The construction of a building inevitably changes the microclimate in its vicinity. In particular near high-rise buildings, high wind velocities are often introduced at pedestrian level that can be experienced as uncomfortable or even dangerous. Therefore, the design of a building should not only focus on the building envelope and on providing good indoor environment,…
Journal of Thermal Envelope and Building Science Template
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About the Journal of Thermal Envelope and Building Science format
Journal of Thermal Envelope and Building Science is a peer-reviewed journal published by SAGE, covering Hygrothermal properties of building materials, Building Energy and Comfort Optimization, Wind and Air Flow Studies.
| Publisher | SAGE |
|---|---|
| Reference style | Author–year (Harvard) Author–year — (Smith, 2023) in the text Smith, A., Jones, B. and Lee, C. (2023) 'A representative article title', Journal of Thermal Envelope and Building Science, 12(3), pp. 45–58.
Formats any DOI in Journal of Thermal Envelope and Building Science style. No sign-up. |
| Publishes research in | Hygrothermal properties of building materials Building Energy and Comfort Optimization Wind and Air Flow Studies Building materials and conservation Masonry and Concrete Structural Analysis |
| ISSN | 1097-1963 |
| h-index | 32 |
| i10-index | 68 |
| Total citations | 3,665 |
| Top institutions publishing here | National Research Council Canada |
| Journal website | journals.sagepub.com |
| You get | A submission-ready PDF and the editable LaTeX source — ready to submit. |
Papers published in Journal of Thermal Envelope and Building Science per year
Citation impact of Journal of Thermal Envelope and Building Science by publication year
Citations each year’s papers have accumulated so far — the most recent years are still building up.
Most-cited papers in Journal of Thermal Envelope and Building Science
The precision of methods used for the determination of hygric properties of porous building materials was investigated. The study was performed in the framework of the EU-initiated HAMSTAD-project. Six laboratories measured the selected hygric properties of three porous building materials. While the most measured properties show acceptable agreement, yet, it was found that some of…
The standardised Glaser method for calculation, prediction and evaluation of moisture performance is considered as rarely applicable. The present state of knowledge, analytical as well as experimental, concerning heat, air and moisture demands updating of standards. This paper presents five numerical benchmark cases for the quality assessment of simulation models for one-dimensional heat, air and…
Moisture diffusivity is a transport property that is frequently used in the hygrothermal analysis of building envelope components. This property is de pendent on the local moisture content. The experiments that lead to the detailed in formation on the dependence of diffusivity on moisture content are often very so phisticated. However, two recent exercises, as…
The Boltzmann transformation method is used to determine the liquid water diffusivity from moisture content profiles as measured in a capillary water absorption experiment. An inter-laboratory comparison for analyzing the reliability of the determination method showed that the inaccuracy in the liquid water diffusivity is caused by scatter in the transformed data and by uncertainty…