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991.
李青  张落成  武清华 《湖泊科学》2011,23(1):143-149
在天目湖流域建立生态补偿机制,形成上游生态保护激励机制,对于太湖流域水环境改善有着极为重要的作用.本文通过问卷调查的方式,首先,调查了解天目湖流域居民对环境保护和生态补偿的认知状况,得出天目湖流域居民环境保护意识很强,生态补偿需求旺盛.其次,对居民和旅游者的生态补偿支付意愿进行了解.最后,对最大支付意愿公式进行改进,在...  相似文献   
992.
从考察目前我国航海通告编制作业流程入手,分析、总结出其中所需要解决的各种辅助计算问题,并在此基础上探讨了通过软件的方法设计和实现这些计算功能的关键技术?由此提高了制作航海通告的效率和质量。  相似文献   
993.
赤潮流界是表征河口径潮相互作用的关键界面,受各种动力作用在空间上不断上下迁移。本文基于2012—2019年间长江口岸直水道五峰山至南支河段大范围实测资料,分析了46种径潮流组合下,长江主汊河段主深槽潮流界位置的变化。研究结果表明:(1)在径流条件一定时,随着潮差的减小潮流界位置逐渐向下游移动,初始时期潮流界位置下移速度较慢,后期加快。(2)在潮差一定时,当上边界径流量以同样速度增加时,枯水期潮流界向下游移动的速度快,平水期与丰水期潮流界向下游移动的速度会逐渐减慢。(3)潮流界距大通的距离与潮径比呈显著相关的对数关系,可用于今后潮流界位置的定量计算。潮流界位置随着潮径比的减小而下移,当潮径比约为0.56时,潮流界位置在江阴附近。新水沙条件下,长江潮流界位置的研究对"长江大保护"战略下河口海岸地区的开发规划具有重要现实意义。  相似文献   
994.
The form, height and volume of coastal foredunes reflects the long‐term interaction of a suite of nearshore and aeolian processes that control the amount of sand delivered to the foredune from the beach versus the amount removed or carried inland. In this paper, the morphological evolution of more than six decades is used to inform the development of a simple computer model that simulates foredune growth. The suggestion by others that increased steepness of the seaward slope will retard sediment supply from the beach to the foredune due to development of a flow stagnation zone in front of the foredune, hence limiting foredune growth, was examined. Our long‐term data demonstrate that sediment can be transferred from the beach to the foredune, even with a steep foredune stoss slope, primarily because much of the sediment transfer takes place under oblique rather than onshore winds. During such conditions, the apparent aspect ratio of the dune to the oncoming flow is less steep and conditions are not as favourable for the formation of a stagnation zone. The model shows that the rate of growth in foredune height varies as a function of sediment input from the beach and erosion due to storm events, as expected, but it also demonstrates that the rate of growth in foredune height per unit volume increase will decrease over time, which gives the perception of an equilibrium height having been reached asymptotically. As the foredune grows in size, an increasing volume of sediment is needed to yield a unit increase in height, therefore the apparent growth rate appears to slow. Copyright © 2018 John Wiley & Sons, Ltd.  相似文献   
995.
与VS型垂直摆各项参数进行对比,分析VP型宽频带垂直摆具有的优势。采用VS、VP型垂直摆记录资料,对比数据连续率、完整率及固体潮记录能力、同震变化等;分析VP型垂直摆精度、潮汐因子绝对误差、相位误差等,以偏离正常年变背景为基准,判断其数据记录是否异常,并分析年变特征,拟合观测数据分析异常特征,通过R值评分,进一步分析承德地震台VP型宽频带垂直摆映震能力。分析发现,VP型宽频带垂直摆记录固体潮和同震曲线的能力较好,精度较高,潮汐因子误差及绝对误差较小,产出数据更为可靠,异常信息更为明显,映震能力更高。  相似文献   
996.
The effects of soil‐structure interaction (SSI) are often studied using two‐dimensional (2D) or axisymmetric three‐dimensional (3D) models to avoid the high cost of the more realistic, fully 3D models, which require 2 to 3 orders of magnitude more computer time and storage. This paper analyzes the error and presents correction factors for system frequency, system damping, and peak amplitude of structural response computed using impedances for linear in‐plane 2D models with rectangular foundations, embedded in uniform or layered half‐space. They are computed by comparison with results for 3D rectangular foundations with the same vertical cross‐section and different aspect ratios. The structure is represented by a single degree‐of‐freedom oscillator. Correction factors are presented for a range of the model parameters. The results show that in‐plane 2D approximations overestimate the SSI effects, exaggerating the frequency shift, the radiation damping, and the reduction of the peak amplitude. The errors are larger for stiffer, taller, and heavier structures, deeper foundations, and deeper soil layer. For example, for a stiff structure like Millikan library (NS response; length‐to‐width ratio ≈ 1), the error is 6.5% in system frequency, 44% in system damping, and 140% in peak amplitude. The antiplane 2D approximation has an opposite effect on system frequency and the same effect on system damping and peak relative response. Linear response analysis of a case study shows that the NEHRP‐2015 provisions for reduction of base shear force due to SSI may be unsafe for some structures. The presented correction factor diagrams can be used in practical design and other applications.  相似文献   
997.
“引江济淮”工程对安徽菜子湖水龄分布的影响   总被引:2,自引:1,他引:1  
菜子湖是"引江济淮"工程的重要输水通道,其水体输运和物质交换将因输水工程发生改变.本文基于环境流体水动力学模型(EFDC)建立了菜子湖水龄模型,在将模型与实测水文数据验证满足精度的前提下,设计14种方案计算菜子湖在季风影响下的水龄,工程实施期间菜子湖在丰、平、枯季的水龄与流场,以及枯水季调水情景下同风速8种风向和强风向3种风速时的水龄.数值试验的模拟结果表明:菜子湖湖体水龄分布具有时空差异性,无风条件下,春、夏、秋、冬季的湖体的平均水龄分别为120.93、33.19、92.92、101.48 d,而在季风影响下,春、夏、秋、冬季平均水龄分别为75.23、32.45、81.80、66.16 d;西部L2湖水龄较长,东部L1湖和南部L3湖水龄较短;输水工程将改变L1和L3湖的流场,对L2湖流场几乎无影响;输水工程实施后,菜子湖水龄分布主要受风场及输水影响,不同风向对菜子湖各湖区影响不同,西南风有助于L1湖水体交换,北风有助于L2湖水体交换,东风有助于L3湖水体交换,而当风向为东北风时,3个湖区水龄均较小;枯水季调水有利于L1湖和L3湖水体交换,但对L2湖水体交换作用不明显.  相似文献   
998.
This paper describes the significant depositional setting information derived from well and seismic survey data for the Upper Cretaceous to Lower Eocene forearc basin sediments in the central part of the Sanriku‐oki basin, which is regarded as a key area for elucidating the plate tectonic history of the Northeast Japan Arc. According to the results of well facies analysis utilizing cores, well logs and borehole images, the major depositional environments were of braided and meandering fluvial environments with sporadically intercalated marine incursion beds. Seismic facies, reflection terminations and isopach information provide the actual spatial distributions of fluvial channel zones flowing in a north–south trending direction. The transgression and regression cycles indicate that the Upper Cretaceous to Lower Eocene successions can be divided into thirteen depositional sequences (Sequences SrCr‐0 to SrCr‐5, and SrPg‐1 to SrPg‐7). These depositional sequences demonstrate three types of stacking patterns: Types A to C, each of which shows a succession mainly comprising a meandering fluvial system, a braided fluvial system with minor meandering aspects in the upper part, and major marine incursion beds in the middle part, respectively, although all show an overall transgressive to regressive succession. The Type C marine incursion beds characteristically comprise bay center and tidal‐dominated bay margin facies. Basin‐transecting long seismic sections demonstrate a roll up structure on the trench slope break (TSB) side of the basin. These facts suggest that during the Cretaceous to Eocene periods, the studied fluvial‐dominated forearc basin was sheltered by the uplifted TSB. The selective occurrences of the Type C sequences suggest that when a longer‐scale transgression occurred, especially in Santonian and early Campanian periods, a large bay basin was developed, creating accommodation space, which induced the deposition of the Cretaceous Kuji Group along the arc‐side basin margin.  相似文献   
999.
中低纬度地区的磁异常资料进行化极处理能减少或消除斜磁化影响,对提高磁测资料的利用程度有重要意义.本文在总结分析原有的低纬度磁异常化极过程的基础上,改进了原有化极方法的滤波过程.改进后的阻尼化极方法,采用将振幅谱和相位谱分开进行滤波的过程,过程中只需要考虑对化极因子的振幅谱进行压制即可.通过公式分析表明该方法更加合理,减少了人为因素的影响;经单个模型和组合模型试验表明,此化极方法准确、稳定、可靠,可以有效地突出低纬度地区的异常体信息.  相似文献   
1000.
The surface ruptures produced by the 2016 MW7.8 Karkoura earthquake, New Zealand are distributed in a belt with~170km long and~35km wide, trending generally in the NE-SW direction. There are at least 12 faults on which meter-scale displacements are identified and they were formed across two distinct seismotectonic provinces with fundamental different characteristics(Hamling et al., 2017; Litchfield et al., 2017). Although the trending directions of the seismic surface ruptures vary greatly at different locations, the ruptured faults can be generally divided into two groups with the NE to NEE direction and the NNW to N direction, respectively. The faults in the NNW-near NS direction are nearly parallel with 40~50km apart and featured by reverse movement with the maximum displacement of 5~6m. The faults in the NE-NNE direction, with the maximum of 25~30km apart are not continuous and featured by the dextral strike slip with the largest displacement of 10~12m. Even if some faults along the NE-NEE direction are end to end connected, their strikes differ by about 30°. The combination styles of the strike-slip fault surface ruptures along the NE-NEE direction can be merged into 3 categories, including en-echelon, bifurcation and parallel patterns. The scales of the fault surface ruptures with the same structural style could be obviously different in different areas, which results in significant changes in the widths of deformation zone, from tens of meters to hundreds of meters. En-echelon distributed surface rupture(section)can appear as a combination belt of meter-scale to dozens of meter-scale shear fracture with bulge and compressional shear fractures, and also can be characterized by the combination of the left-step en-echelon tensile shear fractures with a length of more than one hundred meters. The step-overs between surface rupture sections are clearly different in sizes, which can be dozens of meters, hundreds of meters to several kilometers. The spacing between parallel surface ruptures can be several meters, dozens of meters to several kilometers. Besides, as one of the prominent characteristics, the seismic surface ruptures caused by the Karkoura earthquake broke through the known distribution pattern of active faults. The surface ruptures can occur either on the previously thought inactive or unmapped faults, or break through the distribution range of previously realized active faults in the striking or lateral direction. The basic features about the distribution and widths of the surface ruptures induced by the 2016 MW7.8 Karkoura earthquake, New Zealand presented in this paper might be helpful for understanding some seismic problems such as complex corresponding relationship between the active faults and the deep seismogenic structure, and the necessary measurements for engineering crossing active faults.  相似文献   
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