NATIONAL UNIVERSITY OF ARCHITECTURE AND CONSTRUCTION OF ARMENIA

University with a 100-Year History

State-Funded Programs

“INFRASTRUCTURE PRESERVATION AND DEVELOPMENT” GRANT PROGRAMS, IMPLEMENTED BY A BASE FUNDING OF SCIENTIFIC AND SCIENTIFIC-TECHNICAL ACTIVITIES

  1. “Preservation and Development of Scientific-Research Laboratory for Construction and Urban Economy” Program  supervisor: Y. Vardanyan

The program is aimed at carrying out scientific-research activities and projects of practical value at an international level in the field of Civil Engineering, particularly in the fields of water resource management, transport infrastructure and roads, earthquake engineering, new generation composite construction materials, items and structures, technology and organization of construction production, engineering geodesy, as well as heat and gas supply and ventilation. Within the framework of the program, fundamental and applied research is carried out, addressing the sectoral issues, which are considered a priority for the country.

  1. “Preservation and Development of Scientific-Research Laboratory for Urban Planning and Architecture” Program  supervisor: K. Azatyan

The program is aimed at developing, refining and formulating scientifically founded investment proposals of the multifaceted processes of strategic directions in the fields of Urban Planning and Architecture, bringing them in line with the current socio-economic conditions of the Republic of Armenia and internationally accepted requirements. The main directions of research are: spatial planning, space and layout planning of the settlements, architecture of residential, public and industrial structures, history of architecture, as well as preservation of architectural, cultural and natural monuments. The obtained outcomes can be incorporated in the programs, carried out by the RA state and local self-government bodies, as well as will contribute to the development of various local and international research activities, related to the field of Urban Planning and Architecture.

  1. “Preservation and Development of Scientific-Research Laboratory for Natural Scientific and Mathematical Modeling of Construction Issues” program supervisor: M. Barseghyan.

The program is aimed at theoretical study and mathematical modeling of physicochemical and mechanical properties of materials, which will contribute to the increase of the efficiency of energy economy in the field of construction, to the expansion of the possibilities for obtaining new alternative energy, to the settlement of sound insulation problem of buildings and structures, and to the development of earthquake engineering. The program is also aimed at introducing high technologies, in particular BIM in buildings and structures, as well as at planning zero-emission building models, which will greatly contribute to the development of green architecture and building. 

 

WINNING PROGRAM IN SCIENTIFIC TOPICS CONTEST FOR THE SUPPORT OF DUAL-PURPOSE PROGRAM (2021-2023)

“Design and Preparation of Composite Concrete Protective Structures of New Generation with Additives of Basalt Fibers and Carbon Nanostructures” – 37996000 AMD, program supervisor: A. Arzumanyan.

The program is aimed at obtaining dual-purpose structures with composite concrete with the application of local raw materials, which in their main properties will easily measure up with their foreign equivalents, will have higher quality indicators and will be independent in terms of material-technical base, imported from other countries, while in terms of finance – profitable.

This research will provide a new opportunity to obtain composite concrete with the required properties exclusively with local primary materials, which will make the construction of defense and military structures more efficient. 

WINNING PROGRAM OF 2021 IN CONTEST FOR THE PROVISION OF FINANCIAL SUPPORT FOR THE MODERNIZATION OF INFRASTRUCTURE AND MATERIAL-TECHNICAL BASE IN THE FIELD OF SCIENCE.

 “3D Concrete Printer”- 133000000 AMD, program supervisor: Y. Vardanyan

The availability of the device will provide the opportunity to obtain structures and buildings with complex architectural and constructive structures made of new types of composite concrete, to build various types of defense hideouts in both civil and military spheres. In practice, in addition to scientific research, the presented 3D concrete printer can also be used in the manufacturing sector. It should be noted that traditional construction is gradually giving way to the so-called “printer” construction; in this regard, it is necessary to direct the scientific research potential of NUACA to contemporary technological developments. On the other hand, such modern research implies a breakthrough in training specialists and increasing the professional skills of our graduates.”

WINNING PROGRAM IN SCIENTIFIC TOPICS CONTEST IN SUPPORT OF ADVANCED RESEARCH (2021-2023)

“Control of Physical and Mechanical Properties of Concrete using Carbon Nanostructures” – 156000000 AMD, program supervisor: M. Barseghyan.

The project is aimed at effective control of the physical and mechanical properties of composite concrete with the application of different types of carbon nanostructures. The research will be conducted both by experimental and theoretical methods.

Our objective is to offer a variety of carbon nanotubes, nanofibers and nanoballs as concrete additives to effectively control the physical and mechanical properties of concrete, in particular compressive strength, water permeability, rheological properties, thermal conductivity, properties of abrasion, as well as frost resistance.           

This research will provide a new opportunity to obtain composite concrete, the application of which in construction (including military), particularly in 3D concrete printing technologies, will increase the efficiency of:

  1. Time-saving;
  2. Durability;
  3. Earthquake-resistance;
  4. Low prime cost. 

WINNING PROGRAMS IN THE CONTEST BY A THEMATIC FUNDING OF SCIENTIFIC AND TECHNICAL ACTIVITIES

  1. “Issues of Reconstruction and Modernization of Residential Development in Yerevan City” – 16780000 AMD, program supervisor: K. Azatyan  (2021-2024)

The topic is aimed at carrying out a benchmarking of international and local experience of reconstruction and modernization of residential development, and elaborating scientifically founded proposals of applied significance for the further development of this process in Yerevan. Preconditioned by the basic components of residential development, two main directions of research are identified: districts where the development-level problems should be addressed (roads, infrastructures, development, landscaping) and housing blocks where the residential element-level problems should be addressed (earthquake resistance, energy efficiency, aesthetics, engineering systems). The activities are carried out by studying international and local experience, conducting the created situation analysis and elaborating proposals aimed at solving the problems. The obtained outcomes can be incorporated in the programs, developed by the state and local self-government bodies in Yerevan, as well as can be effective for the processes related to the rearrangement of residential development in different cities of the Republic and other countries.

  1. “Develop a System of Complex Environmental Measures of Brandy Waste (Distillery dreg), Condensation, Conservation and Usage”- 15000000 AMD, program supervisor: S. Sahakyan (2021-2023)

The program is aimed at developing new methods for the conservation and utilization of brandy waste (distillery dreg), which will ensure high economic efficiency and ecological balance of the natural environment. To achieve this goal, different distillation methods will be applied and the effect of different degrees of distillery dreg condensation on its qualitative and quantitative properties will be examined. The optimal concentration of distillery dreg will be identified, ensuring the economic efficiency and at the same time preserving its qualitative indicators, the concentrated distillery dreg doses will be clarified as a chemical ameliorator for the development of saline and alkaline soils, as well as a fertilizer for the regulation of the crop nutrition. The potential for the distillery dreg concentrate application in hydroponic greenhouses to improve water quality will be assessed. Indicators of economic efficiency of distillery dreg condensation and utilization will be provided.

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