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371.
河口区域冲淡水锋面及物质输运会对台风产生快速而复杂的响应,并产生显著的生态效应及沉积过程,且不同类型的台风会对水动力及物质输运产生不同影响。本文以长江河口为研究区域,利用盐度锋面附近的浮标站点观测数据,发现在登陆型超强台风“利奇马”的影响下,旋转流特征消失,站点全水深出现持续近两天的北向流;而在转向型强台风“巴威”的影响下,出现持续约三天的全水深南向流。应用覆盖长江口及邻近海域的有限体积海洋模型(FVCOM)对两次台风过程进行模拟,实验对比台风过境前后流场、盐度场并且计算淡水通量,发现台风过境时通过破坏夏季典型的向海扩张的表层平流型羽流结构,从而促进盐度垂向混合,导致大量淡水堆积在靠岸一侧,加强了沿岸的淡水输运,进而形成底部捕获型羽流。对于登陆型台风“利奇马”的影响,淡水输运主要沿苏北海岸向北,而在转向型台风“巴威”偏北风的影响下,淡水则显著沿岸向浙闽海域流动。这两种台风过后,表层淡水开始向海扩展,垂向盐度分层再一次呈现,在2~3天内完全恢复为表层平流型羽流结构。  相似文献   
372.
Oceanic contribution to the poleward heat flux in the climate system includes two components: the sensible heat flux and the latent heat flux. Although the latent heat flux has been classified as atmospheric heat flux exclusively, it is argued that oceanic control over this component of poleward heat flux should play a critically important role. The so-called swamp ocean model practice is analyzed in detail, and the critical role of oceanic circulation in the establishment of the meridional moisture transport is emphasized.  相似文献   
373.
钙质砂的水理性质对岛礁地下淡水透镜体的形成至关重要。通过室内试验的方法从透水性、容水性和给水性3个方面对南海钙质砂的水理性质进行了研究,并在此基础上进一步结合数值模拟手段,探讨了上述相关性质对岛礁淡水透镜体形成的影响。结果表明:南海钙质砂多具有级配不良且不均匀的特征;其渗透系数通常在0.023~110 m/d之间,区域间差异较大,而孔隙度和给水度则主要集中在0.40~0.55和0.012~0.310之间,与同粒径范围的陆源砂相比,呈现出容水性好但给水性偏低的特征。钙质砂的水理性质对岛礁地下淡水透镜体形成的影响主要体现在流速、厚度、资源储量以及形成时间等方面,其中钙质砂的透水性越好,地下水中的流速越快,咸淡水间的混合作用越强,导致淡水透镜体的厚度越薄,储量越少;给水性则主要影响钙质砂中淡水透镜体的资源储量,对淡水透镜体的厚度及形状影响较小。  相似文献   
374.
快速有效的生物监测指标对于评估、保护、管理和恢复淡水生态系统至关重要.传统评估方法主要利用指示生物或类群的出现率和多度信息,但是忽略了水体环境中“生物”与“生物”,以及“生物”与“环境”间相互作用的复杂关系,而这些相互作用对淡水生态系统的生物多样性、生态系统服务功能以及生态系统对环境变化的响应有着深刻影响.生物共现网络是群落水平物种互作的结构模型,通过物种在群落出现及丰度数据,描述了物种间潜在的相互作用、群落的基本结构,反映群落在生态系统的功能和结构特性.生物共现网络展示了淡水生态系统中所有生物体之间潜在的相互作用关系,其拓扑结构特性可与特定的生态系统状态相关联,能够揭示生态系统的组织规律及其功能,可作为早期的、灵敏的生物指标,是一种很有应用前景的评估淡水生态系统状态和稳定性的工具.  相似文献   
375.
关于淡水浮游动物和原生动物分开研究的建议   总被引:1,自引:0,他引:1  
陈非洲 《湖泊科学》2016,28(3):691-691
正《湖泊科学》编辑部:国内关于淡水浮游动物的文章中,一般浮游动物包含四大类,即原生动物、轮虫、枝角类和桡足类,其中枝角类和桡足类又合称为浮游甲壳动物.除了这四大类外,浮游动物还包括软甲类甲壳动物(如糠虾、钩虾等)、水生昆虫(如幽蚊等)、水蜘蛛、丰年虫、淡水水母、浮游贝类幼虫等,由于这些类群在淡水水体中分布有限,尤其在敞水区,一般的浮游动物研究并不包括这些类群.从分类阶元来看,淡水原生动物的主要种类属于原生动物亚界的肉鞭门和纤毛门,肉鞭门包括鞭毛亚门(植鞭毛纲-自养鞭毛虫和动鞭毛纲一异养鞭毛虫)、肉足亚门根足总纲(变形虫和有壳肉足虫),一般将淡  相似文献   
376.
The south-eastern United States and Gulf Coast of Mexico is physiographically diverse, although dominated by a broad coastal plain. Much of the region has a humid, warm temperate climate with little seasonality in precipitation but strong seasonality in runoff owing to high rates of summer evapotranspiration. The climate of southern Florida and eastern Mexico is subtropical with a distinct summer wet season and winter dry season. Regional climate models suggest that climate change resulting from a doubling of the pre-industrial levels of atmospheric CO2 may increase annual air temperatures by 3–4°C. Changes in precipitation are highly uncertain, but the most probable scenario shows higher levels over all but the northern, interior portions of the region, with increases primarily occurring in summer and occurring as more intense or clustered storms. Despite the increases in precipitation, runoff is likely to decline over much of the region owing to increases in evapotranspiration exceeding increases in precipitation. Only in Florida and the Gulf Coast areas of the US and Mexico are precipitation increases likely to exceed evapotranspiration increases, producing an increase in runoff. However, increases in storm intensity and clustering are likely to result in more extreme hydrographs, with larger peaks in flow but lower baseflows and longer periods of drought. The ecological effects of climate change on freshwaters of the region include: (1) a general increase in rates of primary production, organic matter decomposition and nutrient cycling as a result of higher temperatures and longer growing seasons: (2) reduction in habitat for cool water species, particularly fish and macroinvertebrates in Appalachian streams; (3) reduction in water quality and in suitable habitat in summer owing to lower baseflows and intensification of the temperature–dissolved oxygen squeeze in many rivers and reservoirs; (4) reduction in organic matter storage and loss of organisms during more intense flushing events in some streams and wetlands; (5) shorter periods of inundation of riparian wetlands and greater drying of wetland soils, particularly in northern and inland areas; (6) expansion of subtropical species northwards, including several non-native nuisance species currently confined to southern Florida; (7) expansion of wetlands in Florida and coastal Mexico, but increase in eutrophication of Florida lakes as a result of greater runoff from urban and agricultural areas; and (8) changes in the flushing rate of estuaries that would alter their salinity regimes, stratification and water quality as well as influence productivity in the Gulf of Mexico. Many of the expected climate change effects will exacerbate current anthropogenic stresses on the region's freshwater systems, including increasing demands for water, increasing waste heat loadings and land use changes that alter the quantity and quality of runoff to streams and reservoirs. Research is needed especially in several critical areas: long-term monitoring of key hydrological, chemical and biological properties (particularly water balances in small, forested catchments and temperature-sensitive species); experimental studies of the effects of warming on organisms and ecosystem processes under realistic conditions (e.g. in situ heating experiments); studies of the effects of natural hydrological variation on biological communities; and assessment of the effects of water management activities on organisms and ecosystem processes, including development and testing of management and restoration strategies designed to counteract changes in climate. © 1997 John Wiley & Sons, Ltd.  相似文献   
377.
From a newly discovered Early Cretaceous fossil site at the Sanlianhe Coal Mine in Tahe County, Heilongjiang Province, the most northern area in China, two freshwater fossil fish had been recovered. This paper reports their classifications and implications regarding the palaeobiogeography of the Jehol Biota. The fish assemblage consists of Yanosteus sp. (Acipenseriforms) and Sinamia sp. (Amiiformes). Both are important members of the well known Jehol Biota, and their occurrence supports the correlation of the Yiliekede Formation at Sanlianhe Coal Mine site with the Jiufotang Formation of West Liaoning. The remains of the Yanosteus sp. from this locality is the first known record of the genus other than in the Yan‐Liao area of China, and the specimens of Sinamia sp. is quite similar to what may be a new species of Sinamia from West Liaoning. The new fossil site represents the most northern site that is undoubtedly part of the extent of the Jehol Biota as currently understood. The northern Great Xing'an Range area is an important region that may link correlations between the Early Cretaceous continental biotas of China, Mongolia and Russia. Copyright © 2010 John Wiley & Sons, Ltd.  相似文献   
378.
沿黄地区浅层淡水水源地傍河取水技术探讨   总被引:1,自引:0,他引:1  
为开辟区域供水新途径,经过对沿黄地区供水勘察资料的分析研究,认为临黄靠渠区,浅层地下水水质较好。从黄河侧渗补给稳化的角度分析,具备了形成中小型供水水源地的条件,技术可行、经济便利,能够满足该区村镇生活及工矿企业用水需求,是缓解该区供水危机的新途径。  相似文献   
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