Experimental determination of quality parameters thermal protection low-rise houses

Authors

  • Iev. L. Iurchenko Cand. Sc. (Tech.), Ass.-prof., Ukraine
  • O. O. Koval Cand. Sc. (Tech.), Ukraine
  • M. V. Savytskyi Dr. Sc., Prof., Ukraine
  • V. V. Danishevskyy Dr. Sc., Prof., Ukraine
  • A. S. Koval Applicant, Ukraine

Keywords:

quality parameters, impermeability, Blower Door Test, Thermal insulation shell, thermographing, thermal protection, energy-efficient house.

Abstract

Abstract. Relevance. One of the main problems the country is to ensure the energy efficiency of housing in all stages of the life cycle. The paper proposed and tested method of for controlling the parameters of thermal protection qualities of residential and public buildings under construction. As an example, consider the energy-efficient house series production OptimaHouse in Kyiv. Methodology. The purpose of this article is to research methods of testing quality parameters of the thermal protection of low-rise houses. The methodology is based on conducting a phased complex instrumental inspection: Blower Door test with simultaneous thermo graphing. In practice, it is proved that these activities will allow effective monitoring of compliance with the modern requirements of energy efficiency of buildings. Results. An test for leaks and thermal imaging photography of the real construction site. Scientific novelty and practical significance. Recommendations for checking quality parameters of thermal insulation envelope of energy efficient buildings. Offers and testing Technique of research the parameters of quality of low-rise buildings thermal protection afforded scientific and practical results that are characteristic of low-rise residential buildings and can be used in future design energy-efficient buildings.

Author Biographies

Iev. L. Iurchenko, Cand. Sc. (Tech.), Ass.-prof.

Department of Reinforce-Concrete and Stone Structures, State Higher Education Establishment “Prydniprovska State Academy of Civil Engineering and Architecture”, Chernyshevsky St. 24a, Dnipropetrovsk 49600, Ukraine

O. O. Koval, Cand. Sc. (Tech.)

Pridneprovsky Research and Educational Institute for Innovation Technology in Construction, State Higher Education Establishment “Prydniprovska State Academy of Civil Engineering and Architecture”, Chernyshevsky St. 24a, Dnipropetrovsk 49600

M. V. Savytskyi, Dr. Sc., Prof.

Department of Reinforce-Concrete and Stone Structures, State Higher Education Establishment “Prydniprovska State Academy of Civil Engineering and Architecture”, Chernyshevsky St. 24a, Dnipropetrovsk 49600, Ukraine

V. V. Danishevskyy, Dr. Sc., Prof.

Department of Structural Mechanics and Strength of Materials, State Higher Education Establishment “Prydniprovska State Academy of Civil Engineering and Architecture”, Chernyshevsky St. 24a, Dnipropetrovsk 49600, Ukraine

A. S. Koval, Applicant

Department of Reinforce-Concrete and Stone Structures, State Higher Education Establishment “Prydniprovska State Academy of Civil Engineering and Architecture”, Chernyshevsky St. 24a, Dnipropetrovsk 49600, Ukraine

References

Mhitarjan M.M. Jenergosberegajushhie tehnologii v zhilishhnom i grazhdanskom stroitel'stve [Energy conservation technologies in Civil Engineering]. – K.: Naukova dumka, 2000. – 420 pp.

Hajnrih G., Najork H., Nestler V. Teplonasosnye ustanovki dlja otoplenija i gorjachego vodosnabzhenija [Heat pumps for heating and water supply systems]. – M.: Strojizdat, 1985. – 351 pp.

Rej D., Makmajkl D. Teplovye nasosy [Heat pumps]. –M.: Jenergoizdat, 1982. – 224 pp.

Sistemy solnechnogo teplo- i hladosnabzhenija [Solar heat and cold supply systems] / Avezov R.R., Barskij-Zorin M.A., Vasil'eva I.M. i dr.; pod red. Je.V. Sarnackogo i S.A. Chistovicha. – M.: Strojizdat, 1990. – 328 pp.

Harchenko N.V. Individual'nye solnechnye ustanovki [Individual solar systems]. – M.: Jenergoatomizdat, 1991. – 208 pp.

DBN V.2.6-31: 2006. Teplova іzoljacіja budіvel' [Thermal insulation of buildings]. – K.: Ukrarhbudіnform, 2006. –65 pp.

DSTU-N B V.1.1-27:2010. Budіvel'na klіmatologіja [Civil Engineering Climatology]. – K.: Mіnregіonbud Ukraїni, 2011. – 123 pp.

Energy performance of buildings - Calculation of energy use for space heating and cooling, European Committee for Standardization, 2008.

Ievgenii Iurchenko, Olena Koval, Mykola Savytskyi and Karim Limam / Economic Feasibility Evaluation of Building Passive // Journal of Energy and Power Engineering Houses Volume 8, Number 6, June 2014 (Serial Number 79) 1047-1053. ISSN1934-8975 USA http://www.davidpublishing.org, www.davidpublishing.com.

Savytskyi M., Iurchenko Iev., Koval O., Babenko M. / Development of low-rise energy -efficient construction in Ukraine // ECCE-GSCE-WCCE Internetional Conferens Seismics-2014, #59. Tbilisi, Georgia, 14 p. 5-11 http://www.ecceengineers.eu/news/2014/59_Intl_Conf_Sei smic_design_papers.pdf

Iurchenko Iev.L. Development of the energy saving projects in the buildings of budget organizations on the basis of reinvestment. – Manuscript: 05.13.22 / Iurchenko Iev.L. .– Dnipropetrovsk, 2004. – 180p.

Koval O.O. Energy efficiency of low-rise residential buildings of architectural constructive systems. –Manuscript: 05.23.01. / Koval O.O.– Dnipropetrovsk, 2012. – 152p.

Iurchenko Iev. Economic feasibility of energy-efficient and passive house construction in Ukraine / Iurchenko Ie.L., Koval О.О., Savytskyi M.V. // Building, materials sciences, mechanic engineering: Collection of scientific papers Issue№68. – Dnipropetrovs’k, PSАES, 2013. - p. 462 – 468. http://pgasa.dp.ua/a/international %20conferences /eco/archive/vipusk_68_2013.pdf

Optimahouse [Электронный ресурс]/ Режим доступа: http://www.optimahouse.com.ua/ Optimahouse / [Electronic source]// Mode of access: http://www.optimahouse.com.ua/

CSN EN 13829 Thermal performance of building -Determination of air permeability of buildings - Fan pressurization method (ISO 9972:1996, modified)

DSTU B V.2.2-19:2007 Method for determination of air permeability of building envelope in field conditions – K.: Mіnregіonbud Ukraїni, 2008. – 22 pp.

Published

2015-08-31

Issue

Section

Innovative lifecycle technology of housing and civil, industrial and transportation purposes