Assessment of environmental risks of underground transport infrastructure development by BOCR method

N. Pankratova, N. Nedashkovskaya, H. Haiko, V. Biletskyi
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Abstract

Formulation of the problem. Solving the problems of urban transport communications, in particular the constantly growing intensity of automobile traffic in megalopolises, is one of the main directions of minimizing the environmental and man-made risks of the urban environment. Global concepts of greening large cities pay considerable attention to the possibilities of underground space to take on the functions of the most dangerous and risky surface objects and communications, since the impact of any underground object on the environment is much lower (than similar on the surface) and can be better controlled. At the same time, planning for the development of underground transport infrastructure should be based on a systematic methodology and tools for analyzing complex systems. Purpose. It consists in the use of system tools (BOCR method - criteria of benefits, opportunities, costs and risks) for planning underground transport infrastructure of large cities to ensure minimization of environmental and man-made risks of urban space and prioritization for the construction of road tunnels (for example, the General Plan of the Kiev city). Methodology. A methodology and decision support toolkit for calculating the priorities of alternatives based on hierarchical and network criteria models are proposed. The modified BOCR method developed by the authors (N. Pankratova, N.I. Nedashkovskaya) was applied to assess decision alternatives taking into account benefits, costs, opportunities and risks. Results. System models of two road tunnels, according to the General plan of the Kiev city until 2025 were developed. Assessment of the models using the BOCR method (criteria for benefits, opportunities, costs and risks) was performed. The priorities of alternatives for tunnels' routes aggregated over a network of parameters and a reasonably expedient sequence of their construction were calculated according to the criteria for reducing the environmental and man-made risks of the urbanized space. Scientific novelty. For the first time, the target function of the system model for the development of underground infrastructure in large cities is to minimize the environmental and man-made risks of urban space. The capabilities of the modified BOCR method have been expanded and two alternative tunnel track models have been successfully tested. Practical significance. The research methods and results provide investors, city state administrations and public organizations with an effective toolkit for assessing the priority of the construction of underground urban facilities to regulate urban development in order to improve environmental standards and the safety of life in megacities.
基于BOCR方法的地下交通基础设施建设环境风险评价
问题的表述。解决城市交通通信问题,特别是特大城市日益增长的汽车交通强度,是减少城市环境风险和人为风险的主要方向之一。全球的大城市绿化概念相当重视地下空间承担最危险和最危险的地面物体和通信功能的可能性,因为任何地下物体对环境的影响都要小得多(比地面上的类似物体),并且可以更好地控制。同时,规划地下交通基础设施的发展应以系统的方法和工具为基础,以分析复杂的系统。它包括使用系统工具(BOCR方法-收益,机会,成本和风险的标准)来规划大城市的地下交通基础设施,以确保将城市空间的环境和人为风险降到最低,并优先考虑道路隧道的建设(例如,基辅市的总体规划)。提出了一种基于分层和网络标准模型计算备选方案优先级的方法和决策支持工具包。作者(N. Pankratova, N.I. Nedashkovskaya)开发的改进BOCR方法被用于评估考虑收益、成本、机会和风险的决策方案。根据基辅到2025年的总体规划,开发了两条公路隧道的系统模型。使用BOCR方法(效益、机会、成本和风险标准)对模型进行评估。根据降低城市化空间的环境风险和人为风险的标准,通过参数网络和合理的施工顺序,计算出隧道路线的优先级。科学的新奇。该系统模型首次将大城市地下基础设施发展的目标函数设定为最小化城市空间的环境风险和人为风险。改进后的BOCR方法的功能得到了扩展,并成功地测试了两种替代的隧道轨道模型。现实意义。研究方法和结果为投资者、城市国家管理部门和公共组织提供了有效的工具,用于评估地下城市设施建设的优先级,以规范城市发展,从而提高特大城市的环境标准和生活安全。
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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