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Spatial mapping and guidelines on the environmental impact assessment of wind parks in Republic of Macedonia

机译:马其顿共和国风电场环境影响评价的空间图和指南

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The cost of generating electricity from wind is becoming competitive vis-à-vis new-build fuel driven plants, especially with respect to constant increase of prices of oil and gas, but also with respect to the new barriers and resistance against nuclear generation (especially after Fukushima nuclear plant disaster). On the other hand, wind energy as an alternative to thermal power plants is a clean source of energy that produces no greenhouse gas emissions, wastewaters and solid waste, and last but not least, there is no fuel requirement for WindPark. The percentage of participation of RES in the total consumption of final energy by 2020 in Macedonia should be equal to 21%. Following the principle of the promotion of sustainable regional and environmental development as direct implementation of EU policies, the aim of the study presented in this paper is to deliver a framework for spatial planning and sustainable development by detecting the potential areas for investment in wind energy sources. The study presented in this paper promotes eight potential locations for building of wind parks, presents the requirements and procedures to local and international investors, and facilitates the building of wind parks in a very short time. The evaluation of the impact analyses that wind parks may have on the environment and to offer possible mitigation techniques, this study presents the results of the detailed analysis for selection of potential locations for building of wind parks by mapping of: potential number of wind generators on selected wind parks sites; locations of neighbouring objects which might cause interaction and the effect of cumulative influence; the impact of sound emission (in terms of loudness) to local population; energy connection to existing or new energy infrastructure (layout of lines, location of substations); ground transportation and traffic infrastructure; geological aspects (terrain stability, erosion of the soil); seismological activi- y of the terrain, conformity of urban planning with respect to protection of natural disasters, protection of cultural and historic heritage; touristic regions, zones and locations; biological diversity including the fatalities of birds and bats from collisions with wind turbines; etc. In addition, software Arc GIS is applied also for analysis of the crossing points with respect to the existing and planned transmission power lines on 110 kV, 220 kV and 400 kV, but also with proposed oil-pipeline AMBO, constructed oil-pipeline Thessaloniki-Skopje, new proposed route of the pipeline, by applying safety measures and minimum allowed distance.
机译:与新型燃料驱动的电厂相比,利用风能发电的成本正变得更具竞争力,特别是在石油和天然气价格不断上涨的同时,在新的壁垒和对核发电的抵制方面(尤其是在这种情况下)福岛核电站灾难后)。另一方面,风能替代火力发电厂是一种清洁能源,不会产生温室气体排放,废水和固体废物,而且最后但并非最不重要的是,WindPark不需要燃料。到2020年,RES占马其顿最终能源总消费量的百分比应等于21%。遵循作为直接执行欧盟政策的促进可持续区域和环境发展的原则,本文提出的研究目的是通过检测潜在的风能资源投资领域,为空间规划和可持续发展提供框架。本文介绍的研究促进了八个潜在的风电场建设地点,向本地和国际投资者提出了要求和程序,并在很短的时间内促进了风电场的建设。对风电场可能对环境的影响分析进行评估,并提供可能的缓解技术,本研究通过绘制以下内容来详细分析选择风电场建设的潜在位置的结果:选定的风电场地点;可能引起相互作用的邻近物体的位置以及累积影响的作用;声音发射(响度)对当地居民的影响;与现有或新能源基础设施的能源连接(线路布局,变电站的位置);地面运输和交通基础设施;地质方面(地形稳定性,土壤侵蚀);地形的地震活动,关于自然灾害保护的城市规划,文化和历史遗产的保护;旅游区,地区和地点;生物多样性,包括与风力涡轮机碰撞造成的鸟类和蝙蝠死亡;此外,还使用Arc GIS软件分析与110 kV,220 kV和400 kV上现有和计划中的输电线路的交叉点,以及拟议的输油管道AMBO,已建输油管道塞萨洛尼基-斯科普里(Thessaloniki-Skopje),通过采用安全措施和最小允许距离,提出了新的管道路线。

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