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Other Articles by Authors

Nada Zdrazilova
Denisa Donova



Authors and WSEAS

Nada Zdrazilova
Denisa Donova


WSEAS Transactions on Environment and Development


Print ISSN: 1790-5079
E-ISSN: 2224-3496

Volume 13, 2017

Notice: As of 2014 and for the forthcoming years, the publication frequency/periodicity of WSEAS Journals is adapted to the 'continuously updated' model. What this means is that instead of being separated into issues, new papers will be added on a continuous basis, allowing a more regular flow and shorter publication times. The papers will appear in reverse order, therefore the most recent one will be on top.


Volume 13, 2017



The Applicability of Probabilistic Calculation Methods in Building Thermal Technology and Energetics

AUTHORS: Nada Zdrazilova, Denisa Donova

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ABSTRACT: The paper deals with the possibilities of using probabilistic calculation methods for the assessment of structures in building thermal technology and energetics. The subject is particularly the performance of individual probabilistic calculation methods that can be used for this purpose and their basic principles. Following are then examples of these calculations used in practice.

KEYWORDS: probability calculation methods, building thermal technology, energetics, condensation, surface temperature, solar systems, solar gains

REFERENCES:

[1] R. Cajka, M. Krejsa, Measured data processing in civil structure using the DOProC method. Advanced Materials Research, Vol. 859, 2014, pp. 114-121.

[2] P. Janas, M. Krejsa, Statistical Dependence of Input Variables in DOProc Method. Transactions of the VŠB – Technical University of Ostrava, Civil Engineering Series, vol. 12, 2012, pp. 243-252.

[3] P. Janas, M. Krejsa, V. Krejsa, Structural reliability assessment using a Direct Determined Probabilistic Calculation. In: Proceedings of the 12th International Conference on Civil, Structural and Environmental Engineering Computing. 2009, 20 p.

[4] T. Bobinska, M. Buike, A. Buikis, H. Hee Cho, Transient Heat Transfer with Partial Boiling in System with Double Wall and Double Fins. WSEAS Transactions on Heat and Mass Transfer, Vol. 9, 2014, pp. 111-120.

[5] M. Krejsa, P. Janas, V. Krejsa, Software Application of the DOProC Method, International Journal of Mathematics and Computers in Simulation, vol. 8. (2014) pp. 121-126 (6 p), ISSN: 1998-0159.

[6] Azher M. Abed, K. Sopian, M. A. Alghoul, Ali Najah Al-.Shamani, Mohdhafidz Ruslan, Sohif Mat, Parametric Study of Single Effect Combined Absorption-Ejector Cooling System. WSEAS Transactions on Heat and Mass Transfer, Vol. 9, 2014, pp. 95-101.

[7] H. Lahuta, I. Skotnicova, Dynamic thermal performance of building structures in experimental lightweight timber-frame passive house. In: Proceedings of 13th SGEM GeoConference on Nano, Bio And Green – Technologies For A Sustainable Future, 2013, pp. 403-410.

[8] Ivan V. Kazachkov, Heat Transfer and Dynamics of the Droplet on a Superheated Surface. WSEAS Transactions on Heat and Mass Transfer, Vol. 7, Issue 2, 2012, pp. 47- 57.

[9] S. Thelandersson, T. Isaksson, Mould resistance design (MRD) model for evaluation of risk for microbial growth under varying climate conditions. Building and Environment, vol. 65, 2013, pp. 18-25.

[10] M. Krejsa, P. Janas, R. Cajka, Using DOProC method in structural reliability assessment. Applied Mechanics and Materials, vol. 300- 301, 2013, pp. 860-869.

[11] L. Kucerova, M. Cernikova, B. Hruba, Thermal technical assessment of selected constructions of wooden houses. Applied Mechanics and Materials, vol. 470, 2013, pp. 988-991.

[12] H.J. Moon, G.L.M. Augenbroe, Towards a practical mould growth risk indicator. Building Services Engineering Research and Technology, vol. 25, Issue 4, 2004, pp. 317- 326.

WSEAS Transactions on Environment and Development, ISSN / E-ISSN: 1790-5079 / 2224-3496, Volume 13, 2017, Art. #54, pp. 524-534


Copyright © 2017 Author(s) retain the copyright of this article. This article is published under the terms of the Creative Commons Attribution License 4.0

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