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991.
The changing environment enhances the hydrological cycle and increases the frequency of extreme floods. In this paper, the impacts of climate variability on flood season segmentation are determined and the scientific basis for determining corresponding flood limiting water levels (FLWLs) is provided. Climate variation was determined and then the flood season was divided into several sub-seasons using the results of the set pair analysis method (SPAM) and four indices; peak floods crossing the transitional periods were sampled to obtain a design flood hydrograph; and, finally, seasonal FLWLs were determined for reservoir operation. The performance of this reservoir staging operation was evaluated for a case study in the Chengbihe Reservoir, China.  相似文献   
992.
为明确三峡水库汉丰湖叶绿素a(Chl.a)的主要影响因素,分析了汉丰湖2018—2021年的Chl.a、pH、水温、透明度以及氮、磷营养盐等水质指标的变化情况,探讨了Chl.a与其余水质指标的相关性,并应用结构方程模型解析了Chl.a的关键影响因素。结果表明,汉丰湖水体Chl.a浓度在0.04~68.58 μg/L之间变化,水温在9.62~32.10℃之间,pH在6.75~9.81之间,总氮、溶解性氮、总磷、溶解性磷的变化范围分别为0.58~4.68、0.25~3.99、0.02~0.76、0.01~0.44 mg/L。Chl.a浓度与水温、pH、总磷和总固体悬浮物呈显著正相关,与透明度、溶解性氮、碱度、亚硝态氮、硝态氮呈极显著负相关。结构方程模型结果显示,影响Chl.a浓度的因子中理化因子的路径系数为0.68,营养物质的路径系数为0.16,这表明影响Chl.a浓度的因子以理化因子为主,营养物质的作用相对较小。同时,理化因子通过营养盐间接影响Chl.a浓度(路径系数为-0.04)。各理化因子中,水温和pH的路径系数分别为0.51和0.41,水温是理化因子的主要表征指标;在营养盐指标中,总磷和溶解性磷的路径系数分别为0.82和0.71,而总氮的路径系数为0.36,说明磷是汉丰湖的限制性营养元素。  相似文献   
993.
易子涵  李思悦  唐薇  李玉英 《湖泊科学》2020,32(4):1020-1028
为研究河流溶解性CO_2(二氧化碳)对城镇化的响应,于2018年8月对三峡库区3条具有不同城镇化强度的河流——汝溪河、南河和桃花溪进行野外在线监测及取样分析,测定了样品有机质(溶解性有机碳DOC)、营养元素(溶解性总氮DTN、溶解性总磷DTP);利用Arc GIS解译各流域的土地利用组成,并利用碳酸盐平衡方程,通过p H、Alk(碱度)、水温计算不同城镇化梯度河流的p CO_2(CO_2分压).结果表明:建设用地占比从低到高依次为:汝溪河南河桃花溪,河流p CO_2依次为1790±1210、2006±3546、4094±4218μatm,与河流的城镇化梯度变化一致,河流水-气界面呈现为CO2源;DOC、DTN浓度、Alk、电导率在各河流间呈现显著性差异.DOC、DTN、DTP浓度和Alk的变化规律与河流的城镇化梯度一致.研究发现城镇化进程增加水体的p CO_2,引起区域城镇扩张进程中河流CO_2释放通量的增加,结论支持强人为活动影响增加河流碳释放的假设.  相似文献   
994.
拟柱孢藻(Cylindrospermopsis raciborskii)和角星鼓藻(Staurastrum spp.)是热带亚热带浮游植物群落中的常见优势种类,为了解铁对2种浮游植物季节动态和生长的影响,本文通过对典型热带水库的野外调查,分析铁与2种藻生物量和相对生物量的季节动态的关系,并通过室内实验分别以无机磷(KH2PO4)和有机磷(C6H13O9P)为磷源,比较3种铁浓度(0.029、0.29和0.689 mg/L)下拟柱孢藻(C.raciborskii,N8)和角星鼓藻(Staurastrum sp.,FACHB-1449)的比生长速率、铁载体产量和碱性磷酸酶活性的差异.结果显示,拟柱孢藻和角星鼓藻是浮游植物群落的主要优势种类,两者的生物量最大占到总生物量的82%以上;两者对环境变量响应的区别主要体现在对溶解性铁浓度变化的响应差异上,拟柱孢藻生物量与溶解性铁有显著的线性回归关系,但角星鼓藻的生物量与铁没有显著线性回归关系.室内实验中,拟柱孢藻N8的比生长速率在无机磷源铁浓度为0.689 mg/L条件下最大,为0.098±0.01 d-1,2种磷源条件下比生长速率均随铁浓度降低而显著降低,6个实验组均检到铁载体:6个实验组角星鼓藻FACHB-1449的比生长速率没有明显差异,平均为0.079±0.001 d-1,均未检出铁载体,磷源和铁浓度对其比生长速率的影响不显著;有机磷源条件下,拟柱孢藻N8实验组碱性磷酸酶活性均显著高于角星鼓藻FACHB-1449实验组,拟柱孢藻N8实验组酶活性随铁浓度降低而显著降低,但角星鼓藻FACHB-1449各实验组的碱性磷酸酶活性无明显差异.以上结果表明,水体中溶解性铁的供应对拟柱孢藻的种群动态和优势有重要作用,与角星鼓藻相比,拟柱孢藻的生长更易受到铁的限制,尤其在无机磷缺乏、磷源主要以有机磷形式供应时,铁对拟柱孢藻生长的限制作用增强.  相似文献   
995.
汉江上游是丹江口水库的水源区,其生态环境状况对保障汉江全流域及南水北调中线生态安全起着举足轻重的作用.本研究于2017年11月和2018年4月对汉江上游干流及源于秦岭南麓的5条典型支流开展了系统调查,旨在摸清汉江上游干支流的底栖动物群落特征,以及评价其水质状况.共采集到大型底栖动物240种,其中水生昆虫209种,软体动物13种,环节动物9种,其他类群9种.其中四节蜉Baetis sp.在各条河流中均为优势种,此外其他优势种还有拟细裳蜉Paraleptophlebia sp.、细蜉Caenis sp.、扁蜉Heptagenia sp.、花翅蜉Baetiella sp.、直突摇蚊Orthocladius sp.、纹石蛾Hydropsyche sp.、蜉蝣Ephemera sp.、带肋蜉Cincticostella sp.、高翔蜉Epeorus sp.、似波摇蚊Sympotthastia sp.和真开摇蚊Eukiefferiella sp..从各类群的密度来看,水生昆虫在汉江及五条支流中均占有绝对优势,占总密度的90.8%~98.9%,而在生物量上,除汉江干流中软体动物占绝对优势外,水生昆虫在各支流中均占绝对优势,占总生物量的47.0%~98.9%.就功能摄食类群的密度而言,直接收集者在汉江干支流中均为最主要功能摄食类群,而从生物量方面来看则表现出差异性,捕食者是金水河和旬河中最主要功能摄食类群,刮食者为汉江干流和月河中最主要功能摄食类群,直接收集者是金钱河中最主要功能摄食类群,滤食者为湑水河中最主要功能摄食类群.冗余分析结果表明,流速、总磷和电导率为影响汉江干支流底栖动物分布的关键环境因子.采用底栖动物生物指数(BI)和Shannon-Wiener指数进行水质生物评价,结果显示除汉江的极个别断面、湑水河和月河下游及旬河的中下游河段处于轻-中度污染状态外,其他调查河段均处于清洁状态.本研究结果可为汉江上游流域生态管理和科学保护提供依据.  相似文献   
996.
为探究三峡库区消落带落羽杉(Taxodium distichum(L.) Rich.)叶片与细根C、N、P生态化学计量特征,于2018年7月对忠县三峡库区消落带植被修复示范基地3个水淹处理组(深度水淹组,DS;中度水淹组,MS;浅淹对照组,SS)的落羽杉进行叶片与细根采集,并调查其生长特征,测定分析落羽杉叶片与细根C、N、P生态化学计量特征及相关性.结果表明:(1)各水淹处理组落羽杉叶片C含量表现为SS组 > DS组 > MS组,且SS组显著高于MS组;细根C含量在不同水淹处理组之间均无显著性差异.(2)细根N、P含量表现为DS组 < MS组 < SS组的协同增长趋势;叶片N、P含量则表现为DS组 > MS组 > SS组的协同降低趋势,且叶片N、P含量分别约为细根N、P含量的3倍和2倍.(3)各水淹处理组的叶片C/N、C/P比值均显著或极显著低于细根;叶片N/P比值均高于细根,且其比值相对恒定,均表现为SS组 > DS组 > MS组的趋势.(4)相关性分析表明,叶片P含量与细根N含量呈显著负相关关系,叶片N/P比值与细根N/P比值呈显著正相关关系.研究表明,落羽杉叶片与细根在生长和代谢过程中具有整体性,养分和光合产物在地上与地下部分之间分配权衡,以维持营养的动态平衡,使落羽杉具有内稳性,从而更好地适应和响应三峡消落带水位变化.  相似文献   
997.
Probability Data Screening Method in Airgun Signal Processing Application   总被引:1,自引:1,他引:0  
The signal excited by the airgun source is weak, and is easily affected by human motion noise, instrument failure, and earthquake and blasting events, resulting in insufficient utilization of the amplitude information of the airgun signal. The effective removal of interference and the preservation of true amplitude information of the signal is difficult in airgun signal processing. Based on the randomness of noise and the highly repetitive characteristics of airgun signals, we propose probability data screening method. The airgun data from experiments conducted in the Ansha Reservoir and Shanmei Reservoir in Fujian Province in June, 2017 are taken as the research object to assess the effect in practical applications. The results show that the probability data screening method can automatically reject multiple interferences and effectively preserve the amplitude information of the signal by screening out large amplitude records in appropriate proportions. Compared with direct linear superposition, the probability-related linear superposition method can effectively reduce the impact of abnormal interference, and significantly improve the quality of the observed data.  相似文献   
998.
This paper summarizes the latest developments, future prospects, and proposed countermeasures of reservoir sedimentation and channel scour downstream of the Three Gorges Reservoir (TGR) on the Yangtze River in China. Three key results have been found.(1) The incoming sediment load to the TGR has been significantly lower than expected.(2) The accumulated volume of sediment deposition in the TGR is smaller than expected because the overall sediment delivery ratio is relatively low, and the deposition in the near-dam area of the TGR is still developing.(3) River bed scour in the river reaches downstream of the Gezhouba Dam is still occurring and channel scour has extended to reaches as far downstream as the Hukou reach. Significantly, sedimentation of the TGR is less problematic than expected since the start of operation of the TGR on the one hand;on the other hand, the possible increases in sediment risks from dependence on upstream sediment control, deposition in the reservoir, and scour along middle Yangtze River should be paid more attention.(1) Sediment trapped by dams built along the upper Yangtze River and billion tons of loose materials on unstable slopes produced by the Wenchuan Earthquake could be new sediment sources for the upper Yangtze River. More seriously, possible release of this sediment into the upper Yangtze River due to new earthquakes or extreme climate events could overwhelm the river system, and produce catastrophic consequences.(2) Increasing sediment deposition in the TGR is harmful to the safety and efficiency of project operation and navigation.(3) The drastic scour along the middle Yangtze River has intensified the down-cutting of the riverbed and erosion of revetment, it has already led to increasing risk to flood control structures and ecological safety. It is suggested to continue the Field Observation Program, to initiate research programs and to focus on risks of sedimentation.  相似文献   
999.
《国际泥沙研究》2019,34(6):537-549
Dam removal can generate geomorphic disturbances, including channel bed and bank erosion and associated abrupt/pulsed release and downstream transfer of reservoir sediment, but the type and rate of geomorphic response often are hard to predict. The situation gets even more complex in systems which have been impacted by multiple dams and a long and complex engineering history. In previous studies one-dimensional (1-D) models were used to predict aspects of post-removal channel change. However, these models do not consider two-dimensional (2-D) effects of dam removal such as bank erosion processes and lateral migration. In the current study the impacts of multiple dams and their removal on channel evolution and sediment delivery were modeled by using a 2-D landscape evolution model (CAESAR-Lisflood) focusing on the following aspects: patterns, rates, and processes of geomorphic change and associated sediment delivery on annual to decadal timescales. The current modeling study revealed that geomorphic response to dam removal (i.e., channel evolution and associated rates of sediment delivery) in multiple dam settings is variable and complex in space and time. Complexity in geomorphic system response is related to differences in dam size, the proximity of upstream dams, related buffering effects and associated rates of upstream sediment supply, and emerging feedback processes as well as to the presence of channel stabilization measures. Modeled types and rates of geomorphic adjustment, using the 2-D landscape evolution model CAESAR-Lisflood, are similar to those reported in previous studies. Moreover, the use of a 2-D method showed some advantages compared to 1-D models, generating spatially varying patterns of erosion and deposition before and after dam removal that provide morphologies that are more readily comparable to field data as well as features like the lateral re-working of past reservoir deposits which further enables the maintenance of sediment delivery downstream.  相似文献   
1000.
张胜  苏紫颖  林莉  陶晶祥  潘雄  董磊 《湖泊科学》2022,34(1):108-117
随着高坝水库的建设,大坝泄洪雾化对生态环境的影响已得到较多研究,而泄洪雾化对污染物迁移转化行为的影响尚未引起关注.本研究于2019年对丹江口大坝泄洪期间坝前和坝下多个断面进行了采样调查,分析了水体中16种多环芳烃(PAHs)和6种邻苯二甲酸酯(PAEs)的浓度.发现泄洪后坝下水体中检测出的8种PAHs和5种PAEs浓度...  相似文献   
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