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Lightweight Concrete containing Phase Change Materials (PCMs): A Numerical Investigation on the Thermal Behaviour of Cladding Panels

机译:包含相变材料(PCM)的轻质混凝土:覆面板热行为的数值研究

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摘要

Buildings use 40% of the total European Union (EU) energy consumption and generate 36% of the Union’s CO 2 emissions. Indeed, according to U.S. Department of Energy (DoE) estimates the building envelope typically impacts 57% of a building’s thermal loads. More than 20% of the energy consumed in the EU literally flows out of building envelopes and with a similar iimpact in terms of greenhouse gases. Hence claddings are a key mechanism by which to address the decarbonisation of the European economy by 2050, where the challenging objective of reducing CO2 emissions by at least 80%, and energy consumption by as much as 50%, must be met. Innovative concepts for new building materials which also increase thermal inertia were proposed in the E4iBuildings project. E4iBuildings aimed to develop and assess an innovative concrete lightweight aggregates containing embedded Phase Change Materials (PCMs). This concrete may be used to manufacture innovative cladding systems (wall panels and blockwork).
机译:建筑物使用欧盟总能耗的40%,并产生欧盟CO 2排放量的36%。实际上,据美国能源部(DoE)估计,建筑物的围护结构通常会影响建筑物57%的热负荷。欧盟消耗的能源中有20%以上实际上是从建筑围护结构中流出的,并且对温室气体的影响相似。因此,覆层是解决2050年欧洲经济脱碳的关键机制,在这一机制中,必须实现将二氧化碳排放量减少至少80%,将能源消耗减少50%的艰巨目标。 E4iBuildings项目中提出了新的建筑材料的创新概念,这些概念也增加了热惯性。 E4iBuildings旨在开发和评估包含嵌入式相变材料(PCM)的创新混凝土轻质骨料。这种混凝土可用于制造创新的覆层系统(墙板和砌块)。

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