E (Seville). the Eduardo cities, we cover a of Construction Sciences, climates of Spain. CEPCO, and AICIA [63]. In cases exactly where the layer of a building element has a variable thickness (e.g., concrete using a slope around the flat roof), an typical thickness has been Table two. Traits ofsimulation model. The creating was situated and simulated inside a cold regarded in the the construction method inside the facade enclosure. climate (Soria) and a warm climate (Seville). With these two cities, we cover a large element SEVILLA SORIA on the diverse climates UValue: 0.54 W/m2 K of Spain. UValue: 0.36 W/m2 K Tables 2 and three detail the materials used inside the fa de and roof cladding in the Density Conductivity Density Conductivity Material Thickness developing, collectively using the required information for the simulations (thickness, density reference (m) (kg/m3 ) (W/m ) (kg/m3 ) (W/m ) and conductivity). The material corresponding to each and every enclosure to be AVE5688 Technical Information changed in Singlelayer cement mortar 0.015 1900 1.three 1900 1.3 subsequent simulations is highlighted in green to compare the outcomes obtained. No Perforated ceramic brick 0.115 900 0.five 900 0.5 adjustments have been produced in the basement in get in touch with together with the ground, but given that its transmittance Cement mortar plastering 0.01 1700 1 1700 1 is very important because it 1.two affects the values obtained inside the simulations, you will need to Nonventilated air chamber 0.04 0.22 1.two 0.22 Mineral wool 0.03/0.05 45 0.022 45 0.022 mention its composition. This will likely be Reveromycin A custom synthesis created up of the following layers: ceramic flooring, Laminated gypsum board 0.015 900 0.25 900 0.25 cement mortar, extruded polystyrene, unidirectional slab, and ventilated air chamber. The 2K in Seville and 0.61 W/m2K in Soria. transmittances obtained are 0.75 W/mTable 3. Qualities with the building system within the flat roof. Table 2. Qualities of your building program in the facade enclosure. SEVILLA SORIA SEVILLA SORIA UValue: 0.41 W/m2 K UValue: 0.34 W/m2 K Material(m) (kg/m ) Ceramic flooring 0.01 2400 Singlelayer cement mortar 0.015 1900 Gripping cement mortar 0.01 1700 Cement mortar 0.03 1700 Perforated ceramic brick 0.115 900 Extruded polystyrene (XPS) 0.04/0.055 35 Cement mortar plastering 0.01 1700 Waterproofing. Bituminous sheet 0.01 2100 Nonventilated air chamber 0.04 1.2 Lightened slope mortar with 0.12 700 Mineral clay wool 0.03/0.05 45 expanded Unidirectional concreteboard 0.30 1110 Laminated gypsum slab 0.015 900 Nonventilated air chamber 0.15 1.2 0.560 1.two Laminated gypsum board Table three. Traits on the building method within the flat roof. 900 0.015 900 0.MaterialThickness (m) ThicknessUValue: 0.54 W/m2K Density Conductivity Density three ) Conductivity (kg/m (W/m ) (kg/m3) (W/m ) 2400 1.900 1900 1.three 1700 1.000 1.000 9001700 0.5 1700 35 10.034 2100 0.700 1.two 0.22 0.220 45 700 0.022 0.9375 9001110 0.UValue: 0.36 W/m K Density Conductivity Density3 ) Conductivity (kg/m (W/m )(W/m ) 1.900 1.three 1.000 1.000 0.five 0.034 1 0.700 0.22 0.220 0.022 0.9375 0.0.560 0.MaterialSEVILLA SORIA Tables 2 and three detail the supplies used in the fa de and roof cladding with the reference UValue: 0.41 W/m2K UValue: 0.34 W/m2K developing, collectively with all the needed information for the simulations (thickness, density and Thickness Density Conductivity Density Conductivity conductivity). The material corresponding to every single enclosure to become changed in subsequent (m) (kg/m3) to evaluate the results obtained.3)No alterations were produced (W/m ) (kg/m (W/m ) simulations is highlighted in greenA.
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