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首页> 外文期刊>Advances in building energy research >Evaluation of physical and thermal properties of coal combustion residue blended concrete for energy efficient building application in India
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Evaluation of physical and thermal properties of coal combustion residue blended concrete for energy efficient building application in India

机译:煤燃烧残渣混合混凝土对印度节能建筑应用的物理和热性能的评价

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At the backdrop of energy conservation efforts in building sector, this research paper presents a passive approach by producing less heat conducting concrete with the inclusion of coal combustion residue (bottom ash) as a substitute to conventional sand and using low embodied energy cement in the mix. The constituent phases and other physical and chemical parameters of both sand and bottom ash were evaluated. Three different sets of concrete mixes were prepared by following IS 456 code provisions, and the compressive strength, apparent porosity, bulk density and the thermal conductivity parameters of each mix set were evaluated. The reducing trend was observed in thermal conductivity and compressive strength parameters of concrete mixes against the increasing percentage of sand replacement by coal bottom ash. Reduction to the tune of around 25% in the thermal transmittance value (U-value) was observed while comparison was made between conventional concrete roof and bottom ash blended concrete roof with identical features. Coal combustion residue blended concrete could be applied for sustainable and energy efficient building construction for lowering cooling demand without any additional capital investment and also saving sand from faster depletion than its renewal rate.
机译:在建筑业节能努力的背景下,本研究论文通过将煤燃烧残留物(底部灰分)作为替代常规砂的替代品生产较少的热传导混凝土,并在混合物中使用低体定的能量水泥,提出了一种被动方法。 。评价砂和底灰的组成阶段和其他物理和化学参数。通过以下制备三组不同的混凝土混合物是456个码的规定,并评估每个混合装置的抗压强度,表观孔隙率,堆积密度和导热率参数。在煤底灰分下,混凝土混凝土百分比的抗压强度参数观察到还原趋势。观察到在具有相同特征的传统混凝土屋顶和底灰混合混凝土屋顶之间进行了热透射率值(U值),在热透射率值(U值)中的曲调约为25%。煤炭燃烧残渣混纺混凝土可用于可持续和节能的建筑结构,用于降低冷却需求,而无需任何额外的资本投资,也可以节省更快的耗尽而不是更新率。

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