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181.
盐湖沉积因具有成盐多期性和连续完整性的特点,是恢复成盐期古环境的重要研究对象,形成的不同级次盐韵律记录了不同尺度周期下古气候的干湿变化。上白垩统浦口组是淮安盐盆的主要含盐层系,对含盐层段盐韵律的研究有助于恢复该地区成盐期的古气候特征。在对资料井A1井取心段岩心精细观察和岩样矿物成分分析的基础上,分析资料井岩性的垂向变化,对浦口组盐韵律特征进行识别并划分。根据盐韵律对古气候的指示作用研究成盐期区块短尺度气候周期下的古气候变化。将淮安盐盆杨槐区块浦口组划分出Ⅰ、Ⅱ、Ⅲ、Ⅳ、Ⅴ级韵律,识别出完整的盐韵律组合,即泥岩—钙芒硝质盐岩—盐岩—钙芒硝质盐岩。含盐段中广泛发育暖温相矿物钙芒硝,指示气候特征为炎热的暖旱型。在Ⅳ级韵律尺度下建立了气候干湿性变化曲线,表明区块气候干湿性波动频繁,但仍以干旱为主,韵律厚度大致反映了气候波动频率大小。  相似文献   
182.
薛伟  袁宗峰  周密 《中国岩溶》2019,38(4):508-514
西南地区某水库位于云贵高原中北部,库区可溶盐岩分布较广且岩溶较发育,中部有一条近南北走向的区域性断裂(F1)穿过两岸,为论证此水库成库的可能性,通过地表调查及物探,结果表明:此水库向低邻谷渗漏的可能性小,沿F1断裂带向南部或向下游渗漏的可能性问题不大,存在沿灰岩溶蚀通道向下游和向库外渗漏的可能性,沿左岸大理岩与灰绿岩接触带或大理岩向坝下游绕坝渗漏的可能性不大;水库正常蓄水位在Kc1底板高程以下有成库的可能。   相似文献   
183.
碳酸盐岩的H2CO3溶蚀产生岩溶碳汇,占整个岩石风化碳汇的 94%。西南岩溶区硫酸型酸雨严重,硫酸型酸雨广泛参与碳酸盐岩的溶蚀。H2SO4参与的碳酸盐岩风化是一个大气CO2净释放过程,具有减汇作用巨大。另一方面,岩溶区石灰土壤和地下水具有较高的pH值及盐基饱和度,对H+有巨大的缓冲作用,大气酸沉降在碳酸盐岩地区可能并不会造成地下水的HCO3-和pH降低;相反,较高浓度的SO42-所产生的盐效应和SO2-4与各种阳离子形成的离子对会增大方解石、白云石溶解度,可增强H2CO3对碳酸盐的溶蚀,这可能会使岩溶作用产生更大的碳汇效应。因此,硫酸型酸雨参与碳酸盐岩风化的减汇效应不仅可能被高估,硫酸型酸雨还可能增强碳酸盐岩的H2CO3溶蚀,具有增加岩溶碳汇效应的作用。应结合石灰土壤对大气酸沉降的缓冲容量和阈值及大气酸沉降的H+与土壤中盐基离子的交换量,并综合考虑盐效应、离子对作用、同离子效应,客观评价硫酸型酸雨流经石灰土壤层后对碳酸盐岩溶蚀吸收大气/土壤CO2的影响   相似文献   
184.
Due to the IO monsoon impact, the tropical IO circulation has significant seasonal variation, especially in the northern IO. However, in mean-state, a relatively closed current loop is established by eastward current along the equator and westward current south of equator, which is regarded as Tropical Gyre in the Indian Ocean. Based on this circulation system, relevant studies were reviewed. Its impact on heat and salt transports and regional climate changes were discussed.  相似文献   
185.
潜江凹陷位于江汉盆地的中部,潭口油田靠近潜北大断层.通过勘探开发,根据测、钻井资料及生产动态数据发现,该区地层厚度在短距离内发生较大变化,砂体间的侧向连续性差,范围小.该地区盐岩十分发育,根据地震剖面以及盐层的发育,分析该地区产生一系列盐构造的类型,分别有盐层滑脱带以及滑脱断层、盐隆构造、盐辟构造等几种类型.该地区的盐构造的成因机制主要为走滑作用,根据盐构造的类型,成因机制可分为盐层滑脱作用、盐层隆升作用以及盐层刺穿作用.将盐构造的演化分为3个阶段,分别为荆沙组盐构造孕育期、潜江组潜四-潜三段盐构造生成期、潜江组潜二段-荆河镇组盐构造定型期.盐岩的发育以及盐构造的形成,在一定程度上导致目的层砂体侧向连续性差,油层展布范围小,对油气成藏产生影响.  相似文献   
186.
A suite of instruments was deployed in a coastal wetland ecosystem in the Albemarle estuarine system, North Carolina (USA), to characterize wind‐driven transport of saltwater through a constructed (man‐made) channel. Flow velocity, electrical conductivity, and stage were measured in a representative channel over a 2‐month period from May to July 2014, during which 4 wind tides were observed. Collected data show that thousands of metric tons of salt were advected through the channel into coastal wetlands during each event, which lasted up to 4 days. The results reveal that as much as 36% of advected salts accumulated in the wetlands, suggesting that the cumulative effects of these events on the health of coastal wetlands in the Albemarle system may be substantial due to the abundance of constructed channels and the frequency of wind‐driven tidal events. This study is the first to quantify wind‐driven salt fluxes through constructed channels in coastal wetland settings.  相似文献   
187.
Analyses (n = 525) of chloride (Cl), bromide (Br), nitrate as nitrogen (NO3-N), sodium (Na+), calcium (Ca2+) and potassium (K+) in stream water, tile-drain water and groundwater were conducted in an urban-agricultural watershed (10% urban/impervious, 87% agriculture) to explore potential differences in the signature of Cl originating from an urban source as compared with an agricultural source. Only during winter recharge events did measured Cl concentrations exceed the 230 mg/L chronic threshold. At base flow, nearly all surface water and tile water samples had Cl concentrations above the calculated background threshold of 18 mg/L. Mann–Whitney U tests revealed ratios of Cl to Br (p = .045), to NO3-N (p < .0001), to Ca2+ (p < .0001), and to Na+ (p < .0001) to be significantly different between urban and agricultural waters. While Cl ratios indicate that road salt was the dominant source of Cl in the watershed, potassium chloride fertilizer contributed as an important secondary source. Deicing in watersheds where urban land use is minimal had a profound impact on Cl dynamics; however, agricultural practices contributed Cl year-round, elevating stream base flow Cl concentrations above the background level.  相似文献   
188.
Salt tectonics in the Eastern Persian Gulf (Iran) is linked to a unique salt‐bearing system involving two overlapping ‘autochthonous’ mobile source layers, the Ediacaran–Early Cambrian Hormuz Salt and the Late Oligocene–Early Miocene Fars Salt. Interpretations of reflection seismic profiles and sequential cross‐section restorations are presented to decipher the evolution of salt structures from the two source layers and their kinematic interaction on the style of salt flow. Seismic interpretations illustrate that the Hormuz and Fars salts started flowing in the Early Palaeozoic (likely Cambrian) and Early Miocene, respectively, shortly after their deposition. Differential sedimentary loading (downbuilding) and subsalt basement faults initiated and localized the flow of the Hormuz Salt and the related salt structures. The resultant diapirs grew by passive diapirism until Late Cretaceous, whereas the pillows became inactive during the Mesozoic after a progressive decline of growth in the Late Palaeozoic. The diapirs and pillows were then subjected to a Palaeocene–Eocene contractional deformation event, which squeezed the diapirs. The consequence was significant salt extrusion, leading to the development of allochthonous salt sheets and wings. Subsequent rise of the Hormuz Salt occurred in wider salt stocks and secondary salt walls by coeval passive diapirism and tectonic shortening since Late Oligocene. Evacuation and diapirism of the Fars Salt was driven mainly by differential sedimentary loading in annular and elongate minibasins overlying the salt and locally by downslope gliding around pre‐existing stocks of the Hormuz Salt. At earlier stages, the Fars Salt flowed not only towards the pre‐existing Hormuz stocks but also away from them to initiate ring‐like salt walls and anticlines around some of the stocks. Subsequently, once primary welds developed around these stocks, the Fars Salt flowed outwards to source the peripheral salt walls. Our results reveal that evolving pre‐existing salt structures from an older source layer have triggered the flow of a younger salt layer and controlled the resulting salt structures. This interaction complicates the flow direction of the younger salt layer, the geometry and spatial distribution of its structures, as well as minibasin depocentre migration through time. Even though dealing with a unique case of two ‘autochthonous’ mobile salt layers, this work may also provide constraints on our understanding of the kinematics of salt flow and diapirism in other salt basins having significant ‘allochthonous’ salt that is coevally affected by deformation of the deeper autochthonous salt layer and related structures.  相似文献   
189.
机器学习结合遥感等其他数据反演土壤盐分含量(Soil Salt Content, SSC)较少关注对模型精度影响较大的建模特征变量和模型参数的优选。本文基于自适应遗传算法(Adaptive Genetic Algorithm, AGA)同步优选建模特征变量和模型参数的支持向量回归(Support Vector Regression, SVR)算法反演三工河流域2016年SSC,并分析其在不同土地利用类型的分布特征。建模特征变量和模型参数的同步优选及实验设计如下:首先基于Landsat 8 OLI和SRTM高程数据提取7类共40个盐渍化相关因子,经相关分析初步筛选出候选特征变量,分别代入AGA、遗传算法(Genetic Algorithm, GA)和格网搜索算法(Grid Search, GS)同步优选SVR的建模特征变量和模型参数,并建立盐渍化监测模型(AGA-SVR、GA-SVR、GS-SVR)。结果表明:① AGA-SVR精度最优,GA-SVR次之,GS-SVR最差,相较于GS-SVR,AGA-SVR的R2/RMSE提高了44.65%;② 三工河流域非、轻度、中度、重度盐渍地和盐土的面积占比分别为42.83%、11.02%、15.88%、9.22%、21.05%;③ 草地和未利用地主要以非盐渍地和盐土为主,耕地和林地中非盐渍地分布比例均为最大;不同土地利用类型的SSC均值和标准差均呈现未利用地>草地>耕地>林地的规律。本研究的建模特征变量和模型参数的优选方法可在一定程度上提高盐渍化监测的精度。关键词:盐渍化;遗传算法;机器学习;特征优选;参数优化;土壤盐分含量;土地利用;相关分析  相似文献   
190.
颜辉 《盐湖研究》2018,26(4):85-90
通过对盐湖地区岩土类型复杂性及特性的叙述,分析了盐湖矿产开发中不良地质现象产生的原因和岩土条件对开发规模、工程布局、工程安全、经济效益等方面产生的影响。论述岩土工程勘察在盐湖矿产开发中的特殊地位和重要价值,总结出岩土勘察与盐湖卤水矿产开发的关系,提出盐湖岩土勘察方案的相关建议。  相似文献   
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