Trubizh water management paradynamic landscape-technical system

Hryhoriy I. Denysyk, S. Mizina
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Abstract

Formulation of the problem. The incorporation of any reclamation system into the existing landscape complexes leads to increased contrast of environments and activation of material-energy-information flows. The construction of the reclamation system in the basin of the Trubizh River radically changed the landscape structure of the riverbed and floodplain, which led to a significant impact on the adjacent landscape complexes. Trubizh water management landscape-technical system goes beyond one river valley, so ill-considered economic activity can lead to deterioration of the ecological condition of adjacent landscape complexes. The study of anthropogenic paradynamic connections between different landscape structures will provide a better understanding of the functioning of the Trubizh water management landscape-technical system and the peculiarities of interaction with adjacent landscapes, which, in turn, will predict its further development and develop ways of rational use. Purpose. The purpose of the article is to study the Trubizh water management landscape-technical system as an anthropogenic paradynamic system. Methods. The process of transformation of natural paradynamic connections into anthropogenic and formation of anthropogenic paradynamic landscape complexes with the help of databases of GIS packages SAS.Planet.Release and GoogleEarthPro is analyzed. The research was conducted using the following methods: system analysis, generalization, comparative-geographical, final results, cartographic, GIS-method. To analyze anthropogenic paradynamic landscape complexes and anthropogenic paradynamic connections between them, GIS packages were used, with the help of databases the process of restructuring of natural paradynamic connections into anthropogenic and formation of anthropogenic paradynamic landscape complexes was analyzed. Results. Because the Trubizh water management landscape-technical system extends beyond one river valley (covering floodplain, floodplain terrace and slope types of areas), it unites the entire river basin into a single whole with the help of anthropogenic paradynamic connections. This poses a threat to the environment, as ill-considered economic activities can lead to the deterioration of the ecological condition of landscape complexes both within one basin and have a negative impact on adjacent basins. Factors in the functioning of paradynamic connections are due to the presence of external and internal links, contrast and spatial dependence between the interacting landscapes complexes. External anthropogenic paradynamic connections include: thermal – the effect of solar radiation on the landscape; mechanical – gravitational influence of watersheds on the low-lying channel-floodplain complex; aquatic – the influence of surface and groundwater on the supply of rivers and the chemical composition of water; social – the impact of economic activity. The internal anthropogenic paradynamic connections include: biocosnic (interaction between living and nonliving matter) and biotic (biocenosis interaction between components). Scientific novelty. The study of paradynamic connections in this complex natural economic structure will provide a better understanding of the features of its functioning and decline, to develop ways of rational use and predict its further development.
垃圾水管理反动态景观技术系统
问题的表述。任何填海系统与现有景观综合体的结合都会增加环境的对比,并激活物质-能量-信息流。Trubizh河流域围垦系统的建设从根本上改变了河床和洪泛平原的景观结构,对周边景观综合体产生了重大影响。不合理的水管理景观技术系统超越了一个河谷,因此不合理的经济活动可能导致邻近景观综合体生态状况的恶化。通过对不同景观结构之间的人为异动力联系的研究,可以更好地了解Trubizh水管理景观技术系统的功能及其与邻近景观相互作用的特殊性,从而预测其进一步发展和合理利用的途径。本文的目的是将垃圾水治理景观技术系统作为一个人为的顺动力系统进行研究。利用GIS软件包sas、planet、release和GoogleEarthPro,分析了自然副动力连接转化为人为副动力景观综合体的过程。研究采用系统分析法、综合分析法、比较地理学法、最终结果法、地图学法、gis法。为了分析人为副动力景观复合体及其之间的人为副动力联系,利用GIS软件包,借助数据库,分析了自然副动力连接重构为人为副动力景观复合体和人为副动力景观复合体的形成过程。由于Trubizh水管理景观技术系统超出了一个河谷(覆盖洪泛区、洪泛区阶地和斜坡类型的地区),它借助人为的顺动力连接将整个流域统一为一个整体。这对环境构成了威胁,因为考虑不周的经济活动会导致一个盆地内景观综合体的生态条件恶化,并对邻近的盆地产生负面影响。反动态连接功能的因素是由于相互作用的景观综合体之间存在外部和内部联系、对比和空间依赖性。外部人为反动力联系包括:热—太阳辐射对景观的影响;流域对低洼河道-漫滩复合体的力学-重力影响水生——地表水和地下水对河流供应和水的化学成分的影响;社会——经济活动的影响。内部的人为异动力联系包括:生物性(生物与非生物物质之间的相互作用)和生物性(生物组分之间的相互作用)。科学的新奇。研究这一复杂的自然经济结构中的顺动力联系,将有助于更好地认识其功能和衰落的特征,制定合理利用的方法,并预测其进一步发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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