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111.
Xiaowei Tang Xiwen Zhang Qi Shao Zhenqing Li 《Marine Georesources & Geotechnology》2016,34(6):594-601
In the last 20 years, the bucket foundation has been developed as a new type of offshore platform structure. Because of its short period of application to engineering practices, the theoretical decision on the rotation center and horizontal bearing capacity of the bucket foundation has yet to be agreed. A limit analysis method is used to determine the updated rotation center position and horizontal bearing capacity to evaluate the failure mechanisms of the bucket foundations. The results are compared with numerical simulation and experiments, and also with other theoretical methods. The proposed method can satisfactorily consider the engineering conditions and the result is accurate in determining the rotation center and horizontal bearing capacity. 相似文献
112.
Pore water and earth pressures acting on retaining structures are investigated using an efficient coastal double-layered excavation model to determine offshore excavation responses to groundwater fluctuations outside foundation pits. Total pore water pressure includes excess pore water pressure (due to groundwater fluctuations) and steady pore water pressure (due to steady seepage) determined using one-dimensional consolidation theory of double-layered soil and one-dimensional steady-state flow theory, respectively. Rankine's active and passive earth pressures are obtained from pore water pressure. This method is applicable to arbitrary groundwater fluctuation conditions. How physical parameters affect pore water pressure is numerically investigated using examples, demonstrating the method's practicality for calculating pore water and earth pressures. 相似文献
113.
An analytical expression of a gravity retaining wall's seismic stability against sliding and overturning is proposed in this article. The derivation, aiming at the cohesionless soil with inclined backfill surface and nonvertical wall back, is based on limit equilibrium analysis and the pseudo-dynamic method. The variations of the sliding and overturning stability safe factors with the horizontal seismic acceleration are investigated for different seismic amplification factors, soil friction angles, wall friction angles, vertical seismic acceleration coefficients, wall back inclination angles, and backfill surface inclination angles. The results indicate that the soil friction and horizontal seismic action significantly impact the seismic stability. The increase of vertical earthquake action changes the curvature of stability factor curves. The wall friction and back inclination strengthen the gravity retaining wall's resistance to sliding and overturning failure while the backfill surface inclination plays a negative role in the seismic stability. We also found that the seismic stability safe factors calculated by the proposed method are larger but more reasonable than those by the Mononobe-Okabe method. 相似文献
114.
对准格尔煤田黑岱沟露天矿煤的主量元素、稀土元素和微量元素含量和矿物组成进行了研究。结果表明,黑岱沟露天矿煤中稀土元素平均含量为248.12×10-6,约为中国煤平均值的2.83倍。LREE平均含量为236.66×10-6,HREE平均含量为11.46×10-6,LREE/HREE平均值为20.81,(La/Yb)N平均值为1.59,表明煤中LREE相对HREE富集。煤中部分稀土元素可能富集在勃姆石和黏土矿物中。稀土元素分配曲线δCeS变化区间(0.89~2.21)和δEuS中度亏损(0.46~0.86),验证了沉积环境在煤层形成演化过程中对煤中稀土元素输入的稳定性。黑岱沟煤层中微量元素明显偏高的有Ga、Pb、Se、Sr、Th 和Zr,这些元素的含量高于中国、中国华北晚古生代和美国煤的算术均值,也高于地壳克拉克值。 相似文献
115.
微波消解-电感耦合等离子体质谱法测定海泡石中的稀土元素 总被引:3,自引:3,他引:0
海泡石是一种纤维状含水的富镁硅酸盐黏土矿,其中的稀土元素含量在1×10~(-7)~1×10~(-5)之间,目前还没有建立海泡石中稀土元素的国家标准分析方法。测定岩石中的稀土元素主要是采用电感耦合等离子体质谱法(ICP-MS),样品前处理一般采用封闭溶矿和碱熔,但这两种处理方法耗时较长,效率不高。本文通过比较硝酸-氢氟酸-过氧化氢、硝酸-氢氟酸、硝酸-过氧化氢三种样品前处理方法,确定使用硝酸-氢氟酸溶矿,然后进行微波消解同时赶去氢氟酸,避免氢氟酸与稀土元素生成难溶的氟化物,再采用ICP-MS法测定15种稀土元素的含量。由于海泡石中的镁含量较高,为降低基体效应,以~(103)Rh和~(185)Re作内标补偿基体效应和校正灵敏度漂移,各元素测定值的准确性显著提高,回收率为91. 2%~110. 9%,检出限为0. 002~0. 011μg/L,精密度≤2. 79%。本方法与封闭酸溶ICP-MS法的分析结果吻合较好,且用酸量少(7 mL),溶矿效率高(1 h),检出限更低。 相似文献
116.
天长(一天时长)是地球自转速度的直接反映。古生代-中生代化石记录的天长数据表明,古生代-中生代期间的天长随时间呈线性增加。根据角动量守恒定律,这意味着同时段地球自转速度呈线性衰减。如果把这个趋势应用于地球历史的全过程,计算结果为4.519~4.495 Ga,与目前公认的地球绝对年龄4.54 Ga一致。这意味着,从这个时间点起,地球有一种自转速度衰减的总趋势。地球自转速度衰减年龄等值于地球年龄说明:1)所测量的陨石样本生成的时间(表征地球年龄)与地球受月球吸引形成自转减速的时间几乎相同。这意味着地-月体系形成之前的地球比该陨石表征的地球年龄更为古老。2)地球、月球、自转速度衰减时长,三者的年龄呈现等值状态,因而此结果与月球起源于大碰撞的假说可以匹配。 相似文献
117.
离子吸附型稀土矿是我国宝贵的矿产资源,运用遥感影像分类技术提取稀土开采区可以准确地实现对稀土开采状况的监测,但仅利用光谱信息往往难以保证分类精度。本文以江西寻乌稀土矿区为研究区,以IKONOS影像为数据源,应用面向对象分类方法提取了稀土开采区的遥感信息。针对稀土开采区的分布特点,选择基于边缘的分割算法进行影像分割;结合地形信息、光谱信息及几何信息建立规则集,进行特征提取;最后采用隶属度函数法实现面向对象分类,并与传统的光谱角填图分类进行对比分析。研究结果表明,面向对象分类法提取稀土开采区的总体精度为92.49%,Kappa系数为0.857 6,与传统监督分类方法相比有了很大的提高。 相似文献
118.
Huadong Guo 《International Journal of Digital Earth》2018,11(6):546-557
Although Earth’s surface parameters obtained from satellite data have become more and more precise, it is still difficult to guarantee temporal consistency and spatial continuity for large-scale geoscience phenomena. Developing new Earth observation platforms is a feasible way to improve the consistency and continuity of such data. As the planet’s only natural satellite, the Moon has special advantages as a platform for observing Earth, including long lifetime, whole disk view, tectonic stability and unique perspective. After presenting the observation geometry constructed by using the ephemeris, this paper mainly discusses the characteristics of a lunar platform and the proper Moon-based sensors, as well as the scientific objectives of Moon-based Earth observation. Solid Earth dynamics, the energy budget of Earth, Earth’s environmental elements and the Earth-space environment are four potential applications analysed in this paper. 相似文献
119.
云南省澜沧地区位于滇西南地区,地处西南"三江"造山带南段,主体属班公湖-怒江-昌宁-孟连结合带南段,是云南省重要的铅锌银多金属矿分布区,以往在澜沧地区开展了诸多铅锌银矿调查工作,未对澜沧地区稀土矿化进行详细工作,本次通过矿产地质调查工作发现有花岗岩风化壳型、火山岩风化壳型、灰岩风化壳型三种不同的稀土矿化类型,其中花岗岩风化壳型稀土矿化具有较大的含矿层位面积,估算稀土资源量达大型;灰岩风化壳型矿化为调查区新发现类型稀土矿化,矿化与土壤地球化学异常吻合,稀土总量品位较高,含矿层位具有连续性,已开展概略调查地区估算稀土资源潜力达中型以上,具有较好的稀土矿找矿前景,今后对研究区开展详细的验证工作,特别是对灰岩风化壳型稀土矿化区开展研究,全面探索矿化层位特征、含矿性特征,有望取得新的找矿突破。 相似文献
120.
《Chemie der Erde / Geochemistry》2021,81(2):125765
A large, euhedral crystal of fluorapatite (ca. 19.5 × 20.0 mm) from the Panasqueira tin-tungsten deposit (Portugal) was investigated in terms of the distribution of trace elements by using several microanalytical techniques. The studied material represents almost pure fluorapatite with minor amounts of other cations (mainly Sr, Mn, REE and Fe), OH and Cl. Particular interest was given to the distribution of rare earth elements with respect to the crystallographic orientation. A broad range of analytical techniques were used, including optical microscopy coupled with cathodoluminescence imaging, electron probe microanalysis (EPMA), laser ablation – inductively coupled plasma mass spectrometry (LA-ICPMS), Raman microspectroscopy, and simultaneous thermal analysis coupled with mass spectrometry. The investigated crystal consists of the main crystal with a distinct core and rim (Ap2core and Ap2rim, respectively), which grew on a previous, euhedral crystal (Ap1). The fluorapatite demonstrates various types of zoning: regular oscillatory, irregular, and internal sectoring, which is also reflected in trace elements concentrations. The rim Ap2rim has lower concentrations of Mn, Sr and Fe, and significantly higher concentrations of REE compared to the core Ap2core and older crystal Ap1. Furthermore, the rim Ap2rim is strongly depleted in Th, U and Pb. The entire crystal shows elevated Eu contents, expressed as a strong positive anomaly in chondrite-normalized REE patterns. With regards to the volatiles, F concentrations are constant in Ap1, Ap2core and Ap2rim, whereas Cl is below the EPMA detection limit. The Ap2rim was the only part of the investigated material containing OH and CO3, which were observed in the Raman spectra. Furthermore, part of the crystal Ap2core is extensively altered, likely due to fluid-induced metasomatic processes. LA-ICPMS U-Pb dating yielded highly discordant dates due to common Pb content. A lower intercept age of 297 ± 13 Ma (MSWD = 0.13) indicates the age of the fluorapatite crystallization. The overall analytical data constrain growth and post-growth processes, including crystallization of Ap1 and Ap2core, which both have typical hydrothermal Sn-W deposit characteristics, whereas Ap2rim is related to a carbonate stage of the mineralization in the Panasqueira deposit. 相似文献