2019
DOI: 10.1016/j.enbuild.2019.109395
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Thermal energy storage characterization of cementitious composites made with recycled brick aggregates containing PCM

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Cited by 41 publications
(22 citation statements)
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“…For each mixture and/or sample, the complete phase change of the paraffin was always fully occurring, meaning that all PCMs were in their final state at the end of each heating or cooling test. This is also shown in Figure 3 where the center of the spheres at the end of each cooling test has a temperature less than 10 • C and under heating close to 50 • C, while the melting points range between 21-26 • C. For a thorough discussion on the present experimental data, with emphasis on the DSC analyses, conductivity measurements and DKK tests, reference is made to Mankel et al 2019 [28].…”
Section: Thermal-energy Storage Dkk Tests In Spherical Samplesmentioning
confidence: 57%
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“…For each mixture and/or sample, the complete phase change of the paraffin was always fully occurring, meaning that all PCMs were in their final state at the end of each heating or cooling test. This is also shown in Figure 3 where the center of the spheres at the end of each cooling test has a temperature less than 10 • C and under heating close to 50 • C, while the melting points range between 21-26 • C. For a thorough discussion on the present experimental data, with emphasis on the DSC analyses, conductivity measurements and DKK tests, reference is made to Mankel et al 2019 [28].…”
Section: Thermal-energy Storage Dkk Tests In Spherical Samplesmentioning
confidence: 57%
“…All mixtures were prepared according to EN 196-1 [27]. Recycled bricks (labelled "SB") and high porosity Poroton®fired-clay blocks (labelled "PB") have been considered [28]. These building materials, processed in the form of medium/coarse aggregates and provided by a local company (SHW GmbH, Messel, Germany), were used as carriers (containers) for storing a predefined volume of PCM.…”
Section: Overview Of the Experimental Test Datamentioning
confidence: 99%
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“…The enthalpy change (at both sensible and latent stage), dH(T), of a sample, can be evaluated by integrating the heat flow registered during the DSC measurements. It can be assumed that a small variation of enthalpy dH (or the specific one, dh) is equal to a small amount of heat dQ (or the specific one, dq) added/released [42,43]. This is valid for those processes characterized at constant pressure, as it happens during DSC experiments.…”
Section: Dynamic Dsc Methods and Evaluation Of Tes Parametersmentioning
confidence: 99%