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1.
太湖梅梁湾有色可溶性有机物的空间分布及光学行为   总被引:6,自引:0,他引:6  
2004年3月对太湖梅梁湾有色可溶性有机物(CDOM)的吸收和荧光等光学行为进行研究,并由此探讨了CDOM的空间分布.结果表明,溶解性有机碳(DOC)的浓度在10.48-19.72 mg/L间变化,其均值为13.20±2.79 mg/L;CDOM在280 nm,355 nm和440 nm的吸收系数分别为18.73-31.91 m-1(平均值23.19±4.36 m-1)、4.63-7.14 m-1(平均值5.76±0.91 m-1)、1.45-2.99 m-1(平均值1.92±0.40 m-1);355 nm波长处CDOM的比吸收系数为0.34-0.57 L/(mg·m),平均值0.44±0.06 L/(mg·m);表征CDOM分子大小的比值a(250)/a(365)变化范围为5.05-7.55;355 nm的激发波长、450 nm的发射波长处的荧光值的变化范围0.79-3 04 nm-1(平均值1.69±0.77 nm-1).CDOM吸收系数、DOC浓度、荧光强度的分析显示CDOM浓度呈现从河口往湾内、湾口递减的趋势.CDOM吸收与DOC浓度的相关性随波长的降低而增加,在短波部分存在明显的正相关.355 nm处的荧光值、DOC浓度与CDOM吸收系分别存在如下显著性正相关关系:Fn(355)=0.692(±0.135)a(355)-2.297(±0.786),a(355)=0.233(±0.061)DOC 2.690(±0.816).280 -500 nm、280-360 nm、360-440 nm指数函数斜率S值分别为13.86±0.91、18.54±1.11、12.93±0.92μm-1,S值与比吸收系数之间存在显著的负线性相关关系,而与a(25)/a(365)值则存在显著的正线性关系.比吸收系数越大,a(250)/a(365)值和S值就越小,对应的CDOM分子量就越大,腐质酸的比例就越高.  相似文献   

2.
长江中游湖泊CDOM光学特性及其空间分布对比   总被引:4,自引:1,他引:3  
根据2007年秋季洪湖、东湖和梁子湖的调查结果,分析了长江中游3个典型湖泊CDOM光学特性及其空间分布差异.结果表明:(1)CDOM吸收系数在洪湖最高,梁子湖最低;(2)在洪湖,CDOM吸收系数受陆源影响较大,与悬浮泥沙浓度呈现较好正相关关系,而在梁子湖,CDOM吸收系数主要受到浮游植物降解贡献,与叶绿素浓度具有显著的正相关关系;(3)洪湖与东湖指数函数斜率S值变化不大;梁子湖CDOM吸收系数空间分布差异较大,指数函数斜率S值与400nm波段CDOM吸收系数ag(400)显著负相关.在建立梁子湖CDOM遥感反演模型时,应引入上述指数甬数斜率S值与400nm波段CDOM吸收系数之间的线性函数,对CDOM吸收系数的指数模型进行优化.  相似文献   

3.
基于2015年8月采集的24个淮河流域以周村水源水库为代表的表层水样的有色溶解性有机物(CDOM)吸收系数数据,研究了CDOM吸收光谱的空间分布特征,考察了CDOM的吸收系数与水质参数的相关关系,同时探讨了周村水库夏季CDOM的潜在来源.结果显示:依据CDOM的吸收光谱空间分布特性及采样点分布特征,周村水库分为入库口、过渡区和主库区3个特征水域;CDOM的吸收系数沿入库口到主库区依次递减,S值呈现相反的趋势;分析发现S240~500与a(355)和a*(355)呈极显著负相关(R~2=0.98、0.88);CDOM吸收系数a(355)与溶解性有机碳(DOC)浓度具有良好的线性相关,有利于建立DOC遥感反演模型;同时,CDOM吸收系数a(355)与a_(ph)(440)存在极显著正线性相关,表明浮游植物的新陈代谢及其降解产物是夏季周村水库CDOM的潜在来源.综上,通过对夏季周村水库水体CDOM的研究,丰富了关于水源水体CDOM的调查资料,可为日后水库的管理提供技术支撑.  相似文献   

4.
云南高原湖泊有色可溶性有机物和颗粒物光谱吸收特性   总被引:9,自引:6,他引:3  
云南高原湖泊是我国湖泊分布最密集的五大湖群之一,不但湖泊数量众多而且类型多样.由于湖泊所处位置海拔较高,容易受只益增强UV-B辐射影响.通过对云南高原34个湖泊有色可溶性有机物和颗粒物吸收测定,分析其光谱吸收特性及对总吸收的贡献,有利于深刻理解紫外辐射在高原湖泊内衰减.不同湖泊间CDOM吸收差异明显,其大小与水体营养盐状况相关,CDOM吸收系数与水体总氮存在显著正相关.增加背景项的指数函数模型能最好模拟CDOM光谱吸收.除在浮游植物浓度非常高的杞麓湖、听湖、星云湖,颗粒物吸收系数在675nm附近存在一个吸收蜂外,其它湖泊总颗粒物光谱吸收大致随波长的增加吸收系数逐渐降低,呈现非色素颗粒物光谱吸收特征,整体上颗粒物吸收以非色素颗粒物为主.CDOM对总吸收的贡献主要集中在600nm以下波长,尤其是400nm以下的紫外波段,其在紫外波段(350-400nm)的贡献明显要大于光合有效辐射波段(400-700nm)(ANOVA,P<0.001).特别对于透明度SD≥1.0的清澈型湖泊,CDOM吸收对紫外辐射衰减的贡献更大,其吸收很大程度上决定了紫外辐射的影响深度.  相似文献   

5.
有色溶解有机物吸收光谱模型对比   总被引:1,自引:1,他引:0  
利用6种统计模型对吉林省石头口门水库、松花湖CDOM吸收光谱曲线(350-650nm)进行拟合,从统计F值大小和归一化残差两个角度均证明双曲线模型效果最好;采用15个波段范围拟合CDOM吸收均值光谱斜率S,单指数模型S值变化幅度较大,平均变异系数为12.41%;而双曲线模型S值相对稳定,变异系数为5.85%.将双曲线模型应用于生物光学模型,研究表明双曲线模型可以反映CDOM时空变化规律和物质组成;且双曲线模型拟合光谱斜率S值与CDOM特征波长吸收具有很好的负相关关系,呈幂指数递减,决定系数达0.8137.  相似文献   

6.
东太湖CDOM吸收光谱的影响因素与参数确定   总被引:19,自引:7,他引:12  
CDOM吸收特性是湖泊水色遥感的重要研究内容之一,影响着水体的遥感反射率;吸收光谱的形状一般符合波长的负指数关系,但不同水体的形态因子即S值是不同的.实地采集东太湖水样,实验室测量叶绿素、悬浮物质以及黄色物质的组份含量,室内测试计算水样的CDOM吸收光谱,根据光谱曲线形状,把样点分为三组,分别进行考察,结果发现对东太湖春季水体而言,浮游植物的降解对CDOM吸收具有重要甚至主导作用;水体中有机悬浮颗粒占有一定的比例,在测试或计算东太湖总的吸收或散射系数时,必须充分考虑有机悬浮颗粒的吸收与散射特性,否则会带来较大的误差;以500nm为分界点,把300—700nm的波段范围分为两个部分即300—500nm和500—700nm,分别定义CDOM吸收光谱的曲线斜率即S值,可以提高CDOM吸收光谱的估测精度,把S值定义为随波长线性变化的函数,可以进一步提高CDOM吸收光谱的估测精度,对东太湖春季水体而言,当:300≤λ<500nm时,S(μm-1)=-0.0193×λ 20.821,当500≤λ≤700nm时,S(μm-1)=-0.0121×λ 16.003.  相似文献   

7.
兴凯湖春季水体悬浮颗粒物和CDOM吸收特性   总被引:1,自引:0,他引:1  
为了分析兴凯湖水体光学活性物质的吸收特性、来源和空间分布以及对400~700 nm范围内总吸收的贡献,于2013年5月对该水体进行野外实验,对水体中浮游藻类、非藻类颗粒物和有色可溶性有机物的吸收特性和水质参数进行测定.结果表明:总悬浮颗粒物的吸收光谱与非藻类颗粒物相似,色素颗粒物含量较少且单一,非藻类颗粒物在总悬浮颗粒物吸收中占主导地位,其贡献率始终在50%以上.CDOM吸收曲线的拟合函数斜率值Sg均高于其它水体.440 nm处总悬浮颗粒物和非藻类颗粒物的吸收系数ap(440)、ad(440)与总悬浮颗粒物、无机悬浮颗粒物和有机悬浮颗粒物浓度相关性均较好,与叶绿素a(Chl.a)浓度的相关性较差.兴凯湖与其它Ⅱ类水体的差异性表现在440 nm处CDOM吸收系数ag(440)与Chl.a浓度、溶解性有机碳(DOC)浓度均无显著相关性,说明DOC以无色部分为主.总体上,大兴凯湖各吸收系数和水质参数均值均低于小兴凯湖,后者水质受农耕区退水及周围渔业、旅游业的影响较大.  相似文献   

8.
太湖流域昆承湖春季颗粒物和有色可溶性有机物吸收特性   总被引:4,自引:1,他引:3  
利用2010年4月23日在昆承湖采集的水体吸收系数数据,对总悬浮物颗粒物、浮游植物色素颗粒物、非色素颗粒物和有色可溶性有机物的吸收特征进行研究.结果表明,春季昆承湖水体除675 nm附近具有叶绿素吸收峰的红光波段外,非色素颗粒物吸收系数大于浮游植物色素颗粒物吸收系数,总颗粒物吸收系数光谱分布与非色素颗粒物的吸收光谱类似...  相似文献   

9.
太湖冬季有色可溶性有机物吸收荧光特性及遥感算法   总被引:3,自引:2,他引:1  
基于2006年和2007年1月两次太湖采样,对50个点位的有色可溶性有机物(CDOM)光谱吸收、荧光、溶解性有机碳(DOE)浓度及遥感反射率进行测定与分析,探讨冬季太湖CDOM的吸收荧光特性及空间分布,建立CDOM吸收系数的遥感反演算法.结果表明,太湖冬季CDOM在355nm处吸收系数a(355)变化范围和均值分别为1...  相似文献   

10.
暴雨事件对千岛湖CDOM及颗粒物吸收光谱特征的影响   总被引:1,自引:1,他引:0  
为了研究暴雨事件对千岛湖有色可溶性有机物(CDOM)和颗粒物吸收光谱的影响,利用2016年暴雨前(3月1-6日)和暴雨后(4月6-11日)采集的水样,对暴雨前、后千岛湖水体CDOM、浮游藻类和非藻类颗粒物的吸收光谱特征进行分析,探讨暴雨事件对其造成的影响.结果表明:千岛湖作为典型的深水型内陆湖泊,其CDOM、浮游藻类颗粒物和非藻类颗粒物的吸收强度较太湖等浅水型湖泊弱.暴雨前,CDOM光谱吸收系数aCDOM(λ)值在0~0.6 m-1范围内变化,其光谱拟合系数SCDOM的均值为0.0158±0.00145 nm-1.暴雨前浮游藻类光谱吸收在总颗粒物中占主导,aph(λ)在0~0.35m-1范围内变化,非藻类颗粒物光谱吸收系数aNAP(λ)在0~0.15 m-1范围内变化,其光谱拟合系数SNAP均值为5.62±0.57μm-1;暴雨后CDOM光谱吸收系数aCDOM(λ)值在0~1.6 m-1范围内变化,其光谱拟合系数SCDOM的均值为0.0157±0.00101 nm-1.暴雨后浮游藻类光谱吸收系数aph(λ)在0~2.5 m-1范围内变化,非藻类颗粒物光谱吸收在部分区域已占据主导地位,aNAP(λ)在0~0.8 m-1范围内变化,其光谱拟合系数SNAP均值为5.72±0.68μm-1.由CDOM吸收特征值相对分子质量M值得出,暴雨前、后千岛湖不同区域CDOM组成都以富里酸为主,且暴雨前M值分布较均匀,暴雨后M值呈现从新安江向缓冲区、东南区递增的趋势,这说明西北区随暴雨输入的腐殖酸增加了CDOM的相对分子质量.暴雨对SNAP值影响较大的区域为西北区、西南区、东北区,对西南区影响最小.本研究为使用光学手段深入探讨暴雨事件对千岛湖水环境的影响提供重要依据.  相似文献   

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《国际泥沙研究》2014,(4):F0003-F0003
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《国际泥沙研究》2014,(2):F0003-F0003
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《国际泥沙研究》2014,(3):F0003-F0003
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A procedure for short-term rainfall forecasting in real-time is developed and a study of the role of sampling on forecast ability is conducted. Ground level rainfall fields are forecasted using a stochastic space-time rainfall model in state-space form. Updating of the rainfall field in real-time is accomplished using a distributed parameter Kalman filter to optimally combine measurement information and forecast model estimates. The influence of sampling density on forecast accuracy is evaluated using a series of a simulated rainfall events generated with the same stochastic rainfall model. Sampling was conducted at five different network spatial densities. The results quantify the influence of sampling network density on real-time rainfall field forecasting. Statistical analyses of the rainfall field residuals illustrate improvement in one hour lead time forecasts at higher measurement densities.  相似文献   

18.
The partitioning of rain water into throughfall, stemflow and interception loss when passing through plant canopies depends on properties of the respective plant species, such as leaf area and branch angles. In heterogeneous vegetation, such as tropical forest or polycultural systems, the presence of different plant species may consequently result in a mosaic of situations with respect to quantity and quality of water inputs into the soil. As these processes influence not only the water availability for the plants, but also water infiltration and nutrient leaching, the understanding of plant effects on the repartitioning of rain water may help in the optimization of land use systems and management practices. We measured throughfall and stemflow in a perennial polyculture (multi‐strata agroforestry), monocultures of peach palm (Bactris gasipaes) for fruit and for palmito, a monoculture of cupuaçu (Theobroma grandiflorum), spontaneous fallow and primary forest during one year in central Amazonia, Brazil. The effect on rain water partitioning was measured separately for four useful tree species in the polyculture and for two tree species in the primary forest. Throughfall at two stem distances, and stemflow, differed significantly between tree species, resulting in pronounced spatial patterns of water input into the soil in the polyculture system. For two tree species, peach palm for fruit (Bactris gasipaes) and Brazil nut trees (Bertholletia excelsa), the water input into the soil near the stem was significantly higher than the open‐area rainfall. This could lead to increased nutrient leaching when fertilizer is applied close to the stem of these trees. In the primary forest, such spatial patterns could also be detected, with significantly higher water input near a palm (Oenocarpus bacaba) than near a dicotyledonous tree species (Eschweilera sp.). Interception losses were 6·4% in the polyculture, 13·9 and 12·3% in the peach palm monocultures for fruit and for palmito, respectively, 0·5% in the cupuaçu monoculture and 3·1% in the fallow. With more than 20% of the open‐area rainfall, the highest stemflow contributions to the water input into the soil were measured in the palm monocultures and in the fallow. Copyright © 1999 John Wiley & Sons, Ltd.  相似文献   

19.
Red tide, a recurrent phenomenon has become conspicuous in several Kashmir lake ecosystems since 1991. The responsible organism (Euglena pedunculata), a rare flagellate rediscovered in the Kashmir Himalaya (Khan 1993) caused first and unprecedented red tide outbreak, constituting a maximum of 96% of resident numerical phytoplankton density in Dal Lake. At present, conflicting hypotheses exist on the generation of causal assemblage(s) imparting redness to waters: Jeeji Bai (1991) linked its origin to acid precipitation – a fallout of burning oil‐fields during the Gulf War – whilst Khan (1993) holds local factor(s) responsible. Field/experimental studies support the latter contention that the influx of untreated sewage, in unison with warm temperatures, high levels of PhAR, iron and interruption to hydrological flow‐pattern together with absence/or reduction in grazing activity created conducive environmental milieu for red tide outbreak. Dal Lake “red tide” drifted the bloom‐inoculum to other waters, including Lake Wular, where additional ecological niches were carved out, threatening the aesthetic value and biological diversity of Kashmir lakes. Ecological monitoring indicates frequent seasonal red tide occurrence in Dal Lake (including summer‐autumn event of 1998) which testifies its unabated eutrophication status. Further studies are needed on ecological adaptability and biogeographic distribution of this rare and unique red tide‐causing flagellate.  相似文献   

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