For a more successful formation of industrial production systems, an effective system for managing intellectual capital, knowledge and information is needed. An indispensable condition for the development of modern industry is the creation and use of information and knowledge. Industrial modernization requires an organizational and economic mechanism for resource management. When solving the problems of improving and technological development of production systems of industrial enterprises or business groups, a method for selecting a strategy for managing corporate information resources was developed. It is based on the consequences of economic monitoring of the state of the production system, which provides for the primary processing and assessment of the reliability of the results, creation of alternative predictive scenarios for changes in the state of the external and internal environment of the production system, expression of strategic goals and objectives of modernization, development of target criteria for achieving the results of modernization, alternative competing strategies for information and knowledge management, checking competing strategies against the target criterion, choosing a strategy to be applied in the improvement process. The transition to promising paths is permissible only under the condition of intensive modernization of industrial enterprises, carried out on the basis of those technical and economic decisions that will lead to the development and use of the latest NBIC technologies.
The construction industry has a significant impact on our environment. When erecting buildings and structures, building materials, energy, water and other resources, the production of which violates the ecological balance, are used. The construction process itself has also negative effect on environment and the nearby objects with noise, vibration exposure, waste incineration, groundwater and soil pollution in general. However, the time period required for the construction of the building is insignificant compared to the period of operation. Experts estimate the service life of modern monolithic buildings at 125 - 150 years, and in some cases this index reaches 300 years. During this time, a new problem arises - the ecological balance violation: insufficient insolation, changes in natural wind flows, hydrogeology, vegetation reduction, soil and vegetation layer pollution, air masses stagnation, etc. All this creates the prerequisites for the creation of special environmental protection measures aimed at maintaining ecological balance. Thus, at each stage of the life cycle of a building, it is necessary to carry out the measures to protect the environment and minimize harmful effects on the environment. Today the prerequisites for the green building development are being laid in Russia. The main idea is to reduce energy intensity and increase energy efficiency in construction.
Krasnodar Krai is an intensively economically developing region. In terms of the activity in the construction of residential and industrial facilities, it ranks among the leaders in Russia. At the same time, the region is experiencing a serious shortage of energy produced on its territory. The power system of the Krasnodar Krai is characterized by a high specific consumption of electric energy per capita, comparable in size to the largest cities of the Russian Federation. Also, the territory of the Krasnodar Krai is a recreational area, a valuable ecological object, where the construction of carbon-burning power plants is undesirable due to the high degree of environmental pollution. The construction of a nuclear power plant is also unacceptable due to the seismic activity of the territory. Based on the above, it is necessary to analyze the possible use of alternative energy sources, in particular, wind energy, since the wind potential of the territory of the region is large. In the paper, the wind potential of the coast of the Krasnodar Krai was studied - water space, estuaries and reservoirs that are not used or are poorly used for recreational and economic purposes, which have indicators of wind speed and constancy more than on land, and which are not considered by most researchers due to unusual location.
Buildings and structures are erected on the foundation of ground or arranged in the soil column, and the subsoil can also be used as a building material. Its stability, durability, reliability and appropriate operation are determined not only by the structural qualities of the structure, but also by the properties of the foundation soil itself and the conditions of interaction between the structure and the foundation. Insufficiently studied engineering and geological conditions at the construction site, poorly designed bases and foundations, failure to considerably increase the weight of the building during its reconstruction or technical re-equipment, when erecting new buildings near the existing buildings, often cause their unacceptable deformations which can cause damage and sometimes even complete destruction of the erected buildings. The improvement of design and technological solutions in the field of foundations and foundations will result in saving both labor and material resources, and will reduce the construction period. This paper studies the properties of unstable soils, various difficulties in the design and construction of buildings and structures in special soil conditions with unstable structural relationships, the analysis of a variety of methods to strengthen the foundation soils and ways to combat deformations of buildings and structures.
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