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Measuring Thermal Mass of Sustainable Concrete Mixes

机译:测量可持续混凝土拌和料的热质量

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摘要

One of the challenges in sustainable development is to optimize the energy efficiency of buildings during their lifespan. Modern concretes offer both low embodied CO_2 with the use of different types of cements and recycled aggregates and reduced operational CO_2 with the intrinsic property called "thermal mass" that reduces the risk of overheating in the summer and provides passive heating in the winter. Thermal mass is currently evaluated with "admittance" which is the ability of the element to exchange heat with the environment and is based on specific heat capacity, thermal conductivity and density. The aim of this study is to evaluate the effect of thermal properties namely, density, specific heat capacity and thermal conductivity on thermal mass. The objective of the study is to carry out laboratory experiments by measuring such thermal properties of concrete mixes with various percentages of GGBS (ground granulated blast furnace slag), PFA (pulverized fuel ash), and SF (silica fume) and RCA (recycled coarse aggregates). The results obtained from these tests would contribute to the evaluation of how such thermal properties influence the thermal admittance and hence the thermal mass performance of sustainable concrete elements in a building system.
机译:可持续发展的挑战之一是在建筑物的整个生命周期内优化其能源效率。现代混凝土通过使用不同类型的水泥和再生骨料,既可提供低含量的CO_2,又可通过具有固有性质(称为“热质”)的可减少运行的CO_2来降低夏季过热的风险,并在冬季提供被动加热。当前用“导纳”来评估热质量,该“导纳”是元件与环境进行热交换的能力,并且基于比热容,热导率和密度。这项研究的目的是评估热性能,即密度,比热容和热导率对热质量的影响。该研究的目的是通过测量掺有不同百分比的GGBS(磨碎的高炉矿渣),PFA(粉状燃料灰),SF(硅粉)和RCA(再生粗粉)的混凝土混合物的热性能来进行实验室实验。聚合)。从这些测试中获得的结果将有助于评估此类热性能如何影响建筑系统中可持续混凝土构件的热导率以及热质量性能。

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