GULLY MODELING FOR FOREST RECLAMATION PURPOSES
- Land Reclamation, Recultivation, and Land Protection
The aim of the research was to ensure the environmental sustainability of the develop-ment (EUR) of the watering irrigation systems by increasing the initial energy use in the crop production technology in irrigated lands. At the current stage of water industry development as a part of agroindustrial complex there is an important task connected with the increase of efficiency of the initial energy use in crop production technology through the use of renewable energy sources – the potential energy of water flow on intrasystemic hydro-technical water-works of open and closed types with the use of small HPPs and micro HPPs on sprinklers, so-lar batteries to provide electrical power to the intrasystem elements of watering irrigation sys-tems, wind driver generators in the life sustenance of people living in the zone of watering ir-rigation systems. In the system energy-entropy consideration of the processes of functioning watering irrigation systems, certain changes in the environment (PS) that form the ecological state (ES) as a factor of environmental safety (EB) in the zones of influence of existing water-ing irrigation systems occur. The provision of EUR and the functioning of the natural-technical systems “natural environment – watering – irrigation system – population” (PTS “PS – OOS – N”) is important for the further improvement of watering irrigation systems. To en-sure the EUR of the existing and newly developed PTS “PS – OOS – N”, the development of the methodology basics for assessing the environmental sustainability of the development of watering irrigation systems as a factor of environmental safety and accordingly the develop-ment of agricultural production in irrigated lands by more fully utilization of the initial energy source under the influence of which all processes of vital activity within the given basin-geosystem occur is required.
Key words: environment, system, development, environmentally sustainable develop-ment, environmental safety, system capacity, natural-technical system.
DOI: 10.31774/2222-1816-2018-3-70-85
For citas:
V. L. Bondarenko, G. L. Lobanov, E. A. Kozarezova, M. S. Vasilyev, A. R. Tripoleva The Environmental Sustainability Assessment of Natural Technical Systems in Irrigation Systems. Scientific Journal of Russian Scientific Research Institute of Land Improvement Problems. 2018. No 3. P. 70-85 DOI:https://doi.org/10.31774/2222-1816-2018-3-70-85