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sinfonia:condensation_tool [2020/02/03 10:41] – created alangsinfonia:condensation_tool [2020/02/10 09:39] (current) alang
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   * Capillary suction, sorption coefficient, liquid transfer and moisture capacity of materials;   * Capillary suction, sorption coefficient, liquid transfer and moisture capacity of materials;
  
-  * Three- or two-dimensional moisture transport;• Air leakages through the various layers of the component;+  * Three- or two-dimensional moisture transport; 
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 +  * Air leakages through the various layers of the component;
  
   * External climate conditions as solar radiation, rainfall, wind exposure;   * External climate conditions as solar radiation, rainfall, wind exposure;
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   * **Assembly:** In this worksheet the designer inserts the structure, materials and hygrothermal data of the component to verify.   * **Assembly:** In this worksheet the designer inserts the structure, materials and hygrothermal data of the component to verify.
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 **The link below provides access to the full SINFONIA Condensation Tool report and instructions. **The link below provides access to the full SINFONIA Condensation Tool report and instructions.
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 {{ :picopen:sinfonia_d47_annex-b_condensation_tool_manual_phi.pdf |SINFONIA Condensation Tool Manual}} {{ :picopen:sinfonia_d47_annex-b_condensation_tool_manual_phi.pdf |SINFONIA Condensation Tool Manual}}
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 +----
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 +{{:picopen:sinfonia_logo_cmyk_hr.png?nolink&145 |}}
 +{{:picopen:eu_flagge.jpg?nolink&120 |}}
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 +//This article was written in the framework of the EU-funded project Sinfonia and is part of its [[http://alpsthu.bplaced.net/wordpress/set-of-solutions/|Set of Solutions]] giving insight in the experiences and lessons learned from a smart city project. \\
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 +This project has received funding from the European Union’s Seventh Programme for research, technological development and demonstration under grant agreement No 609019.// 
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sinfonia/condensation_tool.1580722913.txt.gz · Last modified: 2020/02/03 10:41 by alang