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401.
Aerosol properties and air pollutants over an urban area   总被引:2,自引:0,他引:2  
For a better understanding of urban aerosols, sun/sky photometry has been undertaken at the Kinki University campus in Higashi-Osaka as a NASA/AERONET station since 2002. A new instrument, the SPM-613D (Kimoto Electric), has been taking measurements at the same site since March 15, 2004. The relationship between aerosol properties obtained from radiometry with AERONET and the SPM measurements is examined. It is found that there is a linear correlation between SPM concentrations and aerosol properties, which indicates that aerosol characteristics can be estimated from SPM data, and vice versa.It is also shown that the air quality of the Higashi-Osaka site is poor due to not only the anthropogenic particles by local emissions, such as diesel vehicles and chemical industries, but also due to the dust particles coming from continental desert areas by large scale climatic conditions.  相似文献   
402.
Simulation of seismic waves from a 3D point-source in a 2D medium may be performed in the frequency-wavenumber domain (called 2.5D modelling). It involves computing the Fourier-transformed Green's function for a number of frequency (ω) and strike direction wavenumber (ky) values and doubly inverse transforming to convert to the traveltime and distance space. Such modeling produces a wavefield with 3D features but the computation becomes pseudo 2D (i.e., in the xz-plane) rather than 3D (in the xyz-frame). The common sampling strategy for the wavenumber is inefficient for 2.5D wave modeling because it employs a large number of wavenumbers (ky). This leads to a high cost of computer time in the linear-equation-solving processing, which detracts from the advantages of 2.5D modeling. In this paper, we use two analytic frequency-wavenumber-domain solutions for seismic waves in a homogeneous medium and an inhomogeneous media (two semi-infinite media in contact) to investigate the properties of the solutions and an efficient sampling strategy for choosing the wavenumbers. We have carried out analytic and numerical experiments with these solutions, and present adaptive Gauss–Legendre abscissae for the wavenumber sampling in terms of a modeling situation. We show that the effective range and the number of sampling points of the wavenumber define the adaptive sampling strategy, and they can be estimated in terms of the wavelength and the maximum source-receiver offset. We apply this sampling strategy to the finite-element method and demonstrate that the range and number of sampling points may be adapted for obtaining significant computational efficiency and satisfactory accuracy for every frequency component. Such 2.5D wave modeling can be readily applied for frequency-domain full-waveform inversion for seismic surface measurements and crosshole seismic waveform tomography.  相似文献   
403.
The effects of basin-edge and soil velocity on the ground motion characteristics have been simulated using 2.5D modeling. One of the most significant advantages of the 2.5D simulation is that 3D radiation pattern can be generated in a 2D numerical grid using double-couple shear dislocation source. Further, 2.5D numerical modeling avoids the extensive computational cost of 3D modeling. The responses of basin-edge model using different soil velocities revealed that surface waves were generated near the edge of the basin and propagated normal to the edge, towards the basin. Further, the results depict increase of amplification, duration and surface wave generation with the decrease in soil velocity.  相似文献   
404.
根据大量的大气环境监测资料,系统分析了银川市市区、郊区以及市中各功能区(居民区、商业区、文教区、工业区、交通区、娱乐区)大气颗粒物的TSP(TotalSuspendedParticles)、PM10(粒径小于等于10μm的粒子)和PM2.5(粒径小于等于2.5μm的粒子)质量浓度的季节分布、日变化以及随高度的分布特征。结果表明:银川市背景大气TSP平均值为0.126~0.248mg·m-3,低于国家三级污染标准;银川市区TSP日平均浓度的年平均值为0.47~0.78mg·m-3,超过国家二级标准0.57~1.6倍,超标率高达61.3%~92.5%,日均最大值超标7.9倍;春夏秋冬4季中,以冬春两季日平均浓度最高,其原因是燃煤取暖和沙尘暴多发。各功能区中商业区、交通区、居民区的TSP较高,这显然与人为活动、机动车辆排放密切相关,TSP日变化均呈现出与人为活动相一致的规律性;TSP的空间分布表明城市高于郊区,规模大、人口密度高、商业网点密集的城区TSP较高。各粒径粒子的质量浓度随高度递减,PM10占TSP的比例却随高度增加,说明PM10随高度增加。地面呼吸带高度上PM10和PM2.5均较高,可能与低空排放源有关。春季风沙期是大气污染最为严重的季节。  相似文献   
405.
In nested nonhydrostatic mesoscale model MM5,the characteristic quantities of atmospheric turbulence,i.e.,the standard deviations of the turbulent fluctuated speeds for three directions in PBL are computed by Mellor-Yamada's level 2.5 closure scheme.The magnitudes and the vertical profiles of these quantities computed from the model are closely connected with temperature and wind speed profiles as well as the type of the ground with a significant diurnal variation,and are in agreement with known magnitudes and regularities in different stratification conditions.Hence the method in this paper is reasonable and convincible.Their horizontal distribution depends on the horizontal distribution of the stratification.The method of predicted characteristic quantities of turbulence from mesoscale model in this paper can be used in the problem of atmospheric diffusion and atmospheric environment.  相似文献   
406.
“一带一路”建设让古代丝绸之路的起点——西安成为世界焦点,西安的空气质量也是政府和公众关注的焦点。以2017年5月我国北方的一次强沙尘过程为例,首次利用中国科学院大气物理研究所气溶胶和大气化学模式系统IAP-AACM(Aerosol and Atmospheric Chemistry Model of the Institute of Atmospheric Physics)模拟关中地区细颗粒物(PM2.5)的时空分布,并结合地面逐小时PM2.5观测数据对沙尘气溶胶和PM2.5模拟的关系进行深入探究。结果表明:加入沙尘组分对模拟关中地区PM2.5时空变化特征作用显著,相关性可提升0.4~0.6,并且可以很好地再现强沙尘时段PM2.5浓度骤增的过程;在强沙尘时段和一般时段,沙尘组分对PM2.5的贡献分别为60%~80%和10%~30%;0.11°×0.11°高分辨率模拟有助于提升模式捕捉污染物时空变化的能力。  相似文献   
407.
王妤  孙斌栋  李琬 《地理研究》2021,40(11):3173-3190
对于何种城市规模分布有利于促进绿色发展,学界在理论与实证方面都存在争议,且鲜见跨国的实证研究。基于2000—2015年LandScan人口数据和欧空局土地覆盖类型数据,识别了具有统一定义的全球近100个国家的所有城市,通过描述性统计和面板双向固定效应模型探究城市规模分布对PM2.5浓度的影响。研究发现,均衡的城市规模分布总体上能够降低国家的PM2.5浓度,这是因为均衡的城市规模分布能够通过促进分工合作和减少交通出行来降低PM2.5浓度。实证结果具有一定异质性,在人口密度较高或政府干预程度较高的国家,均衡的城市规模分布更有利于降低国家PM2.5浓度,而在人口密度较低或政府干预程度较低的国家,相对极化的城市规模分布更有利于国家PM2.5浓度的下降。本研究丰富了城市规模分布对PM2.5浓度影响在跨国层面的证据,对制定可持续发展的国土空间规划具有重要的启示。  相似文献   
408.
为查明汾渭平原典型城乡地区重度污染天气PM2.5中多环芳烃(PAHs)污染特征及其人群健康效应,本文于2018—2019年冬季分别选取西安和陇县作为城乡对比参照点,采集了重度污染天气PM2.5颗粒态气溶胶样品。利用气相色谱—质谱联用仪(GC-MS)检测样品中具有“三致效应”的15种PAHs含量及组分特征,使用特征比值法及主成分法进行PAHs源解析,并分析了气象因素对PAHs质量浓度的可能影响,通过对苯并芘(BaP)等效毒性浓度和终生超额致癌风险度(ILCR)的计算,对人群健康风险进行评估。结果表明:西安与陇县在重度污染天气条件下PM2.5中15种PAHs总平均质量浓度分别为243.78 ng/m3、609.39 ng/m3,其中4~6环PAHs占比最高;且PAHs浓度与气温、气压及风速呈显著负相关,与相对湿度则无明显相关性。西安PAHs污染主要来自燃烧源与交通排放源,而煤炭及生物质燃烧是造成陇县PAHs质量浓度偏高的主要原因。健康风险评估结果显示,重污染天气下陇县人群通过呼吸引发的致癌风险要高于西安,女性致癌风险高于男性,成人致癌风险高于儿童,且两地区成人ILCR值均超过风险阈值,存在潜在致癌风险,儿童则无明显致癌风险。  相似文献   
409.
2.5维起伏地表条件下时间域航空电磁正演模拟   总被引:7,自引:5,他引:2       下载免费PDF全文
时间域航空电磁作为一种高效地球物理勘探技术特别适合我国地形复杂地区(沙漠、高山、湖泊、沼泽等)资源勘查.然而,这些地区地形起伏较大,对航空电磁响应有严重影响,忽略地形影响会给航空电磁数据解释造成很大误差.到目前为止人们对航空电磁地形效应特征研究十分有限.本文提出了基于非结构化网格的有限元法模拟带地形时间域航空电磁系统响应.该方法与基于结构化网格的有限差分相比能更好地模拟地形.首先通过傅里叶变换将2.5维问题转化成二维问题,利用伽辽金方法对二维问题进行离散.通过使用MUMPS求解器,得到波数域电磁响应.利用反傅里叶变换将波数域电磁响应变换到空间域,并利用正弦变换将其变换到时间域,得到2.5维时间域航空电磁响应.通过将本文的计算结果与半空间模型解析解及其他已发表的结果进行对比,检验了本文算法的精度.最后,我们系统分析了山峰和山谷地形对航空响应的影响特征.本文研究结果对航空电磁地形效应的识别和校正具有指导意义.  相似文献   
410.
In this paper, a numerical approach for the prediction of vibrations induced in buildings due to railway traffic in tunnel is proposed. The numerical method is based on a sub-structuring approach, where the train is simulated by a multi-body model; the track–tunnel–ground system is modeled by a 2.5D FEM–PML approach; and the building by resource to a 3D FEM method. The coupling of the building to the ground is established taking into account the soil–structure-interaction (SSI). The methodology proposed allows dealing with the three-dimensional characteristics of the problem with a reasonable computational effort. Using the proposed model, a numerical study is developed in order to better discern the impact of the use of floating slabs systems for the isolation of vibrations in the tunnel on the dynamic response of a building located in the surrounding of the tunnel. The comparison between isolated and non-isolated scenarios allowed concluding that the mats stiffness is a key parameter on the efficiency of floating slab systems. Furthermore, it was found that the selection of the stiffness of the mats should be performed carefully in order to avoid amplification of vertical vibrations of the slabs of the building.  相似文献   
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