IMPROVEMENT OF ORGANIZATIONAL AND TECHNOLOGICAL SOLUTIONS FOR THE MODERNIZATION OF CONSTRUCTION ENTERPRISES GIVEN ENERGY-SAVING REQUIREMENTS

Authors

  • O. PIDODNIA Ukrainian State University of Science and Technologies, Educational and Scientifi c Institute “Prydniprovska State Academy of Civil Engineering and Architecture,” https://orcid.org/0009-0006-2156-0682
  • A. DVORNICHENKO Ukrainian State University of Science and Technologies, Educational and Scientifi c Institute “Prydniprovska State Academy of Civil Engineering and Architecture,” https://orcid.org/0009-0001-0287-4989
  • T. DANYLOVA Ukrainian State University of Science and Technologies, Educational and Scientifi c Institute “Prydniprovska State Academy of Civil Engineering and Architecture,” https://orcid.org/0000-0001-9319-0154
  • D. NECHEPURENKO Ukrainian State University of Science and Technologies, Educational and Scientifi c Institute “Prydniprovska State Academy of Civil Engineering and Architecture,” https://orcid.org/0000-0002-9292-4790
  • T. KRAVCHUNOVSKA Ukrainian State University of Science and Technologies, Educational and Scientifi c Institute “Prydniprovska State Academy of Civil Engineering and Architecture,” https://orcid.org/0000-0002-0986-8995

DOI:

https://doi.org/10.15407/scine22.03.095

Keywords:

construction, organizational and technological solutions, energy saving, BIM, INOVA analysis, sustainable development, , economic feasibility, environmental efficiency

Abstract

Introduction. One of the determining factors in shaping the directions for the development of construction infrastructure is the increase in the level of energy efficiency of enterprises. This factor is considered a necessary condition for sustainable development, for ensuring environmental and economic security, for facilitating integration into the European energy space, and for supporting the formation of an energy-independent national economy.
Problem Statement. The improvement of organizational and technological solutions for the reconstruction of construction enterprises is becoming increasingly relevant in the context of rising requirements for energy efficiency and environmental security. These conditions necessitate the search for scientifically substantiated approaches to the modernization of production facilities and technological processes.
Purpose. The purpose of this study is the development and scientific substantiation of effective organizational and technological solutions for the reconstruction of construction enterprises, taking into account contemporary requirements for energy efficiency, environmental safety, and economic feasibility, with the aim of increasing their competitiveness and ensuring sustainable development.
Materials and Methods. The research methodology includes a systematic and comparative analysis of scholarly research publications of 2020—2025. In addition, the study has applied BIM-based modeling, INOVA analysis of innovative solutions, the weighted coefficient method, and economic methods for eva luating investment efficiency. The empirical base of the study consists of technical and design documentation of buildings, as well as statistical data on actual energy consumption collected over several years.
Results. The study has demonstrated that the comprehensive implementation of energy-saving measures significantly improves the energy performance of construction enterprises. In particular, the obtained results have shown that electricity consumption may decrease by 30—35%, while thermal energy consumption may be reduced by 40—50%. Furthermore, the conducted INOVA analysis has revealed a high level of innovation potential in the proposed technological and organizational solutions.
Conclusions. The application of the proposed approaches makes it possible not only to reduce energy consumption
and operational costs, but also to increase the overall sustainability of construction enterprises. The results of the study can serve as a basis for the development of regulatory and methodological frameworks aimed at the energy modernization of industrial and construction facilities.

Downloads

Download data is not yet available.

References

Hoi, V. V. (2024). Intelligent Economic System of Construction Enterprises: Analytical and Practical Aspects. Scientific Works of the Interregional Academy of Personnel Management. Economic Sciences, 2(74), 25—30. https://doi.org/10.32689/2523-4536/74-3

Dymchenko, O., Raina, D. (2021). Features of the Competitiveness of Construction Enterprises in Ukraine. InterConf., 78, 7—16. https://doi.org/10.51582/interconf.7-8.10.2021.001 [in Ukraine].

Dmytrenko, A. (2023). Organizational and Economic Support for the Development of Construction Enterprises. Sci ence and Technology Today, 11(25), 267—273. https://doi.org/10.52058/2786-6025-2023-11(25)-267-273 [in Ukrai ne].

Palamarchuk, O., Petryshyna, S. (2023). Analysis of Factors of Competitiveness of Construction Enterprises of Ukraine. Economy and Society, 57, 7—10. https://doi.org/10.32782/2524-0072/2023-57-99 [in Ukraine].

Sadoviak, M. (2024). Essential Characteristics of Material and Technical Support of Construction Enterprises. Economy and Society, 69. https://doi.org/10.32782/2524-0072/2024-69-95

Serediuk, K. (2024). Social Guarantees in the Corporate Responsibility System of Construction Enterprises: Economic Mechanism of Provision. Bulletin of Sumy National Agrarian University, 3(99), 10—14. https://doi.org/10.32782/bsnau.2024.3.2

Seriohina, N. V., Khadzhikova, O. P. (2024). Supporting the Efficiency of Construction Enterprises in Unstable Conditions. Efficient Economy, 2. https://doi.org/10.32702/2307-2105.2024.2.75

Mamonov, K., Hoi, V., Kovalenko, L., Dmytrenko, A. (2023). Modern Tools for Ensuring the Development of Construction Enterprises. Scientific Innovations and Advanced Technologies, 12(26), 385—394. https://doi.org/10.52058/2786-5274-2023-12(26)-385-394

Yakushev, O. V., Bilan, Ye. V. (2024). Features of Managing the Activities of Construction Enterprises in a Post-Conflict Economy. Economics and Organization of Management, 2, 134—142. https://doi.org/10.31558/2307-2318.2024.2.12

Zhou, Z., Su, Y., Zheng, Zh., Wang, Yi. (2023). Analysis of factors of willingness to adopt intelligent construction tech no logy in high way construction enterprises. Scientific Reports, 13(1), 19339. https://doi.org/10.1038/s41598-023-46241-6

Pavelko, O., Lazaryshyna, I., Dukhnovska, L., Sharova, S., Oliіnyk T., Donenko, I. (2021). Construction develop ment and its impact on the construction enterprises financial results. Studies of Applied Economics, 39(3). https://doi.org/10.25115/eea.v39i3.4719

Mamonov, K., Prunenko, D., Hoi, V., Kovalenko, L. (2023). Defining the development of construction enterprises: Theoretical provisions. Collection of Scientific Research Papers of the State University of Infrastructure and Technologies. Section “Economics and Management,” 54, 63—71. https://doi.org/10.32703/2664-2964-2023-54-63-71

Khrustalev, B., Chudaikina, T., Kargin, A., Agapova, M., Belyakov, A. (2023). Development features of integ rated risk management system at construction enterprises. E3S Web of Conferences, 403, 02009. https://doi.org/10.1051/e3sconf/202340302009

Nguyen, X. H., Khanh Linh Nguyen, K. L. N., Nguyen, T. V. H., Nguyen, T. T. H. (2023). Driving factors for green innovation in Vietnamese construction enterprises. International Journal of Professional Business Review, 8(6), e02356. https://doi.org/10.26668/businessreview/2023.v8i6.2356

Dubinin, D. (2023). Digital transformation of Ukrainian construction and project enterprises: Obstacles and opportunities. Management of Development of Complex Systems, 56, 131—137. https://doi.org/10.32347/2412- 9933.2023.56.131-137

Zhang, T., Wang, H., Gao, Z., Zhang, A. (2023). Internal risk management analysis of brand construction of timehonored enterprises. Frontiers in Business, Economics and Management, 7(3), 108—109. https://doi.org/10. 54097/fbem.v7i3.5401

Kang, Z., Du, W., Tian, T. (2023). The reconstruction scheme of inland port shore power construction. Journal of Physics: Conference Series, 2520(1), 012022. https://doi.org/10.1088/1742-6596/2520/1/012022

Kolodyazhna, T., Vinnychenko, O. (2023). Integration of construction enterprises as a factor increasing their competitiveness. Market Infrastructure, 72. https://doi.org/10.32782/infrastruct72-16

Kondratiuk, Y. (2021). Strategic management of development of construction enterprises. Business Navigator, 2(63), 7—11. https://doi.org/10.32847/business-navigator.63-1

Madyda, A. (2023). Risk management of construction enterprises — theoretical approach. Communications of International Proceedings, 2023(4), Article ID 4115423. https://doi.org/10.5171/2023.4115423

Myrczek, J., Tworek, P. (2023). Risk management standardisation in Polish construction enterprises under uncertainty. Scientific Papers of Silesian University of Technology. Organization and Management Series, 184, 328—345. https://doi.org/10.29119/1641-3466.2023.184.16

Ozdamirova, L. (2023). Information construction of financial management at production enterprises. SHS Web of Conferences, 172, 02019. https://doi.org/10.1051/shsconf/202317202019

Zhang Wei1, Ding Zhaohui, Yang Guoyu, Xiong Zhonghao. (2021). Research on intelligent construction of hydropower enterprises. E3S Web of Conferences, 276, 01005. https://doi.org/10.1051/e3sconf/202127601005

Wen, Q., Kong, F. (2023). Research on the key path of green construction implemented by multi-subject cooperation in construction enterprises. Journal of Industry and Engineering Management, 1(1), 70—76. https://doi.org/10.62517/jiem.202303110

Downloads

Published

2026-06-17

How to Cite

PIDODNIA, O., DVORNICHENKO, A., DANYLOVA, T., NECHEPURENKO, D., & KRAVCHUNOVSKA, T. (2026). IMPROVEMENT OF ORGANIZATIONAL AND TECHNOLOGICAL SOLUTIONS FOR THE MODERNIZATION OF CONSTRUCTION ENTERPRISES GIVEN ENERGY-SAVING REQUIREMENTS. Science and Innovation, 22(3), 95–116. https://doi.org/10.15407/scine22.03.095

Issue

Section

The Scientific Basis of Innovation