ECOLOGICAL PROBLEMS OF UNDERGROUND AND TERRESTRIAL URBANISTICS

O. Kofanova, O. Kofanov
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Abstract

Purpose. The aim of the study is to predict the potential risk of urban air pollution by toxic components of exhaust gases of vehicles in terms of the underground and terrestrial urban planning, in particular, street canyons, underground pedestrian crossings, underground parking lots, etc. Methods. The following research methodology was used in the work: on the basis of space-time field observations of the intensity, density and speed of traffic flows, as well as using mathematical modeling methods it was proved that urban air pollution (of the roadside space, adjacent territories of well-type yards, underground infrastructure, etc.) by toxicants, which are components of vehicle engine emissions, remains at a high, often environmentally hazardous level, and therefore requires urgent development and implementation of the appropriate precautionary measures. Results. The analysis of problems of ecological safety of city objects of terrestrial (high-traffic roads, adjacent territories) and underground (underground pedestrian crossings, garages, parking lots) urbanistics allowed to reveal direct and indirect negative influences on air environment from emissions of motor vehicles; using mathematical modeling methods to predict the fields of concentration of major toxicants and identify areas of local emergency pollution in different weather conditions, identify the most unfavorable directions and wind speeds and assess the level of environmental hazards to human health (residents of houses located in the well-type yards, pedestrians, owners of underground garages (parking lots), tenants of parking spaces, etc.). Scientific novelty. The study revealed direct and indirect negative effects of the motor transport complex on the air environment of urban territories (objects of terrestrial and underground urbanistics), in particular, based on the use of mathematical modeling methods. The level of environmental danger to the health of urban residents has been assessed. Practical significance. The results of the study can be used in the design and construction of urban infrastructure, as well as to reduce the technogenic load on the environment and human health in existing objects of terrestrial and underground urbanistics and other city areas.
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地下与陆地城市化的生态问题
目的。本研究的目的是在地下和地面城市规划方面,特别是在街道峡谷、地下人行横道、地下停车场等方面,预测汽车尾气有毒成分对城市空气污染的潜在风险。方法。本研究采用的研究方法如下:基于对交通流强度、密度和速度的时空现场观测,以及利用数学建模方法,证明了汽车发动机排放的有毒物质对城市空气(路边空间、井式院子邻近区域、地下基础设施等)的污染仍然处于较高的、往往对环境有害的水平。因此需要紧急制定和实施适当的预防措施。结果。对地面(交通繁忙的道路、邻近区域)和地下(地下人行横道、车库、停车场)城市对象的生态安全问题进行分析,揭示机动车排放对大气环境的直接和间接负面影响;利用数学建模方法预测不同天气条件下主要有毒物质的浓度场,识别局部应急污染区域,识别最不利的风向和风速,评估对人体健康的环境危害程度(井式院落房屋居民、行人、地下车库(停车场)业主、停车位租户等)。科学的新奇。这项研究特别根据使用数学模型方法揭示了汽车运输综合体对城市地区(陆地和地下都市学对象)空气环境的直接和间接负面影响。对城市居民健康的环境危险程度进行了评估。现实意义。研究结果可用于城市基础设施的设计和建设,以及减少地面和地下城市化和其他城市地区现有对象对环境和人类健康的技术负荷。
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