Utilizing agro-industrial wastes panels in developing cost-efficient thermally insulating wall claddings for residential energy retrofitting in Egypt

Q1 Engineering
E.A. Darwish , Ayah Salem Eldeeb
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Abstract

Local agro-industrial wastes-based particleboards and fiberboards in Egypt are manufactured mainly from sugarcane-bagasse and flax shives. These panels are used in decorations and interior claddings. This paper aimed to broaden their market to be utilized in local low-cost and simple building envelope retrofitting packages instead of conventional packages that depend on imported expanded polystyrene and wet-rendered gypsum boards. Thermal conductivities of various existing sugarcane-bagasse and flax-shives-based panels were measured to be used in developing multilayered interior claddings with adequate thermal insulating performance to increase the thermal mass of a validated non-insulated case-study residential building as recommended by the Egyptian Code for Energy Efficiency of Residential Buildings. Models retrofitted using the developed cladding assemblies were simulated using Design Builder to determine their achieved annual energy savings and predict their profitability. Thermal conductivities of sugarcane-bagasse and flax-shives-based particleboards were lower than wood-based cladding panels, with the range of 0.05–0.1166 W/mK. Moreover, the thermal conductivities of sugarcane-bagasse fiberboard had the range of 0.0926–01,111 W/mK which is significantly lower than wood-based fiberboards. Simulation results showed that both models retrofitted, sugarcane bagasse-based and flax shives-based, achieved better energy savings, 5.07% and 5.04%, than the conventionally retrofitted model, 3.73%. Furthermore, the flax-shives-based model showed higher profitability, with positive income achieved in the 15th year, than a conventionally retrofitted model, achieved in the 20th year, and the sugarcane-bagasse-based model, achieved in the 19th year. Thus, it was recommended that although flax-shives-based wall claddings were usually 14–20% thicker than sugarcane-bagasse-based claddings, they provided similarly high annual energy savings with lower initial costs and higher profitability.

Abstract Image

利用农业工业废料板开发成本效益高的隔热墙覆层,用于埃及住宅能源改造。
埃及当地以农用工业废料为原料的刨花板和纤维板主要由甘蔗渣和亚麻刨花制成。这些板材主要用于装饰和内部装潢。本文旨在拓宽这些板材的市场,将其用于当地低成本、简单的建筑围护结构改造成套设备,而不是依赖进口发泡聚苯乙烯和湿碾石膏板的传统成套设备。测量了各种现有甘蔗渣板和亚麻-蜂巢板的导热系数,以用于开发具有足够隔热性能的多层室内覆层材料,从而按照《埃及住宅建筑节能规范》的建议,增加经过验证的非隔热案例研究住宅建筑的热质量。使用 Design Builder 对使用开发的覆层组件进行改造的模型进行了模拟,以确定其实现的年节能效果并预测其盈利能力。甘蔗渣刨花板和亚麻刨花板的导热系数低于木质覆面板,范围在 0.05-0.1166 W/mK 之间。此外,甘蔗渣纤维板的导热系数范围为 0.0926-01,111 W/mK,明显低于木质纤维板。模拟结果表明,甘蔗渣纤维板和亚麻刨花纤维板这两种改造模式的节能效果(5.07% 和 5.04%)均优于传统改造模式(3.73%)。此外,亚麻榨汁机模式的盈利能力更强,在第 15 年就实现了正收入,而传统改造模式在第 20 年才实现正收入,甘蔗渣改造模式在第 19 年才实现正收入。因此,建议尽管亚麻-蜂巢墙覆面通常比甘蔗-蔗渣墙覆面厚 14-20%,但它们以较低的初始成本和较高的盈利能力提供了同样高的年节能效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Energy and Built Environment
Energy and Built Environment Engineering-Building and Construction
CiteScore
15.90
自引率
0.00%
发文量
104
审稿时长
49 days
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