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191.
192.
Spatial heterogeneity is ubiquitous in nature, which may significantly affect the soil hydraulic property curves. The models of a closed‐form functional relationship of soil hydraulic property curves (e.g. VG model or exponential model) are valid at point or local scale based on a point‐scale hydrological process, but how do scale effects of heterogeneity have an influence on the parameters of these models when the models are used in a larger scale process? This paper uses a two‐dimensional variably saturated flow and solute transport finite element model (VSAFT2) to simulate variations of pressure and moisture content in the soil flume under a constant head boundary condition. By changing different numerical simulation block sizes, a quantitative evaluation of parameter variations in the VG model, resulting from the scale effects, is presented. Results show that the parameters of soil hydraulic properties are independent of scale in homogeneous media. Parameters of α and n in homogeneous media, which are estimated by using the unsaturated hydraulic conductivity curve (UHC) or the soil water retention curve (WRC), are identical. Variations of local heterogeneities strongly affect the soil hydraulic properties, and the scale affects the results of the parameter estimations when numerical experiments are conducted. Furthermore, the discrepancy of each curve becomes considerable when moisture content becomes closer to a dry situation. Parameters estimated by UHC are totally different from the ones estimated by WRC. Copyright © 2012 John Wiley & Sons, Ltd. 相似文献
193.
194.
固体聚合膜电解浓集法是浓缩氚含量较低(1 Bq/m~3)的天然水样的常用方法,但因水样自身含有杂质离子或电解装置聚合膜带入杂质进入浓集液,使浓集液偏酸性,在测量过程中易产生化学淬灭效应,导致氚的测量值偏低。本文研究了水样自身存在的杂质离子和聚合膜上残留的杂质离子、样品溶液的pH值及其电导率所产生的化学淬灭效应的影响,实验表明,为减少化学淬灭效应,提高测量低含量氚的准确性,需保证水样溶液呈中性,电导率≤1μS/cm,同时避免杂质沉积在聚合膜上。如果水样溶液的pH值偏酸性、电导率大于1μS/cm,可采用酸碱混合型离子交换树脂去除水样中自身的杂质;对于聚合膜引入的杂质,可在电解后的水样中加入微量氨水将其pH值调节至中性。 相似文献
195.
了解华南各岩石圈块体壳幔结构和各向异性方面的差异是揭示华南深部构造演化的基础。本文利用布设于华南的两条宽频地震测线观测数据,采用多种地震学方法对华南的地壳上地幔结构和各向异性进行了研究。接收函数结果表明,华南地区地壳厚度和岩石圈厚度都较薄,地壳厚度自东南沿海向西北内陆增厚,扬子克拉通的泊松比(波速比)低于华夏块体,表明扬子克拉通地壳较华夏块体更偏长英质。约北纬29°以北的扬子克拉通地幔转换带厚度明显增厚,可能是由地幔转换带底部停滞的冷的古太平洋板片或中生代克拉通碰撞残留造成的。层析成像结果显示华南上地幔具有很强的横向差异性,上地幔中的强烈低速异常体可能对应了晚中生代发生广泛岩浆作用时的岩浆房和岩浆通道。台湾下方的上地幔存在南北横向差异明显的高速异常,分别对应台湾南部向东俯冲的欧亚板块及台湾北部向北俯冲的菲律宾海板块。俯冲的欧亚板块在台湾南部是连续的,而在台湾中北部,由于与菲律宾海板块的相互作用,俯冲的欧亚板块被折断。剪切波分裂结果显示,以江绍断裂为界,华夏块体与扬子克拉通的岩石圈地幔各向异性存在明显的横向变化,表明两者的构造演化过程有显著差异。 相似文献
196.
197.
Based on the dynamic framework of WRF and Morrison 2-moment explicit cloud scheme, a salt-seeding scheme was developed and used to simulate the dissipation of a warm fog event during 6–7 November 2009 in the Beijing and Tianjin area. The seeding effect and its physical mechanism were studied. The results indicate that when seeding fog with salt particles sized 80 μm and at a quantity of 6 gm~(-2) at the fog top, the seeding effect near the ground surface layer is negative in the beginning period, and then a positive seeding effect begins to appear at 18 min, with the best effect appearing at 21 min after seeding operation. The positive effect can last about 35 min. The microphysical mechanism of the warm fog dissipation is because of the evaporation due to the water vapor condensation on the salt particles and coalescence with salt particles.The process of fog water coalescence with salt particles contributed mostly to this warm fog dissipation. Furthermore, two series of sensitivity experiments were performed to study the seeding effect under different seeding amounts and salt particles sizes. The results show that seeding fog with salt particles sized of 80 μm can have the best seeding effect, and the seeding effect is negative when the salt particle size is less than 10 μm. For salt particles sized 80 μm, the best seeding effect, with corresponding visibility of 380 m, can be achieved when the seeding amount is 30 g m~(-2). 相似文献
198.
A comprehensive classification of anomalous circulation patterns responsible for persistent precipitation extremes in South China 下载免费PDF全文
Based on observational precipitation at 63 stations in South China and NCEP NCAR reanalysis data during 1951 2010,a cluster analysis is performed to classify large-scale circulation patterns responsible for persistent precipitation extremes(PPEs) that are independent of the influence of tropical cyclones(TCs).Conceptual schematics depicting configurations among planetary-scale systems at different levels are established for each type.The PPEs free from TCs account for 38.6%of total events,and they tend to occur during April August and October,with the highest frequency observed in June.Corresponding circulation patterns during June August can be mainly categorized into two types,i.e.,summer-Ⅰ type and summer-Ⅱtype.In summer-Ⅰ type,the South Asian high takes the form of a zonal-belt type.The axis of upstream westerly jets is northwest-oriented.At the middle level,the westerly jets at midlatitudes extend zonally.Along the southern edge of the westerly jet,synoptic eddies steer cold air to penetrate southward;the Bay of Bengal(BOB) trough is located to the north;a shallow trough resides over coastal areas of western South China;and an intensified western Pacific subtropical high(WPSH) extends westward.The anomalous moisture is mainly contributed by horizontal advection via southwesterlies around 20°N and southeasterlies from the southern flange of the WPSH.Moisture convergence maximizes in coastal regions of eastern South China,which is the very place recording extreme precipitation.In summer-Ⅱ type,the South Asian high behaves as a western-center type.The BOB trough is much deeper,accompanied by a cyclone to its north;and a lower-level trough appears in northwestern parts of South China.Different to summer-Ⅰ type,moisture transport via southwesterlies is mostly responsible for the anomalous moisture in this type.The moisture convergence zones cover Guangdong,Guangxi,and Hainan,matching well with the areas of flooding.It is these set combinations among different systems at different levels that trigger PPEs in South China. 相似文献
199.
青藏高原春季地表感热异常对西北地区东部降水变化的影响 总被引:1,自引:0,他引:1
利用青藏高原地区代表站点的实测地表热通量数据、JRA-55和NCEP再分析资料以及中国西北地区东部代表站点的降水资料等数据,通过波文比分析、奇异值分析(下称SVD)以及环流场的合成分析等方法,研究了青藏高原地区春季地表加热场异常与同期中国西北地区东部降水变率的关系,结果表明:(1)高原春季波文比值的变化反映出高原地表的非绝热加热中,春季感热加热的贡献较为显著,是高原春季地表加热的主要成分;(2)SVD分析表明,春季高原地表感热的异常与同期中国西北地区东部的降水存在负相关关系,春季高原地表感热增强的年份,中国西北地区东部的春季降水减少;(3)春季地表感热强-弱年的高原周边垂直环流偏差场表明,春季高原地表感热的年际异常增强(减弱)会引起高原周边地区的垂直环流场上升气流的减弱(增强);(4)相对涡度场、位势高度场、风场和水汽通量散度场的合成分析表明,春季高原地表感热偏强的年份,中国西北地区东部对流层高层以正涡度和气流的辐合运动异常为主,中低层以负涡度和辐散下沉运动异常为主,因此中国西北地区东部春季的水汽辐合由低层向高层逐渐减弱,不利于春季降水的发生。 相似文献
200.
2014—2016年超强厄尔尼诺事件的气候影响 总被引:7,自引:4,他引:3
2014—2016年,赤道中东太平洋发生了一次超强厄尔尼诺事件,此次事件于2015年11月达到峰值,12月开始衰减。其峰值强度超过了1951年以来另外两次超强厄尔尼诺事件(1982/1983年和1997/1998年)的强度,成为了1951年以来最强的事件。截至2016年4月,事件已持续20个月,也成为了1951年以来持续时间最长的厄尔尼诺事件。在这次事件的发展过程中,热带太平洋至东亚副热带地区的大气环流表现出了显著的响应特征:赤道中东太平洋对流活动加强,异常上升运动发展,而赤道西太平洋对流活动受抑制,异常下沉运动控制;菲律宾附近异常反气旋生成并发展加强,西太平洋副热带高压强度偏强、西伸脊点异常偏西,尤其2015年冬季副热带高压强度为1980年以来最强。与此同时,2015年秋、冬季,我国长江以南大部降水偏多,尤其冬季华南地区(广东、广西、海南三省区)平均降水量达历史第一,较常年偏多1.6倍以上。近期,超强厄尔尼诺正处于衰减阶段,但是考虑到热带印度洋暖海温的“接力”作用,厄尔尼诺事件对2016年春、夏季我国气候异常的影响可能仍将持续。 相似文献