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741.
用实测资料计算流域非点源污染负荷:以四川清平水库为例   总被引:10,自引:0,他引:10  
把流域非点源污染负荷分成地面径流污染负荷、地下径流污染负荷和壤中流污染负荷。用水文学方法找出典型年河水中地下径流成分,然后分割出壤中流和地面径流。再根据实测的水质和流量资料计算出流域非点源污染负荷。方法简单可靠,具有典型性和代表性。  相似文献   
742.
Reservoir water environment is a grey system. The grey clustering method is applied to assessing the reservoir water enviromnent to establish a relatively complete model suitable for the reservoir eutrophication evaluation and appropriately evaluate the quality of reservoir water, providing evidence for reservoir management. According to China's lakes and reservoir eutrophication criteria and the characteristics of China's eutrophication, as well as certain evaluation indices, the degree of eutrophication is classified into six categories with the utilization of grey classified whitening weight function to represent the boundaries of classification, to determine the clustering weight and clustering coefficient of each index in grey classifications, and the classification of each clustering object. The comprehensive evaluation of reservoir eutrophication is established on such a foundation, with Sichuan Shengzhong Reservoir as the survey object and the analysis of the data attained by several typical monitoring points there in 2006. It is found that eutrophication of Tiebian Power Generation Station, Guoyuanchang and Dashiqiao Bridge is the heaviest, Tielusi and Qinggangya the second, and Lijiaba the least. The eutrophication of this reservoir is closely relevant to the irrational exploitation in its surrounding areas, especially to the aggravation of the non-point source pollution and the increase of net-culture fishing. Therefore, it is feasible to use grey clustering in environment quality evaluation, and the point lies in the correct division of grey whitening function  相似文献   
743.
湖北省主要大中型水库富营养状况及特征分析   总被引:1,自引:0,他引:1  
水库在城市供水、工业用水、水产养殖、农业灌溉、水利防汛以及景观旅游等方面发挥着重要的作用,但随着社会经济的发展,部分水库的富营养化状况日益严重,成为影响社会经济发展的重大环境问题。通过在2010年的3、6、7、10月对湖北省30座主要大中型水库进行布点采样,对水体的水质状况分别进行了调查、监测,采用《地表水环境质量标准》湖库标准进行水质类别分析,采用湖库营养状态指数法对湖泊富营养化评价, 并运用因子聚类分析方法对这些水库进行了类型划分。结果表明:30座大、中型水库有14座水库水质类别为Ⅱ类~Ⅲ类, 占467%; 有8座水库水质类别为IV类,占267%;有8座水库水质类别为Ⅴ类或劣Ⅴ类,占267%;除白云湖水库为轻富营养化外,其余29座水库均属中营养状态;氨氮、磷作为营养物质是这些水库富营养化的主要影响因素,溶解氧对水体富营养化有重要影响,总氮、水温和有机物污染对水体富营养化产生较大影响;30座水库聚类分为城市工业废水污染源型、生活污水污染源型、农业非点源污染源型和养殖轻污染型4种水库类型。针对水库的污染类型,分别提出了减缓防治措施  相似文献   
744.
优化区域空间结构是提高经济转型发展质量与效益的重要措施,开展资源型地区空间结构的"资源诅咒"效应研究是解释资源型地区空间结构特殊性的重要视角。文章采用山西省第六次人口普查资料,从空间分异与空间联系两个角度分析区域空间结构"资源诅咒"效应的表现特征。进一步,构建"三部门三区域"分析框架,解释空间结构"资源诅咒"效应的形成机理。空间分异分析表明:山西省空间结构中核心区、外围区、边缘区均表现出显著的资源依赖型特征,核心区带动能力弱,外围区经济脆弱性明显,边缘区为集中连片贫困状态,这种空间结构不利于经济要素在各等级城市之间的流动,会进一步加剧区域"核心-外围-边缘"结构刚性特征,阻碍区域功能的转型升级;空间联系分析表明,山西省各行业空间网络联系差异显著,其中,采矿业已形成明显的多层级辐射状圈层结构;农业网络联系次之,形成极化显著的辐射状圈层结构;服务业中各行业联系普遍较弱,初步形成以核心区与次级核心区紧密联系为特点的点轴结构,但各种服务功能的互补性差,服务业功能联系弱;而制造业的区域联系最弱,资源型产业发展制约了制造业的发展,工业化发展质量低,"反工业化"倾向比较严重。通过"三部门三区域"分析框架认为,由于资源型经济具有自强机制,区域产业结构呈现刚性,核心区创新动力不足,外围区城镇化水平虚高,边缘区缺乏产业支撑。核心区、外围区、边缘区之间要素联系松散,空间结构演进的"推-拉"力不足,致使区域发展陷入"资源优势"陷阱。  相似文献   
745.
山西省近50年气候变化特征分析   总被引:5,自引:0,他引:5  
根据近50年来山西省18个气象基准站1960—2004年间的逐月气温、降水量和山西气象观测台(太原站)1966—2005年的逐月太阳辐射资料的统计,对山西省的气候变化进行了较系统的分析。结果表明,近50年来山西省气温上升趋势明显,而且在1990年有一次明显的跃变(1990年的累积距平等于零),年平均温度以0.25℃/10a的幅度上升;降水的年变化呈下降趋势,平均以18.7mm/10a的幅度下降,在1990年也有一次跃变;年总太阳辐射量亦呈下降趋势,且在1982年有一次明显的突变,年平均太阳辐射总量以每10年238.9204 MJ/m2的幅度下降。1982年以前以正距平为主,1982年后以负距平为主,且跃变的幅度较明显。  相似文献   
746.
山西省大气降水水质评价   总被引:2,自引:0,他引:2       下载免费PDF全文
为了解山西省大气降水水质状况、主要污染物及区域分布规律,山西省水文部门于1984年开始对大气降水进行监测。在全省9个地市布设测点,分别为:太原市、大同市、长治市、榆次市、临汾市以及吕梁、忻州、阳泉、运城地区。监测项目为H^2 、电导率、Ca^2 、Mg^2 、K^2 、Na^2 、NH4^2 、SO4^2-、NO3^-、Cl^-、CO3^-、HCO3^-、F^-。结果表明,除吕梁、忻州地区外。山西省各地市均有酸雨发生,但酸雨发生的频率不高,全省年平均为3.3%;酸雨的酸性程度也不高,对生态可造成明显影响的降水次数不多;山西省酸雨为典型的硫酸型,酸雨中硫酸与硝酸的质量浓度比值远高于全国平均值。  相似文献   
747.
Scenario‐based and scenario‐neutral impacts assessment approaches provide complementary information about how climate change‐driven effects on streamflow may change the operational performance of multipurpose dams. Examining a case study of Cougar Dam in Oregon, United States, we simulated current reservoir operations under scenarios of plausible future hydrology. Streamflow projections from the CGCM3.1 general circulation model for the A1B emission scenario were used to generate stochastic reservoir inflows that were then further perturbed to simulate a potentially drier future. These were then used to drive a simple reservoir model. In the scenario‐based analysis, we found reservoir operations are vulnerable to climate change. Increases in fall and winter inflow could lead to more frequent flood storage, reducing flexibility to store incoming flood flows. Uncertainty in spring inflow volume complicates projection of future filling performance. The reservoir may fill more or less often, depending on whether springs are wetter or drier. In the summer, drawdown may occur earlier to meet conservation objectives. From the scenario‐neutral analysis, we identified thresholds of streamflow magnitude that can predict climate change impacts for a wide range of scenarios. Our results highlight projected operational challenges for Cougar Dam and provide an example of how scenario‐based and scenario‐neutral approaches may be applied concurrently to assess climate change impacts.  相似文献   
748.
Despite their size, small farm ponds are important features in many landscapes. Yet hydrographical databases often fail to capture these ponds, and their impacts on watershed processes remain unclear. For a 230‐km2 portion of central Texas, United States (U.S.), we created a historical inventory of ponds and quantified the accuracy of automated detection methods under varying drought conditions. In addition, we documented pond dredging/enlargement events and identified sites that had been abandoned. We also analyzed sediment cores from downstream reservoirs to track changes in watershed sediment transport. Over 75 years, pond densities increased more than 350% — to among the highest documented in the U.S. — and the ability of automated methods to detect these ponds was highly dependent on drought severity (R2 = 0.96). Approximately 5% of ponds present in the 1950s were no longer present in 2012, while 33% were dredged between 1937 and 2012. Downstream reservoir sedimentation has decreased by an average of 55% as ponds have increased in number. These findings suggest that small ponds and the maintenance of trapping efficiency have large‐scale impacts on sediment dynamics. Accurately accounting for these storage effects is vital to water resource planning efforts.  相似文献   
749.
Recycling irrigation reservoirs (RIRs) are an emerging aquatic ecosystem and water resource of global significance. This study investigated the vertical distribution of water temperature, dissolved oxygen (DO), and pH in eight RIRs at two nurseries each in Virginia and Maryland from 2011 to 2014. Monomictic thermal stratification was observed from April to October in all RIRs, despite their shallow depths (0.75‐3.89 m). The strongest stratification had a top‐bottom temperature difference of 21.53°C. The top‐bottom temperature difference was positively correlated with water column depth, air temperature, and daily light integral (< 0.05). Wind speed did not impact the thermal stratification, likely due to their relatively small surface areas. Thermal stratification affected the vertical distribution of DO and pH. The top‐bottom differences in DO and pH were greater during stratification periods than nonstratification periods. Water pH in all RIRs was higher at the top than at the bottom with the greatest difference of 4.16 units. Discovery and characterization of thermal stratification in RIRs helps understand water quality dynamics in this novel ecosystem and promote safe and productive water reuse for irrigation. Specifically, water withdrawal depths should be adjusted according to variations in temperature, DO, and pH during the stratification and nonstratification periods to mitigate pathogen risk and improve water treatment efficacy and crop production.  相似文献   
750.
Managers make decisions regarding if and how to remove dams in spite of uncertainty surrounding physical and ecological responses, and stakeholders often raise concerns about certain negative effects, regardless of whether these concerns are warranted at a particular site. We used a dam‐removal science database supplemented with other information sources to explore seven frequently raised concerns, herein Common Management Concerns (CMCs). We investigate the occurrence of these concerns and the contributing biophysical controls. The CMCs addressed are the following: degree and rate of reservoir sediment erosion, excessive channel incision upstream of reservoirs, downstream sediment aggradation, elevated downstream turbidity, drawdown impacts on local water infrastructure, colonization of reservoir sediments by nonnative plants, and expansion of invasive fish. Biophysical controls emerged for some of the concerns, providing managers with information to assess whether a given concern is likely to occur at a site. To fully assess CMC risk, managers should concurrently evaluate site conditions and identify the ecosystem or human uses that will be negatively affected if the biophysical phenomenon producing the CMC occurs. We show how many CMCs have one or more controls in common, facilitating the identification of multiple risks at a site, and demonstrate why CMC risks should be considered in the context of other factors such as natural watershed variability and disturbance history.  相似文献   
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