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11.
A measuring campaign was conducted in the street canyon 'Runeberg street' in Helsinki in 1997. Hourly concentrations of carbon monoxide (CO), nitrogen oxides (NOX), nitrogen dioxide (NO2) and ozone (O3) were measured at the street and roof levels, and the relevant hourly meteorological parameters were measured at the roof level. The hourly street level measurements and on-site electronic traffic counts were conducted during the whole year 1997, and roof level measurements were conducted during approximately two months, from 3 March to 30 April in 1997. The Operational Street Pollution Model (OSPM) was used to calculate the street concentrations and the results were compared with the measurements. The overall agreement between measured and predicted concentrations was good for CO and NOx, but the model slightly overestimated the measured concentrations of NO2. The database, which contains all measured and predicted data, is available for a further testing of other street canyon dispersion models.  相似文献   
12.
The analysis of three years of 8-h CO concentration values registered in a deep street canyon downtown shows high frequency of values that exceed WHO health protection guidelines. An inverse relationship between opposing percentiles of the distributions of CO concentrations and mean wind speed could be found. Data also showed a variation of mean CO values with prevailing wind direction. The averaged concentration value obtained when the sampler probe is on the leeward side is lower than the obtained when it is on the windward wall. A preliminary explanation of this feature may be related to the advection of polluted air from a high traffic density area nearby.  相似文献   
13.
The strong fluctuating component in the measured concentration time series of a dispersing gaseous pollutant in the atmospheric boundary layer, and the hazard level associated to short-term concentration levels, demonstrate the necessity of calculating the magnitude of turbulent fluctuations of concentration using computational simulation models. Moreover the computation of concentration fluctuations in cases of dispersion in realistic situations, such as built-up areas or street canyons, is of special practical interest for hazard assessment purposes. In this paper, the formulation and evaluation of a model for concentration fluctuations, based on a transport equation, are presented. The model is applicable in cases of complex geometry. It is included in the framework of a computational code, developed for simulating the dispersion of buoyant pollutants over complex geometries. The experimental data used for the model evaluation concerned the dispersion of a passive gas in a street canyon between 4 identical rectangular buildings performed in a wind tunnel. The experimental concentration fluctuations data have been derived from measured high frequency concentrations. The concentration fluctuations model is evaluated by comparing the model's predictions with the observations in the form of scatter plots, quantile-quantile plots, contour plots and statistical indices as the fractional bias, the geometrical mean variance and the factor-of-two percentage. From the above comparisons it is concluded that the overall model performance in the present complex geometry case is satisfactory. The discrepancies between model predictions and observations are attributed to inaccuracies in prescribing the actual wind tunnel boundary conditions to the computational code.  相似文献   
14.
采用CFD(计算流体力学)数值模拟的研究方法,使用动网格技术,分析简单光化学反应下车辆流动及不同来流风速对双车道三维街道峡谷内污染物传播特性的影响.结果表明,车辆移动改变了峡谷内气流结构,以及背风侧与迎风侧活性污染物浓度分布的相对大小,有利于污染物在峡谷中的传播扩散;来流风使机动车尾气向建筑背风侧汇聚,并随着风速增加而加强,对近迎风侧车道车辆尾气淹没射流的影响比近背风侧车道大.在车辆移动与来流风的综合作用下,污染物的扩散能力得到显著增强.  相似文献   
15.
为了探索重污染河流的治理技术,2011年3月在无锡市新区鸿山镇徐塘桥河开展生态治理示范工程,通过电解技术、种植高等水生植物和构建软隔离带复合工程技术改善河流水质。实验结果表明,通过电解技术,可以迅速降低TP、氨氮(NH4+-N)和COD;但较难减少TN。通过软隔离带可以有效隔离外源污染,在较短时间内改善河流TN、TP、COD的平均水平,但是难以提高河流的生态系统稳定性。电解能够有效的降解大分子有机物,为水生植物提供良好的生长环境,之后再种植水生植物,能够进一步降低的TN、TP。通过电解一水生植物一软隔离带复合技术不仅能够全面改善河流水质的平均水平,而且能够修复水生生态系统,提高生态系统稳定性。  相似文献   
16.
A two-dimensional numerical model for evaluating the wind flow and pollutant dispersion within a street canyon was first developed using the FLUENT code, which was then validated against a wind tunnel experiment. Then, the effects of the upstream building width and upwind building arrangement on the airflow and pollutant dispersion inside an isolated street canyon were investigated numerically. The numerical results revealed that: (1) the in-canyon vortex center shifts downwards as the upstream building width increases; (2) the recirculation zone covers the entire upstream building roof for the cases when W/H = 0.5, 1.0, 1.5, and 2.0 (W is the upstream building width and H is the building height), whereas the flow reattaches the upstream building roof for the cases when W/H = 2.5 and 3.0; (3) when the upstream building width is shorter than the critical width WC (= 2H), an increase in the upstream building width leads to an increase in the pollution level on the leeward wall of the canyon and a decrease in the roof-level concentrations at the upstream building; (4) when the upstream building width is longer than the critical width, the roof-level concentrations at the upstream building are negligibly small and the pollution level on the leeward wall of the canyon is almost unaffected by a further increase in the upstream building width; (5) when the buildings are placed upwind of the canyon, the flow attaches the upstream building roof and, therefore, almost none of the pollutants are distributed on the upstream building roof; and (6) the pollution levels inside the canyon and on the downstream building roof increase significantly with the number of upwind buildings.  相似文献   
17.
精细化模拟对城市大气污染预报、朔源和管控具有重要意义.本文以南京市江宁区为例,利用中尺度数值模式WRF-Chem和三维高斯型模式ADMS,针对典型污染个例,开展城区尺度大气污染高分辨模拟,并对其结果进行比较分析.此外,探讨了WRF-Chem中不同城市冠层方案的模拟效果以及ADMS中不同街道峡谷特征对街道内污染扩散的影响.结果表明,WRF-Chem和ADMS都可以合理模拟内外源对关心区域的影响,实现对城区尺度大气污染的高分辨和高效率模拟;相对SLAB、BEP城市冠层方案,WRF-Chem中的UCM方案表现更好,且其模拟性能较ADMS略优;ADMS模拟街道峡谷效应时,街道和建筑尺度参数对模拟结果有较大影响,街道越窄、建筑越高,越不利于街道内污染物的扩散.综合而言,对于城区尺度的大气污染精细化模拟,使用UCM方案的WRF-Chem和ADMS都具有一定的模拟能力,可以根据计算效率和分辨率的要求选用不同模型开展研究.  相似文献   
18.
19.
城市环境中自然通风研究进展   总被引:3,自引:0,他引:3  
城市环境中自然通风源于城市热压梯度及城市风压梯度的综合作用。城市环境中自然通风影响着城市"五岛"效应(城市热岛、湿岛、干岛、浑浊岛及雨岛),城市大气的自净能力和城市居民的身体健康,也是研究快速城市化地区广义城市风环境(风场、温度场、湿度场)的参考因子。为了全面理解国内外针对城市环境中自然通风的研究进展,从城市环境中自然通风的监测、模拟及应用三个方面对目前国内外针对城市环境中自然通风的研究现状进行了综述,最后结合环境物联网、无线传感技术等目前在城市环境中自然通风研究的相关技术及应用领域的新进展,对城市环境中自然通风的后续研究热点和关键问题进行了展望,为城市环境中自然通风的相关技术及应用问题的后续研究提供了基础研究素材。  相似文献   
20.
采用数值模拟的方法,研究了街谷内上风建筑与上游阻挡建筑的间距(D),即上游建筑间距,对街谷内空气流动特性和气态污染物分布规律的影响.模拟结果表明,街谷内迎风区的气流速度基本不随D的变化而变化,而背风区和中心区的气流速度随着D的增加呈现先减小后增大的趋势,并在D=90m时,气流速度达到最小值.相应地,在D=90m时街谷内污染物浓度最高,表明D存在最不利值,在城市规划中应尽可能避免该间距.当D大于90m时,D越大,污染物浓度越低,而D小于90m时,D越小,污染物浓度也越低,可以同时实现节约用地和减小交通污染的目的.  相似文献   
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