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Vertical dynamic and thermodynamic characteristics of urban lower boundary layer and its relationship with aerosol concentration over Beijing 总被引:1,自引:0,他引:1
By utilizing observational data from a 325 m tower of the Institute of Atmospheric Physics (IAP), Chinese Academy of Sciences (CAS) on March 19-29, 2001 and August 11-25, 2003, a comprehensive study was conducted on the vertical dynamical and thermodynamic characteristics of the urban lower boundary layer (ULBL) and its relationship with aerosol concentration over Beijing. Firstly, a comparative analysis was made on the gradient data (wind, temperature and humidity), ultrasonic data (atmospheric turbulences) and air-quality observations at different tower heights (47, 120 and 280 m). Secondly, a diagnosis was made to reveal the major features of normalized variances of velocity and temperature, turbulence kinetic energy as well as their relationship with aerosol concentrations. Furthermore, the characteristics of the ULBL vertical structure and the TSP concentration/distribution variations during a sand/dust weather process were also analyzed. The outcome of the study showed that under unstable stratification, the normalized variances of velocity (σu/u*, σv/u*, σw/u*) and temperature (σT/T*) at 47 and 120 m heights fit the Monin-Obukhov similarity (MOS) framework and the fitting formulas were given out accordingly. According to the stratification parameter (z′/L), the stable ULBL could be divided into 2 zones. With z′/L<0.1, it was a weakly stable zone and MOS framework was applicable. The other was a highly stable zone with z′/L>0.1 and the normalized velocity variances tended to increase along with higher stability, but it remained constant for normalized temperature variances. At daytime, the near-surface layer includes two heights of 47 and 120 m, while 280 m has been above it. The ULBL analysis in conjunction with a sand/dust weather process in Beijing in March 2001 indicated that the maximum concentration of Total Suspended Particulates (TSP) at 320 m reached 913.3 μg/m3 and the particles were transported from the upper to lower ULBL, which was apparently related to the development process of a low-level jet and its concomitant strong sinking motion. 相似文献
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Based on the land surface temperature (LST), the land cover classification map,vegetation coverage, and surface evapotranspiration derived from EOS-MODIS satellite data, and by the use of GIS spatial analytic technique and multivariate statistical analysis method, the urban heat island (UHI) spatial distribution of the diurnal and seasonal variabilities and its driving forces are studied in Beijing city and surrounding areas in 2001. The relationships among UHI distribution and landcover categories, topographic factor, vegetation greenness, and surface evapotranspiration are analyzed. The results indicate that: (i) The significant UHI occur in Beijing city areas in the four seasons due to high heat capacity and multi-reflection of compression building, as well as with special topographic features of its three sides surrounded by mountains,especially in the summer. The UHI spatial distribution is corresponding with the urban geometry structure profile. The LST difference is approximately 4-6℃ between Beijing city and suburb areas, comparatively is 8- 10℃ between Beijing city area and outer suburb area in northwestern regions. (ii) The UHI distribution and intensity in daytime are different from nighttime in Beijing city area, the nighttime UHI is obvious. However, in the daytime, the significant UHI mainly appears in the summer, the autumn takes second place, and the UHI in the winter and the spring seem not obvious. The surface evapotranspiration in suburb areas is larger than that in urban areas in the summer, and high latent heat exchange is evident, which leads to LST difference between city area and suburb area. (iii) The reflection of surface landcover categories is sensitive to the UHI, the correlation between vegetation greenness and UHI shows obviously negative.The scatterplot shows that there is the negative correlation between NDVI and LST (R2 = 0.6481).The results demonstrate that the vegetation greenness is an important factor for reducing the UHI,and large-scale construction of greenbelts can considerably reduce the UHI effect. 相似文献
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于莱州湾南岸ZK32-1钻孔第三陆相层上下边界处选取自生钙质结核,采用样品全溶铀系等时线法(TSD法)测定钙质结核的年龄。测试结果表明,所有等时线上的数据都有很好的线性关系,表明所获得的年龄数据是合理的。通过对样品代表性的讨论,说明所选取的钙质结核的年龄确可代表其所在地层的年龄,从而得出莱州湾南岸第三陆相层的沉积起止时间为72.16ka B.P.±7.41ka B.P.到45.34ka B.P.±5.35ka B.P.的结论。本研究首次获得莱州湾南岸地层的铀系TSD年龄,为全面认识该地区晚更新世地层年代学提供了一个新视角。 相似文献
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川纹笛鲷消化道优势菌群PCR-DGGE指纹图谱比较分析 总被引:2,自引:0,他引:2
采用免培养的16S rDNA梯度凝胶电泳技术(DGGE)对集约化海水网箱养殖川纹笛鲷(Lutjanus sebae)的消化道胃壁、胃内容物、肠壁、肠内容物优势菌群结构进行了比较分析。研究结果显示,川纹笛鲷消化道存在着丰富多样的细菌群落,对DGGE指纹图谱聚类分析表明菌群组成相似度高于55%,其中胃内容物及胃壁细菌组成相似度最高(90%),这可能与摄食饵料在消化道推移有关;而胃壁与肠壁相似度相对最差,可能反应了由于生理环境不同引起的宿主差异性。通过建立川纹笛鲷消化道16S rDNA-DGGE指纹图谱及比较分析,为澄清川纹笛鲷消化道微生物区系奠定了基础。 相似文献
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融合应用分布滞后非线性模型(Distributed Lag Mon-linear Model,DLNM)与广义相加模型(Generalized Additive Model,GAM),在控制新冠疫情影响、节假日效应、星期效应、长期趋势以及大气污染因子等因素基础上,探究了2018—2020年南京市日最高气温与当地支气管类、心血管类疾病就诊人数的暴露反应关系,包括滞后效应和累积效应。结果表明:对于支气管类疾病,冬季为高风险期,低温的即时效应和累积效应显著;中短期累积作用下,气温越低危险性越大;长期累积作用下,10 ℃左右的危险性最大;高温累积效应不显著,30 ℃左右滞后效应显著。对于心血管类疾病,低温的即时效应和累积效应显著,11~12 ℃左右影响的累积效应和持续性最强;高温的滞后效应显著,温度越高,滞后效应越明显;长期暴露于高温环境的患病风险会快速增加,日最高气温32 ℃左右的暴露累积风险最大。针对这两类疾病,当日最高气温在22~24 ℃范围内,属于人体最舒适温度。 相似文献
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疫苗是一种针对特定疾病并改善免疫者免疫力的生物制剂。疫苗能刺激免疫者的免疫系统产生特异性免疫反应和非特异性免疫反应,提高免疫者的抗病能力,达到免疫保护的效果。浸泡免疫是鱼类特有的免疫接种方法,该方法能简化人工操作、减少工作强度、降低鱼体应激、刺激鱼体的黏膜系统,可在短时间内完成大量的免疫工作。正确的疫苗使用有助于提高疫苗的效果。作者对鱼类黏膜免疫机制、鱼类疫苗浸泡免疫方式、浸泡免疫策略优化的方法、浸泡免疫面临的问题以及浸泡免疫的发展趋势等进行综述,以期为鱼类病害防治和鱼体免疫增强的研究提供新思路和新策略。 相似文献
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浙东白垩纪北漳和梁弄花岗岩体及其暗色岩石包体研究 总被引:7,自引:0,他引:7
浙东地区晚中生代花岗岩类在岩性上分为三类:花岗岩-二长花岗岩、钾长花岗岩和A型花岗岩。对后两类花岗岩已有较多研究,但对前一类,尤其是二长花岗岩的研究还较薄弱。选择浙东具代表性的北漳和梁弄二长花岗岩体及其所含暗色岩石包体,以及共生的石英闪长岩类,通过系统的岩石学与地球化学对比研究,提出浙东二长花岗岩属准铝质、高钾钙碱性Ⅰ型花岗岩类演化系列,暗色岩石包体是由花岗质岩浆在深部析离出的镁铁质微粒包体(MME),成分特征类似于石英闪长岩,说明三者具内在成因联系,均与俯冲作用关系密切。 相似文献