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1.
《China Geology》2020,3(3):462-472
The scientific field test site of rainfall-soil moisture-groundwater conversion in Dabie Mountain Area–Jianghan Plain is located in the northern region of the Jianghan Plain, the transition zone between the Dabie Mountain Area and Jianghan Plain. It’s a great field test site to study the material and energy exchange among rainfall, soil moisture, and groundwater of the Earth ’s critical zone in subtropical monsoon climate plain areas. This paper analyzed the connection between rainfall and volume water content (VWC) of soil at different depths of several soil profiles, and the dynamic feature of groundwater was discussed, which reveals the rainfall infiltration recharge of Quaternary Upper Pleistocene strata. The results show that the Quaternary Upper Pleistocene aquifer groundwater accepts a little direct rainfall recharge, while the lateral recharge is the main supplement source. There were 75 effective rainfall events among 120 rainfall events during the monitoring period, with an accumulated amount of 672.9 mm, and the percentages of effective rainfall amount and duration time were 62.50% and 91.56%, respectively. The max evaporation depth at the upper part in Quaternary cohesive soil was no less than 1.4 m. The soil profile was divided into four zones: (1) The sensitive zone of rainfall infiltration within 1.4 m, where the material and energy exchange frequently near the interface between atmosphere and soil; (2) the buffer zone of rainfall infiltration between 1.4 m and 3.5 m; (3) the migration zone of rainfall infiltration between 3.5 m and 5.0 m; and (4) the rainfall infiltration and groundwater level co-influenced zone below 5.0 m. The results revealed the reaction of soil moisture and groundwater to rainfall in the area covered by cohesive soil under humid climate in Earth ’s critical zone, which is of great theoretical and practical significance for groundwater resources evaluation and development, groundwater environmental protection, ecological environmental improvement, drought disaster prevention, and flood disaster prevention in subtropical monsoon climate plain areas. 相似文献
2.
Forest ecohydrological feedbacks complicate the threshold behaviour of stormflow response to precipitation or wetting conditions on a long-term scale (e.g. several years). In this study, the threshold behaviours in an evergreen-deciduous mixed forested headwater catchment in southern China were examined during 2009–2015, when damaged vegetation was recovering after the great 2008 Chinese ice and snowstorm. The non-uniqueness of the thresholds and the slow and rapid responses of stormflow at the outlet of the catchment in different hydro-climate datasets with different maximum values of gross precipitation (P) and sums of precipitation and antecedent soil moisture index (P + ASI) were assessed. The thresholds of P and P + ASI required to trigger stormflows (i.e. ‘generation thresholds’) and the transition from slow to rapid responses of stormflow (i.e. ‘rise thresholds’) were compared both seasonally and annually. The results indicated significant differences in the analysed datasets, highlighting the need to compare thresholds with care to avoid misinterpretation. Seasonal variations in threshold behaviours in the catchment suggested that vegetation canopy interception contributed to higher rise thresholds, and wetter conditions resulted in higher runoff sensitivity to precipitation during the growing and rainy seasons. Furthermore, the generation thresholds were higher in the dormant season, possibly due to drier soil moisture conditions in the near-channel areas. During the vegetation recovery period, the annual generation thresholds increased, however the rise thresholds did not exhibit a similar trend. The rapid stormflow response above the threshold decreased, possibly due to transpiration and interception of the recovered vegetation. However, the slow stormflow response to small rainfall events below the thresholds was higher in wetter years but lower in drier years, suggesting that the total water input dominated the stormflow response during small rainfall events. In conclusion, the seasonal and annual variations in threshold behaviours highlight that vegetation recovery and hydro-climatic conditions had a notable impact on the stormflow response. 相似文献
3.
During the drilling of ultra-deep-water subsea petroleum wells, a blow-out preventer (BOP), a piece of safety equipment, must be assembled on the wellhead. The BOP is suspended using the drilling riser during the wellhead approach operation, and the riser's top end is connected to the floating platform rig. This article presents a feedback control system for the automatic approach of the BOP to the wellhead. Compared to state-of-the-art controls, ours does not require ancillary thrusters installed alongside the riser nor inclination sensors atop of the drilling riser. Additionally, our proposed control embeds a closed-loop dynamic positioning system, thus retaining the characteristics of the original control system and adding an extra closed-loop. This eases implementation of the BOP approach control to an existing platform. To calculate the optimal gains for the BOP controller, we assume a linear system for the riser, including only the pendulum-shape. The simulation is carried out using nonlinear models for both riser and floating platform. We assume an International Towing Tank Conference standard semi-submersible platform, coupled with a 3000-m free-hanging vertical riser for the time-domain simulation. The results show the BOP tracking to be a step-shaped input signal under current and wave loads. A discussion of the performance of feedback control under different environmental loads is also included. 相似文献
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Stephen A. Bowden Abdalla Y. Mohamed Ayad N. F. Edilbi Yu-Shih Lin Yuki Morono Kai-Uwe Hinrichs Fumio Inagaki 《Basin Research》2020,32(5):804-829
Basin models can simulate geological, geochemical and geophysical processes and potentially also the deep biosphere, starting from a burial curve, assuming a thermal history and utilizing other experimentally obtained data. Here, we apply basin modelling techniques to model cell abundances within the deep coalbed biosphere off Shimokita Peninsula, Japan, drilled during Integrated Ocean Drilling Program Expedition 337. Two approaches were used to simulate the deep coalbed biosphere: (a) In the first approach, the deep biosphere was modelled using a material balance approach that treats the deep biosphere as a carbon reservoir, in which fluxes are governed by temperature-controlled metabolic processes that retain carbon via cell-growth and cell-repair and pass it back via cell-damaging reactions. (b) In the second approach, the deep biosphere was modelled as a microbial community with a temperature-controlled growth ratio and carrying capacity (a limit on the size of the deep biosphere) modulated by diagenetic-processes. In all cases, the biosphere in the coalbeds and adjacent habitat are best modelled as a carbon-limited community undergoing starvation because labile sedimentary organic matter is no longer present and petroleum generation is yet to occur. This state of starvation was represented by the conversion of organic carbon to authigenic carbonate and the formation of kerogen. The potential for the biosphere to be stimulated by the generation of carbon-dioxide from the coal during its transition from brown to sub-bituminous coal was evaluated and a net thickness of 20 m of lignite was found sufficient to support an order of magnitude greater number of cells within a low-total organic carbon (TOC) horizon. By comparison, the stimulation of microbial populations in a coalbed or high-TOC horizon would be harder to detect because the increase in population size would be proportionally very small. 相似文献
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7.
正2018年5月26日,自然资源部中国地质调查局在黑龙江省安达市松科二井工程现场召开大陆科学钻探工程(松科二井)完井暨学术研讨现场会。中国地质学会常务副理事长兼秘书长、自然资源部中国地质调查局副局长、松科二井工程领导小组组长李金发宣布松辽盆地大陆深部科学钻探工 相似文献
8.
青藏高原唐古拉山南北两侧在地形地貌、地理和气候特征上存在显著差异,多年冻土的发育状况和特征也明显不同。受第二次青藏高原综合科学考察研究等项目资助,多年冻土对亚洲水塔的影响专题考察分队分别于2019年和2020年的10—11月对唐古拉山各拉丹冬南侧的色林错上游扎加藏布源区(简称“湖源区”)和北侧的长江上游沱沱河源区(简称“江源区”)进行了多年冻土野外考察。利用钻探、坑探、地球物理勘探等方法对多年冻土的分布边界、多年冻土剖面的地层、地下冰等特征进行了描述和取样,同步构建了多年冻土温度和活动层水热观测网络,为多年冻土对亚洲水塔影响的机理分析、数值模拟以及情景预估提供数据保障。对野外调查资料的初步分析认为,各拉丹冬南北两坡地层沉积类型和地下冰赋存状态存在明显差异,北坡多年冻土的热稳定性、地下冰含量、冰缘地貌类型多样性均高于南坡,但由于受到构造地热、河流融区等多种因素的影响,北坡的冻土分布形式更为复杂。江源区100 m钻孔剖面揭示了连续分布的、厚度大于50 m的地下冰;在该区域发现了多年生冻胀丘分布群,并利用钻探和地球物理勘探方法对该区域规模最大、结构最完整的冰核型冻胀丘进行了较为系统的勘察剖析。两次野外调查工作共采集钻孔岩心、表层土壤、冰水等各类样本近1.2万件,为后期区域冻土理化指标分析,冻土环境化学、古气候环境研究的开展奠定基础。 相似文献
9.
位于南岭成矿带和钦-杭成矿带(简称钦-杭带)交汇部位的湖南大义山锡矿是南岭地区典型的富硼型锡多金属矿床。为厘清大义山锡矿成矿动力学背景,深化南岭地区钨锡矿成矿机制,本文以大义山成锡矿黑云母二长花岗岩为研究对象,开展了系统的岩石学和地球化学研究。研究发现,大义山锡矿具有富硼的特征,成矿黑云母二长花岗岩发育电气石"囊包",电气石在蚀变矿物中广泛发育,并与锡矿化紧密共生,这些特征表明成矿花岗岩具有富硼的特征,并发生了岩浆热液流体出溶。地球化学分析显示,黑云母二长花岗岩具有较高含量的Al_2O_3 (13.67%~14.00%)、Na_20(3.65%~3.90%)、K_2O(3.49%~4.24%)以及较高的FeO~T/(FeOT+MgO)比值(0.95~0.97)、FeO~T/MgO 比值(18.75~32.69)、A/CNK 比值(1.15~1.26)和 10000 × Ga/Al 比值(3.48~4.08),较低的CaO(0.54%~0.59%)、P_2O_5(0.04%~0.06%)含量和锆饱和温度(716~725℃)。球粒陨石标准化稀土元素配分具有明显的四分组效应,强烈的Eu负异常,微量元素富集Rb、Th、U、Ta和Nd等元素,亏损Ba、Nb、Sr、Eu等元素。表明成矿花岗岩具有高分异的特征,与A2型花岗岩特征相近。Nd-Hf同位素分析显示,黑云母二长花岗岩与南岭地区成锡矿花岗岩及钦-杭带A型花岗岩同位素特征基本一致,表明岩浆主要来源于中元古代壳源物质熔融,并有幔源物质的加入。综合本文及前人研究成果,推测南岭地区燕山期伸展作用与Izanagi俯冲板块开天窗或撕裂有关,在此背景下,软流圈物质上涌,引发下地壳物质熔融,形成了富硼的壳幔源混合型花岗质岩浆。岩浆中较高的硼含量促使岩浆发生强烈的结晶分异,并有利于晚期锡矿的形成。 相似文献
10.
湖南晚侏罗世金鸡岭花岗岩体是南岭地区典型W—Sn成矿岩体之一,内部发育黑云母花岗质伟晶岩团块和文象花岗质条带状伟晶岩脉。金鸡岭花岗岩和黑云花岗伟晶岩中的黑云母具有相似的地球化学特征,均表现出高的FeO、TiO2、Al2O3含量和低的MgO、CaO、Na2O、MnO含量,以及富集成矿元素Nb、Ta、W、Sn,亏损Sr、Ce、Eu等微量元素特征,从花岗岩体到黑云花岗伟晶岩,岩浆的形成温度和氧逸度降低,云母中Al2O3、Li2O*含量升高,TiO2、MgO含量降低,黑云母由铁叶云母演变为黑鳞云母。结合前人资料,金鸡岭花岗岩与黑云花岗伟晶岩均源于元古宙地壳的深熔作用,伟晶岩为花岗岩浆在晚期分异演化的产物,形成于岩浆—热液转化阶段。伟晶岩阶段是稀有金属元素显著富集,乃至进一步成矿的重要阶段。 相似文献