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1.
Integrity monitoring for ambiguity resolution is of significance for utilizing the high-precision carrier phase differential positioning for safety–critical navigational applications. The integer bootstrap estimator can provide an analytical probability density function, which enables the precise evaluation of the integrity risk for ambiguity validation. In order to monitor the effect of unknown ambiguity bias on the integer bootstrap estimator, the position-domain integrity risk of the integer bootstrapped baseline is evaluated under the complete failure modes by using the worst-case protection principle. Furthermore, a partial ambiguity resolution method is developed in order to satisfy the predefined integrity risk requirement. Static and kinematic experiments are carried out to test the proposed method by comparing with the traditional ratio test method and the protection level-based method. The static experimental result has shown that the proposed method can achieve a significant global availability improvement by 51% at most. The kinematic result reveals that the proposed method obtains the best balance between the positioning accuracy and the continuity performance.  相似文献   
2.
Geotechnical and Geological Engineering - Deep coals are generally in a high geothermal environment, and when UCG (underground coal gasification) is carried out, the long-term high temperature...  相似文献   
3.
南天山—北山—索伦—长春缝合带作为古亚洲洋的最终闭合位置,其形成与演化特征一直以来都是中亚造山带相关研究的焦点与热点问题。对于该缝合带形成时代以及俯冲极性等方面的研究,有利于揭示中亚造山带的增生与演化历史,为古亚洲洋构造演化模型的建立提供理论支持。笔者等依据南天山—北山—索伦—长春缝合带内的大地构造背景、构造岩石组成、闭合方式和闭合时代的差异,自西向东将其分为4段:① 南天山缝合带位于缝合带西段,形成于塔里木板块向北俯冲与哈萨克斯坦—伊犁地块发生拼贴的过程中,根据高压变质年龄、钉合岩体以及不整合盖层等证据来综合分析,其闭合时代应为晚石炭世;② 北山缝合带位于缝合带中段,形成于敦煌地块和阿拉善地块向北俯冲与北部图瓦—蒙古板块发生拼贴的过程中,根据带内蛇绿岩的年代学证据限定其闭合时代应为早—中二叠世。阿拉善地块北缘的两条蛇绿岩带作为北山缝合带与索伦—长春缝合带之间的连接带,分别代表了古亚洲洋在该区域闭合时形成的缝合带和弧后盆地,其形成时代应当为中二叠世—晚二叠世早期;③ 索伦—长春缝合带位于缝合带中—东段,古亚洲洋在该地区同时发生了南北两侧的双向俯冲,两侧地块在中二叠世—早三叠世完成拼贴;④长春—延吉缝合带形成于中三叠世前后华北板块与佳木斯—兴凯地块的俯冲增生过程中,其较西侧索伦—长春缝合带的形成时间(270~250 Ma)晚20~30 Ma。因此长春—延吉缝合带与索伦—长春缝合带的形成时代与构造背景存在显著的差异,不属于其东延部分。在上述分析基础上,笔者等认为古亚洲洋沿南天山—北山—索伦—长春缝合带自西向东发生了4个阶段的演化过程,闭合时代自西向东逐渐变年轻,整个过程从晚石炭世一直持续到了三叠世,其中长春—延吉缝合带记录了古亚洲洋和古太平洋构造域叠加与转换的地质过程。  相似文献   
4.
Classic porphyry Cu–Mo deposits are mostly characterized by close temporal and spatial relationships between Cu and Mo mineralization. The northern Dabate Cu–Mo deposit is a newly discovered porphyry Cu–Mo polymetallic deposit in western Tianshan, northwest China. The Cu mineralization postdates the Mo mineralization and is located in shallower levels in the deposit, which is different from most classic porphyry Cu–Mo deposits. Detailed field investigations, together with microthermometry, laser Raman spectroscopy, and O‐isotope studies of fluid inclusions, were conducted to investigate the origin and evolution of ore‐forming fluids from the main Mo to main Cu stage of mineralization in the deposit. The results show that the ore‐forming fluids of the main Mo stage belonged to an NaCl + H2O system of medium to high temperatures (280–310°C) and low salinities (2–4 wt% NaCl equivalent (eq.)), whereas that of the main Cu stage belonged to an F‐rich NaCl + CO2 + H2O system of medium to high temperatures (230–260°C) and medium to low salinities (4–10 wt% NaCl eq.). The δ18O values of the ore‐forming fluids decrease from 3.7–7.8‰ in the main Mo stage to ?7.5 to ?2.9‰ in the main Cu stage. These data indicate that the separation of Cu and Mo was closely related to a large‐scale vapor–brine separation of the early ore‐forming fluids, which produced the Mo‐bearing and Cu‐bearing fluids. Subsequently, the relatively reducing (CH4‐rich) Mo‐bearing, ore‐forming fluids, dominantly of magmatic origin, caused mineralization in the rhyolite porphyry due to fluid boiling, whereas the relatively oxidizing (CO2‐rich) Cu‐bearing, ore‐forming fluids mixed with meteoric water and precipitated chalcopyrite within the crushed zone at the contact between rhyolite porphyry and wall rock. We suggest that the separation of Cu and Mo in the deposit may be attributed to differences in the chemical properties of Cu and Mo, large‐scale vapor–brine separation of early ore‐forming fluids, and changes in oxygen fugacity.  相似文献   
5.
水动力条件对沉积物-水界面氧通量的影响   总被引:2,自引:0,他引:2  
氧环境决定了水体沉积物中各种生命所需元素的最终归趋,沉积物-水界面是水相与沉积物相氧传递的重要场所,而水动力条件是影响沉积物-水界面氧传递的重要因素.选择三峡库区一级支流御临河为研究对象,根据长年监测数据建立实验室模型,采用声学多普勒流速测试仪及微电极测试系统构建了非侵入式涡度相关测试系统,探究了不同水动力条件对沉积物-水界面氧通量的影响.结果表明:水体静止状态下沉积物-水界面溶解氧浓度随时间的增加而减少,非静止状态下随时间的增加而增加;沉积物-水界面氧通量随水体流速的增加而增加.根据氧通量求解对应流速下垂直涡动扩散系数并进行线性拟合,当水体流速为0.01~0.14 m/s时,垂直涡动扩散系数与水体流速的相关性最好,此时沉积物-水界面氧通量的传递以涡动扩散为主导.  相似文献   
6.
The Yangshan deepwater port is the only container port built in the islands off the mainland of China. Batter piles with a sheet-pile-supported platform bulkhead structure were first used as a new shore-connecting structure to connect the front main wharf structure and the back land. Large-diameter sand columns were also used to reinforce the soft foundation of the shore-connecting structure in the deep water of the open sea. A 3D nonlinear FEM model based on real geological conditions was built to optimize the large-diameter sand columns’ reinforcing scheme and investigate shore-connecting structures’ mechanical properties under different construction conditions. The replacement ratio of 30%, the bottom elevation of the fourth soil layer, and the soft soil just below and directly adjacent to the shore-connecting structure were determined as optimal replacement ratio, reinforcing depths, and reinforcing area of the large-diameter sand columns reinforcement by assessing the force and deformation of the shore-connecting structure. By numerical computing, the maximum displacement of the supported platform was 11.03 cm, which was close to the measured value; and the piles’ maximum stress, displacement and moments were all smaller than the design strength. These indicated that the shore-connecting structure could remain stable by an optimal sand columns reinforcing scheme.  相似文献   
7.
胡军  孙思远  谷昊东  安志辉  叶琴  王霈 《地球科学》2021,46(7):2515-2528
峡东地区是我国原震旦系标准剖面所在地,该地区南沱组直接覆盖莲沱组之上,中间缺失下冰期和间冰期地层,究其原因尚不清楚.通过聚焦南沱组与莲沱组接触层位,利用现代冰川沉积物研究方法开展系统沉积学研究,结果表明:九龙湾周缘南沱组和莲沱组之间存在一层紫红色混合杂砾岩层,其内部砾石定向性、形态、磨圆、岩性以及显微构造与之上南沱组典型灰绿色杂砾岩区别明显,青林口剖面南沱组底部发育微观尺度上的变形沉积构造.表明南沱组底部与莲沱组接触层位为冰川底碛成因,而南沱组主体为冰海沉积成因.证明峡东地区南沱组与莲沱组之间地层缺失是由盛冰期的冰川剥蚀所致,南沱组可能仅代表了盛冰期之后冰消期的沉积记录.   相似文献   
8.
高镁安山岩主要产出于板块会聚边缘的大洋俯冲消减带岛弧环境,是岛弧岩浆作用的代表性产物,研究其相关构造属性,对示踪板块俯冲时限、俯冲带构造背景、大洋俯冲作用过程中岩石圈地幔演化等方面至关重要。长春- 延吉缝合带位于佳木斯- 兴凯地块和华北板块之间,为古亚洲洋的闭合和古太平洋的启动过程提供了关键的信息,但有关缝合带位置与俯冲方式仍然存在很大的争议。本文对采自长春- 延吉缝合带吉东地区的色洛河群绿片岩样品进行了主量和微量元素分析以及锆石U- Pb年龄测定,结果表明这套样品原岩为一套赞岐质高镁安山岩,具有富Mg、低Al、低Ti、高Cr、Ni等特征,与日本Setouchi火山岩带中的赞岐岩具可比性,由俯冲板片(洋壳+上覆沉积物)部分熔融的流体与地幔发生混合而成,形成于华北板块北部边缘之上的陆缘岛弧环境,由吉林- 黑龙江洋的俯冲所致。锆石U- Pb定年结果表明其形成时代为中三叠世(246±2 Ma)。本文证据显示原定义为中元古代的色洛河群时代可能为早中生代,并非元古宙或者晚古生代增生杂岩,而应该为华北板块上形成于早中生代的陆缘岛弧安山岩。区域构造分析显示,长春- 延吉缝合带不是天山- 索伦- 西拉木伦- 长春缝合带的东延部分,而是吉林- 黑龙江高压变质带的南延部分,形成于三叠纪前后古太平洋板块的西向俯冲作用导致的佳木斯- 兴凯地块与华北板块之间的拼合。  相似文献   
9.
国家级矿产实物地质资料的筛选和管理意义   总被引:4,自引:0,他引:4  
国家级矿产实物地质资料是反映中国矿产资源成矿特点、展现全国矿产勘查与科技工作水平的实物地质资料。国家级矿产实物地质资料由国家实物库永久收藏管理,因此实物地质资料需要筛选。筛选包含2层含义,一是矿床的筛选,即具有典型性、代表性、特殊性的矿床;二是钻孔实物的筛选,即入选矿床最具有代表性的钻孔岩矿心。笔者对2层含义的筛选分别进行了阐述并制定了筛选依据和工作方法,使国家级矿产实物地质资料的筛选有章可循,具可操作性。最后,对全国矿产实物地质资料的管理提出了建议。  相似文献   
10.
地震前后气体地球化学信息的研究在地震监测预报中具有较高的应用价值。为研究2021年5月22日青海玛多MS7.4地震与CO时空变化之间的关系,在以瓦里关大气观测站地面数据验证大气红外探测仪(AIRS)反演数据可靠性的基础上,提取玛多MS7.4地震前后AIRS反演的CO数据,通过滑动均值法、差值法对玛多地震前后不同尺度的CO浓度数据进行处理和分析。结果表明:利用卫星遥感数据提取CO地球化学信息是可靠的。时间上,玛多MS7.4地震前两个月CO浓度开始波动,出现峰值,地震发生后恢复平静;空间上,震中位置的CO浓度在近地面变化尤其明显,震中及附近区域的CO浓度从3月开始逐渐升高,由离散分布逐渐向震中和发震断裂带聚拢靠近,到4月底达到最大异常18.60×10-9,异常高值中心的连线与发震断层江错断裂走向、地表破裂分布一致。排除背景值和季节变化的影响,推断CO浓度异常变化是地震引起的,主要归因于地下气体释放和岩石挤压碰撞产气,气体逸散后在大气圈中发生的一系列化学反应起次要作用。  相似文献   
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