Advances in Hygrothermal Performance of Building Envelopes

Advances in Hygrothermal Performance of Building Envelopes PDF Author: Phalguni Mukhopadhyaya
Publisher:
ISBN: 9780803176478
Category : Buildings
Languages : en
Pages : 394

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Book Description
"Contains peer-reviewed papers that were presented at a symposium held October 26-27, 2016, in Orlando, Florida, USA. The workshop was sponsored by ASTM International Committee C16 on Thermal Insulation and Subcommittee C16.33 on Insulation Finishes and Moisture. "

Advances in Hygrothermal Performance of Building Envelopes

Advances in Hygrothermal Performance of Building Envelopes PDF Author: Phalguni Mukhopadhyaya
Publisher:
ISBN: 9780803176478
Category : Buildings
Languages : en
Pages : 394

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Book Description
"Contains peer-reviewed papers that were presented at a symposium held October 26-27, 2016, in Orlando, Florida, USA. The workshop was sponsored by ASTM International Committee C16 on Thermal Insulation and Subcommittee C16.33 on Insulation Finishes and Moisture. "

Advanced Building Envelope Components

Advanced Building Envelope Components PDF Author: Francesca Stazi
Publisher: Butterworth-Heinemann
ISBN: 0128169222
Category : Architecture
Languages : en
Pages : 168

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Book Description
Advanced Building Envelope Components: Comparative Experiments focuses on the latest research in innovative materials, systems and components, also providing a detailed technical explanation on what this breakthrough means for building exteriors and sustainability. Topics include a discussion of transparent envelope components, including intelligent kinetic skins, such as low-e coatings, high vs. low silver content in glass, solar control coatings, such as silver vs. niobium vs. tin, and more. In addition, opaque envelope components are also presented, including opaque dynamic facades, clay lining vs. plasterboard and nano clayed foams. Includes real case studies that explore, in detail, the behavior of different envelopes Presents laboratory tests on existing insulation (if any, through samples extracted on-site) to quantify actual performances Provides the tools and methods for comparing, selecting and testing materials and components for designing effective building envelopes Covers both transparent and opaque envelope components, as well as opaque dynamic facades

Whole Building Heat, Air and Moisture Transfer

Whole Building Heat, Air and Moisture Transfer PDF Author: Menghao Qin
Publisher: LAP Lambert Academic Publishing
ISBN: 9783843372220
Category :
Languages : en
Pages : 248

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Book Description
Buildings account for 35 percent of the world s energy use and a similar percentage of CO2 emissions. In order to ensure adequate energy supplies and to curtail the growth of CO2 emissions, it is essential that building energy consumption is significantly reduced. One way this can be achieved is through the introduction of sustainable building design enabled by innovative building simulation tools, for example the whole building heat, air and moisture (HAM) transfer model. The hygrothermal transfer between building envelopes and indoor air has a significant influence on the indoor environment and energy performance of buildings. However in most applications, building envelope designers attempt to predict the hygrothermal performance of an individual building element by uncoupling the system from interactions of the other envelope components to both indoor/outdoor environments. A more advanced building performance evaluation approach requires the direct coupling of all building envelope systems with HVAC systems and indoor/outdoor environments. The book will focus on the development of a coupled HAM model for whole building simulation.

Moisture Analysis and Condensation Control in Building Envelopes

Moisture Analysis and Condensation Control in Building Envelopes PDF Author: Heinz R. Trechsel
Publisher: ASTM International
ISBN:
Category : Dampness in buildings
Languages : en
Pages : 226

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Book Description
Annotation Contributors address typical moisture analysis methods and models and provide the technical background for understanding and applying moisture analysis. Chapters address weather data, hygrothermal properties of building materials, failure criteria, an overview of hygrothermal analysis methods (HAM), advanced numerical models for hygrothermal research, manual analysis tools, a numerical method for design, and a hygrothermal design tool for architects and engineers. Includes a glossary and instructions for using the CD-ROM, which includes two models of computer-based moisture analysis, as well as two programs to convert various properties of air. Annotation c. Book News, Inc., Portland, OR (booknews.com).

Advances in Building Technology

Advances in Building Technology PDF Author: M. Anson
Publisher: Elsevier
ISBN: 0080526632
Category : Technology & Engineering
Languages : en
Pages : 1844

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Book Description
This set of proceedings is based on the International Conference on Advances in Building Technology in Hong Kong on 4-6 December 2002. The two volumes of proceedings contain 9 invited keynote papers, 72 papers delivered by 11 teams , and 133 contributed papers from over 20 countries around the world. The papers cover a wide spectrum of topics across the three technology sub-themes of structures and construction, environment, and information technology. The variety within these categories spans a width of topics, and these proceedings provide readers with a good general overview of recent advances in building research.

Moisture and Buildings

Moisture and Buildings PDF Author: Arianna Brambilla
Publisher: Woodhead Publishing
ISBN: 0128210982
Category : Technology & Engineering
Languages : en
Pages : 201

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Book Description
One in three homes, on average, suffer from excessive dampness and mould proliferation, with significant health and economic impacts. The combination of new construction methodologies, stricter airtightness requirements and the changing social and cultural context that influences the way we live inside buildings has created unprecedented challenges for the built environment. In modifying indoor and outdoor environments and the building envelopes that serve as a filter between the two, we are changing the physical parameters of the ways in which buildings behave and respond to climatic stimuli. Understanding and predicting the way in which buildings and moisture may interact should be an important step in the design process, aiming to minimise possible negative long-term consequences. Understanding and predicting the way in which buildings and moisture may interact is, today more than ever, essential yet difficult, as the experience of the past has lost its applicability. Moisture-related issues never have a simple solution, since they involve multiple factors, including design, construction, maintenance, materials, climate and occupation pattern. Thus, while the topic is attracting growing attention among researchers, designers and practitioners, the pace with which actual change is occurring is still too slow. Moisture and Buildings provides a critical overview of current research, knowledge and policy frameworks, and presents a comprehensive analysis of the implications of moisture and the importance of accounting for it during the design process. It responds to the urgent need for a systematic organization of the existing knowledge to identify research gaps and provide directions for future developments. The ultimate goal is to increase awareness of the multifaceted implications of hygrothermal phenomena and promote integrated design processes that lead to healthier and more durable constructions. Presents advanced knowledge on hygrothermal processes and their interaction with buildings Integrates the three key areas of moisture transport and its impact on buildings, including durability, human health and comfort Considers the most useful computational tools for assessing moisture and building interactions Includes a section on the main European, American and Australian building codes Explains the risks of mold growth to human health, including growth models to assessment methods

Development of a Hygrothermal Simulation Tooil (HAM-BE) for Building Envelope Study

Development of a Hygrothermal Simulation Tooil (HAM-BE) for Building Envelope Study PDF Author: Qinru Li
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

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Book Description
To prevent the building envelope from moisture-related damages, it is essential to predict the building envelope's hygrothermal performance through a scientific approach, and further to improve the design and construction. In this thesis, an advanced numerical tool (HAM-BE) was developed to simulate the combined heat, air and moisture (HAM) transport in the building envelope. The state of the art knowledge of heat and mass transfer in building materials was applied. The major features of HAM-BE are: multi-dimensional and transient coupling of heat and moisture transport; air convection integrated in hygrothermal simulation through Darcy-Boussinesq approximation; heat transfer mechanisms of conduction and convection of sensible and latent heat; moisture transport mechanisms of vapor diffusion, capillary suction and air convection; material database of common building materials in North America; experimental settings or hourly weather data as boundary conditions; and setting moisture loading inside the materials or along the surfaces of the building envelope's hidden or exposed components to simulate the wetting process. A commercial finite element solver was chosen to solve the governing partial differential equations (PDEs) of hygrothermal transport. This approach provided building science researchers the flexibility to build, modify, and maintain their modeling work efficiently. Validation of HAM-BE included inter-model comparison with benchmarking cases of the HAMSTAD project and comparison between numerical simulation with data of the Collaborative Research and Development (CRD) project measured by fellow students under the supervision of Drs Fazio and Rao. Through validation work, HAM-BE was proven to have great potential as an accurate and reliable research tool for the building envelope study. As the extension of the CRD investigation, parametric study was carried out to estimate the drying performance of wood-frame walls under the climatic conditions of Montreal and Vancouver. It is demonstrated that the climate condition has the most significant influence to the drying process of the wet components in wall assemblies. The drying process occurs mainly in the summer season, and is largely restrained in the winter season. To improve outward drying, the cladding materials should have high vapor permeance, especially the sheathing membrane. The sheathing board with higher vapor permeance also facilitates drying. Under the investigated climates, the polyethylene vapor barrier at the warm side of the wall is not beneficial, rather restricts the possibility of inward drying.

Building Thermal Envelope

Building Thermal Envelope PDF Author: Jorge de Brito
Publisher: MDPI
ISBN: 3039285181
Category : Technology & Engineering
Languages : en
Pages : 244

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Book Description
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.

Advanced Computational Methods and Experiments in Heat Transfer XII

Advanced Computational Methods and Experiments in Heat Transfer XII PDF Author: B. Sundén
Publisher: WIT Press
ISBN: 1845646029
Category : Technology & Engineering
Languages : en
Pages : 377

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Book Description
Containing papers presented at the twelfth in a series of successful international conferences on Advanced Computational Methods and Experiments in Heat Transfer, this book covers the latest developments in this important field. Heat Transfer plays a major role in emerging application fields such as sustainable development and the reduction of greenhouse gases, as well as micro- and nano-scale structures and bio-engineering. Typical applications include heat exchangers, gas turbine cooling, turbulent combustion and fires, electronics cooling, melting and solidification. The nature of heat transfer problems is complex, involving many different simultaneously occurring mechanisms (e.g., heat conduction, convection, turbulence, thermal radiation. phase change). Their complexity makes it imperative that we develop reliable and accurate computational methods to replace or complement expensive and time-consuming experimental trial and error work. Tremendous advances have been achieved during recent years due to improved numerical solutions of non-linear partial differential equations and more powerful computers capable of performing efficient and rapid calculations. Nevertheless, to further progress, it will also be necessary to develop theoretical and predictive computational procedures--both basic and innovative--and in applied research. Accurate experimental investigations are needed to validate the numerical calculations. The book includes such topics as: Heat Transfer in Energy Producing Devices; Heat Transfer Enhancement; Heat Transfer Problems; Natural and Forced Convection and Radiation; Multiphase Flow Heat Transfer; Modelling and Experiments.

Advanced Computational Methods and Experiments in Heat Transfer XI

Advanced Computational Methods and Experiments in Heat Transfer XI PDF Author: Bengt Sundén
Publisher: WIT Press
ISBN: 184564462X
Category : Technology & Engineering
Languages : en
Pages : 354

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Book Description
.".. Eleventh International Conference on Advanced Computational Methods and Experimental Measurements in Heat Transfer and Mass Transfer held in Tallinn, Estonia in 2010"--Pref.