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Thermal Performance Of An Ekosea Design Double Envelope House
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Book Synopsis Thermal Performance of an Ekose'A-design Double-envelope House by : H. T. Ghaffari
Download or read book Thermal Performance of an Ekose'A-design Double-envelope House written by H. T. Ghaffari and published by . This book was released on 1981 with total page 190 pages. Available in PDF, EPUB and Kindle. Book excerpt:
Book Synopsis Building Thermal Envelope by : Jorge de Brito
Download or read book Building Thermal Envelope written by Jorge de Brito and published by MDPI. This book was released on 2020-03-27 with total page 244 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book results from a Special Issue published in Energies, entitled “Building Thermal Envelope". Its intent is to identify emerging research areas within the field of building thermal envelope solutions and contribute to the increased use of more energy-efficient solutions in new and refurbished buildings. Its contents are organized in the following sections: Building envelope materials and systems envisaging indoor comfort and energy efficiency; Building thermal and energy modelling and simulation; Lab test procedures and methods of field measurement to assess the performance of materials and building solutions; Smart materials and renewable energy in building envelope; Adaptive and intelligent building envelope; and Integrated building envelope technologies for high performance buildings and cities.
Book Synopsis Our Home by : National Renewable Energy Laboratory (U.S.)
Download or read book Our Home written by National Renewable Energy Laboratory (U.S.) and published by . This book was released on 1994 with total page 108 pages. Available in PDF, EPUB and Kindle. Book excerpt:
Book Synopsis Thermal Performance of the Building Envelope by : Gianpiero Evola
Download or read book Thermal Performance of the Building Envelope written by Gianpiero Evola and published by . This book was released on 2024-09-12 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: The correct design of the building envelope, including an informed choice of materials and their thermal properties, is a key requisite to conjugate energy efficiency, the durability of the envelope, and the indoor microclimate. Firstly, this process involves a strategic selection of building materials based on their thermal properties and performance. Designers should then adopt a multi-scale approach, both evaluating the thermal performance of individual envelope components and optimizing their overall energy efficiency. This activity should be assisted by reliable software tools that are also able to simulate advanced envelope solutions and must be complemented by effective and original evaluation methods to identify the best performing solution. In situ and laboratory measurements are recommended if possible since they can significantly improve the accuracy of the analysis. The following reprint presents advanced research and methodologies regarding the above-mentioned topics, ranging from the thermal performance of the building envelope to the energy optimization of buildings and the integration of renewable energies in the building envelope.
Book Synopsis Performance of 8 Cold-Climate Envelopes for Passive Houses by : Rolf Jacobson
Download or read book Performance of 8 Cold-Climate Envelopes for Passive Houses written by Rolf Jacobson and published by GRIN Verlag. This book was released on 2012-09-10 with total page 162 pages. Available in PDF, EPUB and Kindle. Book excerpt: Master's Thesis from the year 2011 in the subject Art - Architecture / History of Construction, grade: none, University of Minnesota - Twin Cities (College of Design), language: English, abstract: Exterior envelopes for Passive Houses in very cold climates have not been developed, tested, and used as extensively as those in more mild climates such as central Europe. The purpose of this investigation was to push that development further by testing and comparing the performance of a variety of North American and Scandinavian envelope types that have been used in limited numbers for Passive Houses in those regions. A group of eight envelopes were selected and tested with a number of software analyses: Athena life cycle analysis, WUFI hygrothermal modeling, and THERM and EN ISO 6946 2-D U-value calculations for thermal bridging. Finally, the Passive House Planning Package (PHPP) was used to confirm that the envelopes met Passive House energy performance requirements in a very cold climate using a basic passive solar house design. Although significant variation was found in the performance of these eight envelope types, almost all of them were found capable of meeting the energy efficiency and thermal bridging requirements of the Passive House certification in a very cold climate, while maintaining moisture safety, durability, and significant life-cycle energy and carbon savings. These findings demonstrate that even in cold climates, a variety of envelope types can be used successfully for certified Passive Houses. Envelope types: 1) Advanced 2x6 framing24” on center with interior cross strapping and exterior insulation, insulated with mineral wool, 2) Advanced 2x6 framing24” on center, insulated with high-density spray polyurethane foam and exterior rigid foam, 3) Double 2x4 stud wall with studs 16” on center, insulated with blown cellulose, 4) I-joist (TJI) balloon framing 24” on center, insulated with blown fiberglass, 5) Insulated concrete form wall (ICF), using integral rigid EPS foam insulation, 6) Concrete block wall, insulated with exterior mineral wool, 7) Massivtre/Structural engineered panel (SEP), insulated with exterior rigid foam, and 8) Structural insulated panel (SIP), using integral EPS rigid foam insulation. For comparison, a base option was also studied: Standard 2x6 framing 16” on center with fiberglass batt insulation. See Appendix for diagrams of each envelope.
Book Synopsis Thermal Performance Analysis of a High-mass Residential Building by : Michael Whitman Smith
Download or read book Thermal Performance Analysis of a High-mass Residential Building written by Michael Whitman Smith and published by . This book was released on 2001 with total page 5 pages. Available in PDF, EPUB and Kindle. Book excerpt:
Book Synopsis Thermal Inertia in Energy Efficient Building Envelopes by : Francesca Stazi
Download or read book Thermal Inertia in Energy Efficient Building Envelopes written by Francesca Stazi and published by Butterworth-Heinemann. This book was released on 2017-09-14 with total page 374 pages. Available in PDF, EPUB and Kindle. Book excerpt: The design and construction of the appropriate building envelope is one of the most effective ways for improving a building's thermal performance. Thermal Inertia in Energy Efficient Building Envelopes provides the optimal solutions, tools and methods for designing the energy efficient envelopes that will reduce energy consumption and achieve thermal comfort and low environmental impact. Thermal Inertia in Energy Efficient Building Envelopes provides experimental data, technical solutions and methods for quantifying energy consumption and comfort levels, also considering dynamic strategies such as thermal inertia and natural ventilation. Several type of envelopes and their optimal solutions are covered, including retrofit of existing envelopes, new solutions, passive systems such as ventilated facades and solar walls. The discussion also considers various climates (mild or extreme) and seasons, building typology, mode of use of the internal environment, heating profiles and cross-ventilation Experimental investigations on real case studies, to explore in detail the behaviour of different envelopes Laboratory tests on existing insulation to quantify the actual performances Analytical simulations in dynamic conditions to extend the boundary conditions to other climates and usage profiles and to consider alternative insulation strategies Evaluation of solutions sustainability through the quantification of environmental and economic impacts with LCA analysis; including global cost comparison between the different scenarios Integrated evaluations between various aspects such as comfort, energy saving, and sustainability