building are based on biomass; the alternatives considered here include ground wood, shredded straw, and cellulose. Thermal conductivity tests were performed on aerated slurries of different bulk densities, and on the biomass-based insulation materials, some of which were prepared with different bulk densities. The competitive merits of the biomass-based indigenous insulation materials were assessed. The correlations between bulk density and thermal conductivity were evaluated and rationalized based on the prevalent mechanisms of heat transfer in different materials. The effects of temperature on the thermal conductivity of different biomass-based indigenous insulation materials were investigated. For wall insulation, a cost analysis was conducted in order to select the optimum insulation level. The thermal mass of the aerated slurry-infiltrated mesh building system was found to favor its energy-efficiency when compared with a similar wood building.

Original languageEnglish
Pages (from-to)797-806
Number of pages10
JournalRenewable Energy
Volume133
DOIs
StatePublished - Apr 2019

Funding

The work reported herein was funded by the U.S. Army Grant No. W9132T-16C-0003 -USA.

FundersFunder number
U.S. ArmyW9132T-16C-0003

    Keywords

    • Buildings
    • Heating and cooling energy demands
    • Locally available structural and insulation materials
    • Thermal conductivity
    • Thermal mass

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