Εμφανίζονται 1 - 8 Αποτελέσματα από 8 για την αναζήτηση '"потенціал енергоефективності"', χρόνος αναζήτησης: 0,51δλ Περιορισμός αποτελεσμάτων
  1. 1
    Academic Journal

    Συγγραφείς: Бугайчук, П.

    Συνεισφορές: Скляр, Радміла Вікторівна, Skliar, Radmila

    Περιγραφή αρχείου: application/pdf

  2. 2
    Academic Journal

    Συγγραφείς: Сомова, Г.

    Συνεισφορές: Постол, Юлія Олександрівна, Петренко, Костянтин Григорович

    Θεματικοί όροι: розвиток енергетичного сектора, "неатомний" шлях розвитку, потенціал енергоефективності

    Περιγραφή αρχείου: application/pdf

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  4. 4
    Academic Journal

    Πηγή: Technology Audit and Production Reserves

    Περιγραφή αρχείου: application/pdf

  5. 5
    Academic Journal

    Πηγή: Technology audit and production reserves; Том 6, № 5(32) (2016): Problems of macroeconomics and socio-economic development. Development of productive forces and regional economy; 36-41
    Technology audit and production reserves; Том 6, № 5(32) (2016): Питання макроекономіки та соціално-економічного розвитку. Розвиток продуктивних сил і регіональна економіка; 36-41
    Technology audit and production reserves; Том 6, № 5(32) (2016): Вопросы макроэкономики и социально-экономического развития. Развитие производительных сил и региональная экономика; 36-41

    Περιγραφή αρχείου: application/pdf

    Σύνδεσμος πρόσβασης: http://journals.uran.ua/tarp/article/view/87541

  6. 6
    Academic Journal

    Συνεισφορές: Вінницький національний технічний університет, Vinnytsia National Technical University

    Θέμα γεωγραφικό: Львів, Lviv

    Περιγραφή αρχείου: 48-62; application/pdf; image/png

    Relation: Theory and Building Practice, 2 (2), 2020; http://www.itp.nsc.ru/conferences/mzhz_2017/files/Section_02.pdf#page=16; https://www.iso.org/ru/standard/65711.html; https://www.htflux.com/en/free-calculation-tool-for-thermal-mass-of-building-components-iso-13786/; http://www.esru.strath.ac.uk/Documents/89/thermop_rep.pdf; Wang, J. J., Jing, Y. Y., Zhang, C. F., & Zhao, J. H. (2009). Review on multi-criteria decision analysis; aid in sustainable energy decision-making. Renewable and sustainable energy reviews, 13(9), 2263–2278.; Kheiri, F. (2018). A review on optimization methods applied in energy-efficient building geometry and; envelope design. Renewable and Sustainable Energy Reviews, 92, 897–920. doi:10.1016/j.rser.2018.04.080; Shimray, B. A., Singh, K. M., & Mehta, R. K. (2017). A survey of multi-criteria decision making technique; used in renewable energy planning. International Journal of Computer, 4523, 124–140.; Liu, S., Yang, Y., & Forrest, J. (2017). Grey data analysis. Springer Singapore, Singapore. doi:10(1007), 978–981.; Wang, J. J., Jing, Y. Y., Zhang, C. F., Zhang, X. T., & Shi, G. H. (2008). Integrated evaluation of distributed; triple-generation systems using improved grey incidence approach. Energy, 33(9), 1427–1437. doi:10.1016/j.energy.2008.04.008.; Hopfe, C. J., Augenbroe, G. L., & Hensen, J. L. (2013). Multi-criteria decision making under uncertainty in; building performance assessment. Building and environment, 69, 81–90. doi:10.1016/j.buildenv.2013.07.019.; Stazi, F. (2017). Thermal Inertia in Energy Efficient Building Envelopes. Butterworth-Heinemann. doi:10.1016/B978-0-12-813970-7.00001-7.; Bläsi, W. (2001). Bauphysik. Bibliothek des technischen Wissens. 3 Auflage. Haan: Verlag Europa Lehrmittel.; Ukrainian National Standard. DSTU B.V. 2.6-189: 2013. (2014). Methods of choosing insulation material for; insulation of buildings. Kyiv, Ukraine: Ministry of Regional Development, Construction and Housing and; Communal Services of Ukraine, (in Ukrainian).; Ukrainian National Standard. DSTU-N B. V. 2.6-190: 2013. (2014). An instruction on the estimated estimation of; heat resistance and heat recovery of fencing structures. Kyiv, Ukraine: Ministry of Regional Development; Construction and Housing and Communal Services of Ukraine, (in Ukrainian).; Filonenko, O. I., Yurin, O. I. (2015). Budivelna a teplofizyka ohorodzhuvalnykh konstruktsii budivel: navch.; posibnyk (Construction and Thermal Physics of Building Enclosures: A manual). Poltava: Poltavskyi natsionalnyi; tekhnichnyi universytet im. Yuriia Kondratiuka (Poltava: Poltava National Technical University named after Yuri; Kondratyuk), (in Ukrainian).; Osobennosti maloetazhnogo energoeffektivnogo ekologicheskogo stroitelstva v raznykh klimaticheskikh; zonakh (Features of low-rise energy-efficient ecological construction in different climatic zones). Retrieved from; http://www.itp.nsc.ru/conferences/mzhz_2017/files/Section_02.pdf#page=16 (in Russian).; Ukrainian Building Code. DBN V. 2.6-31: 2016. (2017). Thermal insulation of buildings. Kyiv, Ukraine; Ministry of Regional Development, Construction and Housing and Communal Services of Ukraine, (in Ukrainian).; Korshunov, O., Zuev, V. (2011). Vremya teplovoy inertsiii termicheskoye soprotivleniye sloistykh sten (Time of; thermal inertia and thermal resistance of multilayered walls). Energoresursosberezheniye i energoeffektivnost; (Energy saving and energy efficiency), 4(40), 23–26, (in Russian).; Saaty, T. L. (2009). (Prinyatiye resheniy pri zavisimostyakh i obratnіkh svyazyakh: Analiticheskiye seti: per. s; angl) (Decision-making with dependencies and inverse connections: Analytical networks: Translated from English).; Moscow: LIBROCOM Book House (in Russian).; Biks, Y., Ratushnyak, G., & Ratushnyak, O. (2019). Energy performance assessment of envelopes from; organic materials. Architecture Civil Engineering Environment. No. 3: 55–67. doi: 0.21307/ACEE-2019-036.; Tabunshchikov, Yu. A. Brodach, M. M. (2002). Matematicheskoe modelirovanie i optimizaciya teplovoj effektivnosti; zdanij (Mathematical modelling and optimization of thermal efficiency of buildings). Moscow: AVOK-PRESS (in; Russian).; ISO 13786:2017. Thermal performance of building components ‒ Dynamic thermal characteristics ‒ Calculation; methods. Retrieved from: https://www.iso.org/ru/standard/65711.html; A brief guide and free tool for the calculation of the thermal mass of building components. Retrieved from; Clarke, J. A., Yaneske, P. P., Pinney, A. A. The Harmonisation of Thermal Properties of Building Materials.; Retrieved from http://www.esru.strath.ac.uk/Documents/89/thermop_rep.pdf; Fareniuk, H. H. (2009). Osnovy zabezpechennia enerhoefektyvnosti budynkiv ta teplovoi nadiinosti; ohorodzhuvalnykh konstruktsii(Fundamentals of energy efficiency of buildings and thermal reliability of enclosing; structures). Kyiv: Hama-Prynt, 216. (in Ukrainian).; Saulles, T. D. (2012). Thermal mass explained.; Daniel, S. A. A., Pugazhenthi, R., Kumar, R., & Vijayananth, S. (2019). Multi objective prediction and; optimization of control parameters in the milling of aluminium hybrid metal matrix composites using ANN and; Taguchi-grey relational analysis. Defence Technology, 15(4), 545–556. doi:10.1016/j.dt.2019.01.001.; Sarpkaya, C., & Sabir, E. C. (2016). Optimization of the sizing process with grey relational analysis. Fibres; & Textiles in Eastern Europe, (1 (115)), 49–55. doi:10.5604/12303666.1172087.; Lin, Y., & Liu, S. (2004, October). A historical introduction to grey systems theory. In 2004 IEEE International; Conference on Systems, Man and Cybernetics(IEEE Cat. No. 04CH37583) (Vol. 3, pp. 2403–2408). IEEE.; Biks, Y. et al. (2019). Patent of Ukraine 130276. Kyiv: State Patent Office of Ukraine.; Kulichenko, I. I. (2013). Ekonomichna efektyvnist vykorystannia mistsevykh ekolohichnykh materialiv v; malopoverkhovomu budivnytstvi dostupnoho zhytla (Economic efficiency of using local environmental materials in; low-rise construction of affordable housing). Stroytelstvo. Materyalovedenye. Mashynostroenye. Seryia: Innovatsyonnye; tekhnolohyy zhyznennoho tsykla obiectov zhylyshchno-hrazhdanskoho, promyshlennoho i transportnoho naznachenyia; (Construction. Material science. Mechanical engineering. Series: Innovative technologies of the life cycle of object), 69, 257–264, (in Ukrainian).; Saaty, T. L. (2009). (Prinyatiye resheniy pri zavisimostyakh i obratnikh svyazyakh: Analiticheskiye seti: per. s; Application of AHP and GRA methods in Energy Efficiency Potential’s Assessment of Envelopes from Natural Materials / Yuriy Biks, Georgiy Ratushnyak, Olga Ratushnyak, Pavlo Ryapolov // Theory and Building Practice. — Lviv : Lviv Politechnic Publishing House, 2020. — Vol 2. — No 2. — P. 48–62.; https://ena.lpnu.ua/handle/ntb/56588

    Διαθεσιμότητα: https://ena.lpnu.ua/handle/ntb/56588

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