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  • Search: subject:"Thermal diffusivity"
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Thermal diffusivity 5 Phase change material 3 Thermal conductivity 3 Cold start 1 Differential scanning calorimetry 1 Energy storage 1 Finite difference method 1 Ground temperature 1 Heat transfer 1 Herringbone graphite nanofiber 1 Homogeneous soil 1 Method of monotonous heating 1 Multilayered soil heat distribution 1 PEM fuel cells 1 Pumice 1 Statistical thermodynamics 1 Thermal boundary resistance 1 Thermal energy storage 1 Thermal rock properties 1 Thermophysical properties 1 Time-spatial variable thermal diffusivity 1 Transient plane source 1 n-Alkane 1
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Undetermined 6
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Article 6
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Undetermined 6
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Fleischer, Amy S. 2 Chazallon, Cyrille 1 Khayet, M. 1 Kleiman, Jacob 1 Li, Xianguo 1 Lin, Jian 1 Litovsky, Efim 1 Manen, Saskia M. van 1 Nikoosokhan, Saeid 1 Nowamooz, Hossein 1 Ortiz de Zárate, J.M. 1 O’Connor, William E. 1 Shakhshir, Saher 1 Vélez, C. 1 Wallin, Erin 1 Warzoha, Ronald 1 Warzoha, Ronald J. 1 Weigand, Rebecca 1 Weigand, Rebecca M. 1 Wemhoff, Aaron P. 1 Zamel, Nada 1
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Applied Energy 4 Renewable Energy 2
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RePEc 6
Showing 1 - 6 of 6
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Temperature-dependent thermal properties of a paraffin phase change material embedded with herringbone style graphite nanofibers
Warzoha, Ronald J.; Weigand, Rebecca M.; Fleischer, Amy S. - In: Applied Energy 137 (2015) C, pp. 716-725
thermal conductivity, volumetric heat capacity and thermal diffusivity of HGNF/PCM nanocomposites are obtained as a function …
Persistent link: https://www.econbiz.de/10011116046
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Temperature-dependent thermal properties of solid/liquid phase change even-numbered n-alkanes: n-Hexadecane, n-octadecane and n-eicosane
Vélez, C.; Khayet, M.; Ortiz de Zárate, J.M. - In: Applied Energy 143 (2015) C, pp. 383-394
The thermal conductivity (λ) and thermal diffusivity (aT) of the solid/liquid phase change linear n-alkanes were … density of the n-alkanes at liquid state was also measured at different temperatures and their thermal diffusivity was …
Persistent link: https://www.econbiz.de/10011208432
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Finite difference modeling of heat distribution in multilayer soils with time-spatial hydrothermal properties
Nowamooz, Hossein; Nikoosokhan, Saeid; Lin, Jian; … - In: Renewable Energy 76 (2015) C, pp. 7-15
difference method while its thermal diffusivity varies with time and depth. First, the input parameters such as water content … estimate thermal properties of soil such as thermal conductivity and thermal diffusivity of multilayered soil. Second, finite … nonhomogeneous soils are almost similar at average value of thermal diffusivity where hydrothermal characteristics of each soil layer …
Persistent link: https://www.econbiz.de/10011189956
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Thermal property prediction and measurement of organic phase change materials in the liquid phase near the melting point
O’Connor, William E.; Warzoha, Ronald; Weigand, Rebecca; … - In: Applied Energy 132 (2014) C, pp. 496-506
thermal diffusivity of the PCM in both solid and liquid phases is crucial. This study addresses the existing gaps in … thermal diffusivity of both alkanes and unsaturated acids. Knowledge of the BPP will enable researchers to explore the …
Persistent link: https://www.econbiz.de/10010930637
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Ground temperature profiles and thermal rock properties at Wairakei, New Zealand
Manen, Saskia M. van; Wallin, Erin - In: Renewable Energy 43 (2012) C, pp. 313-321
thermal diffusivity, volumetric heat capacity and thermal conductivity, whose mean values based on data from August 2010–April …
Persistent link: https://www.econbiz.de/10011044565
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Measurement of in-plane thermal conductivity of carbon paper diffusion media in the temperature range of −20°C to +120°C
Zamel, Nada; Litovsky, Efim; Shakhshir, Saher; Li, Xianguo - In: Applied Energy 88 (2011) 9, pp. 3042-3050
paper GDL was determined using thermal diffusivity measurements for a temperature range from −20 to +120°C and four Teflon … samples, the thermal conductivity lies in the range of 10.1–14.7W/mK. Finally, empirical relations for the thermal diffusivity …
Persistent link: https://www.econbiz.de/10011041436
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