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海南岛海岸环境特征 总被引:8,自引:0,他引:8
海南岛虱热带季风岛屿型气候,为南海大陆架岛屿,中央为山地,临海为多种类型海岸,以处于动态平衡的海蚀-海积型海岸为主。海南岛主要是基岩岬湾海岸,潮汐属日潮型,东部与南部为不规则日潮混合潮。海岸构造运动与气候变化的双重影响,更新世初期,海岸属基岩港湾型,晚更新世构造运动频敏,使不少海湾底部抬升为阶地。构造抬升运动持续到全新世,使一些珊瑚抬升为高出海面数米的阶地。海岸类型按其成因与形态可分为两大类:基岩港湾海岸与砂砾质平原海岸。基岩港湾海岸分布于山地与丘陵临海处,砂砾质平原海岸(或为三解洲平原海岸)其表现形式多为沙坝与泻湖海岸,沙坝上叠置发育着海滩、沙堤或沙丘,随着海岸加积展宽或地壳上升,老的沙坝可抬高成为海积阶地。潮流作用对洪湾众多的海南岛的发育演变以及开发利用亦有重要作用。潮汐汊道港湾规模较大,水域面积达数十平方公理。 相似文献
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福建省海岸基岩节理的分形性质及其与宏观断裂系的关系 总被引:1,自引:0,他引:1
该文以福建省福州市海岸基岩为例,通过野外实地勘测与室内分析相结合的研究方法,探讨了海岸基岩节理的分形性质及其与福建省宏观断裂系的相互关系。得到的基本结论为:第一,研究区节理与宏观断裂系的分形性质是客观存在的;第二,研究区节理与宏观断裂系在方向上存在着一定的响应关系;第三,研究区10^-2~10^-1m尺度的节理与福建省10^3~10^4m尺寸的断裂系存在一定的相似性。 相似文献
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基岩水的壁间运动及基本特征 总被引:5,自引:0,他引:5
本文通过对基岩水与孔隙水的比较分析,介绍了基岩水的分布、水动力学和水化学特征,指出了基岩水运动具有均位趋势、选择流动及汇流特性,得出了渗流理论不宜用于基岩水的结论。 相似文献
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Knickpoint recession rate and catchment area: the case of uplifted rivers in Eastern Scotland 总被引:1,自引:0,他引:1
Knickpoint behaviour is a key to understanding both the landscape responses to a base‐level fall and the corresponding sediment fluxes from rejuvenated catchments, and must be accommodated in numerical models of large‐scale landscape evolution. Knickpoint recession in streams draining to glacio‐isostatically uplifted shorelines in eastern Scotland is used to assess whether knickpoint recession is a function of discharge (here represented by its surrogate, catchment area). Knickpoints are identified using DS plots (log slope versus log downstream distance). A statistically significant power relationship is found between distance of headward recession and catchment area. Such knickpoint recession data may be used to determine the values of m and n in the stream power law, E = KAmSn. The data have too many uncertainties, however, to judge definitively whether they are consistent with m = n = 1 (bedrock erosion is proportional to stream power and KPs should be maintained and propagate headwards) or m = 0·3, n = 0·7 (bedrock incision is proportional to shear stress and KPs do not propagate but degrade in place by rotation or replacement). Nonetheless, the E Scotland m and n values point to the dominance of catchment area (discharge) in determining knickpoint retreat rates and are therefore more consistent with the stream power law formulation in which bedrock erosion is proportional to stream power. Copyright © 2005 John Wiley & Sons, Ltd. 相似文献
7.
V. Rabemanana S. Violette G. de Marsily H. Robain B. Deffontaines P. Andrieux M. Bensimon A. Parriaux 《Journal of Hydrology》2005,310(1-4):143-156
This study assesses the causes of the high spatial variability of the mineral content of groundwater in crystalline bedrock of Southern Madagascar. Although many kilometres from the coast and at a mean altitude of 400 m a.s.l, wells drilled in this area produce water with electrical conductivities in the range of 300–30,000 μS cm−1 with a high spatial variability. Chemical and isotopic data are used to identify the processes involved in the groundwater mineralization. It is shown that the chemical composition of the groundwater in this region has its origin in (i) normal silicate and carbonate weathering reactions and (ii) input of marine salts, probably via rainfall recharge, modified by evapo-concentrative processes probably including precipitation and re-dissolution of secondary evaporites in the unsaturated zone. To obtain a better understanding of the spatial salinity distribution, well parameters such as yields, weathered zone thickness, weathered materials and morphological positions (upper slope, mid-slope, lower slope or valley bottom) are scrutinized.
A correlation was found between high salinity and low flow, shallow groundwater environments (flat hill tops, valley bottoms, weakly developed and clayey weathered zones) and between low salinity and high flow environments (granular, well-developed weathered zones and situation on valley slopes). 相似文献
8.
Stephen R.H. Worthington 《水文研究》2019,33(17):2373-2380
Groundwater often accounts for a substantial fraction of flood hydrographs, but the processes responsible for this have been unclear. However, many aquifers have preferential flow and this explains how aquifers can be so responsive. In bedrock aquifers, weathering enhances the connectivity and apertures along the most efficient flow paths and hence enhances the permeability. This results in celerities and velocities of the preferential flow in these dual‐porosity aquifers that are two to three orders of magnitude higher than if the aquifers behaved as single‐porosity media. The celerities have been determined from artificial and natural flood pulses, from tidal lags, and from pumping tests. Preferential‐flow velocities have been calculated from tests using applied tracers. Celerities in bedrock aquifers are typically one to two orders of magnitude faster than velocities. The ubiquitous preferential flow in aquifers provides an additional explanation, besides groundwater ridging, for the rapid release of groundwater to streams during storm events. 相似文献
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根据区域地质条件,郑州市地面沉降监测网基岩标建标场地选择在淮河西路与西三环交叉口东南600 m的河南省地质环境监测院内,建标深度为732 m。地质鉴别孔孔深780 m,孔径108 mm,全孔取心钻进,施工的重点是保证岩心采取率,采用泥浆护壁回转钻进,根据钻进层位的岩性不同配置不同特性的泥浆;基岩标标孔孔深780 m,孔径311 mm,施工的控制目标是孔身质量和垂直度。采用三牙轮钻头宝塔式钻具组合不取心钻进施工工艺。取得了较好的施工质量,创造了良好的效益。 相似文献