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Titlebook: Drying and Wetting of Building Materials and Components; J.M.P.Q. Delgado Book 2014 Springer International Publishing Switzerland 2014 Bui

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Moisture Transfer Kinetics in Building Materials and Components: Modeling, Experimental Data, Simullding and the environment. First order mathematical models can describe satisfactory phenomena like capillary rise and drying kinetics. Their advantages lie on the fact that they are general and include parameters with physical meaning. These parameters quantify the environment effect (temperature,
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Wetting and Drying Kinetics of Building Materials,d environment, which is determined by the drying and wetting rate of masonry. So, the moisture content is not only determined by the water that is absorbed by the material, but also by the amount of water that is evaporated under favourable conditions, which is described by the drying process. This
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Pore Structure Parameters and Drying Rates of Building Materials,ns of the diffusion equation the moisture transport parameters of the materials were identified from the experimental data and modelled in relation to the parameters of their pore structure. The capillary models of moisture diffusivity based on the pore size distribution of given material were used
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A Review of Drying Theory and Modelling Approaches, include the traditional continuum models as well as pore scale techniques such as direct simulations or pore network models. Overviews on some related problem such as the combined problem of evaporation, salt transport and crystallization are also given. The analysis of the current state of the art
发表于 2025-3-24 11:46:01 | 显示全部楼层
Cost Effective and Energy Efficient Control of Indoor Humidity in Buildings with Hygroscopic Buildials. This chapter presents methods for moderating indoor humidity levels using hygroscopic materials, in the form of: (1) hygroscopic building materials, (2) a desiccant coated air-to-air energy wheel and (3) a new concept ceiling panel with a vapour permeable surface. Simulation studies in an apart
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Risk of Condensation in Mechanically Attached Roof Systems in Cold U.S. Climate Zones,y in cold climate zones, depending on their specific assembly. A white exterior surface, so-called “cool roof”, applied to decrease cooling loads and to save energy, increases the condensation risk due to lower energy gains at day time. The nightly overcooling phenomena will be intensified and leads
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2194-9832 variety of scientific and engineering disciplines..The book is divided in several chapters that intend to be a resume of the current state of knowledge for benefit of professional colleagues..978-3-319-35748-5978-3-319-04531-3Series ISSN 2194-9832 Series E-ISSN 2194-9840
发表于 2025-3-25 00:38:36 | 显示全部楼层
Christine Mayer,Adelina Arredondo of its thick walls with heterogeneous composition where the traditionally techniques era sometimes ineffective or too expensive and that was the reason why it was decided to developed a new way to control it. In this work it is proposed to present two completely different applications of the “Wall
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