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Design and deployment of autoclave pressure vessels for the portable deep-sea drill rig MeBo (Meeresboden-Bohrgerät) 便携式深海钻井平台MeBo的高压灭菌器压力容器设计与部署(Meeresboden-Bohrgerät)
IF 1.2 Q3 GEOSCIENCES, MULTIDISCIPLINARY Pub Date : 2017-11-30 DOI: 10.5194/SD-23-29-2017
T. Pape, H. Hohnberg, D. Wunsch, E. Anders, T. Freudenthal, K. Huhn, G. Bohrmann
Abstract. Pressure barrels for sampling and preservation of submarine sediments under in situ pressure with the robotic sea-floor drill rig MeBo (Meeresboden-Bohrgerat) housed at the MARUM (Bremen, Germany) were developed. Deployments of the so-called MDP (MeBo pressure vessel) during two offshore expeditions off New Zealand and off Spitsbergen, Norway, resulted in the recovery of sediment cores with pressure stages equaling in situ hydrostatic pressure. While initially designed for the quantification of gas and gas-hydrate contents in submarine sediments, the MDP also allows for analysis of the sediments under in situ pressure with methods typically applied by researchers from other scientific fields (geotechnics, sedimentology, microbiology, etc.). Here we report on the design and operational procedure of the MDP and demonstrate full functionality by presenting the first results from pressure-core degassing and molecular gas analysis.
摘要开发了用于在原位压力下对海底沉积物进行采样和保存的压力桶,该压力桶使用位于德国不来梅MARUM的海底机器人钻井平台MeBo (Meeresboden-Bohrgerat)。在新西兰和挪威斯匹次卑尔根的两次海上考察中,所谓的MDP (MeBo压力容器)的部署导致沉积物岩心的恢复,其压力级等于原位静水压力。虽然MDP最初是为海底沉积物中天然气和天然气水合物含量的定量设计的,但它也允许使用其他科学领域(岩土工程、沉积学、微生物学等)的研究人员通常使用的方法对原位压力下的沉积物进行分析。在这里,我们报告了MDP的设计和操作过程,并通过介绍压力堆脱气和分子气体分析的第一个结果来展示其完整的功能。
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引用次数: 14
Drilling into an active mofette: pilot-hole study of the impact of CO 2 -rich mantle-derived fluids on the geo–bio interaction in the western Eger Rift (Czech Republic) 钻进一个活跃的模子:富co2幔源流体对埃格尔裂谷西部地质-生物相互作用影响的先导孔研究(捷克共和国)
IF 1.2 Q3 GEOSCIENCES, MULTIDISCIPLINARY Pub Date : 2017-11-30 DOI: 10.5194/SD-23-13-2017
R. Bussert, H. Kämpf, C. Flechsig, K. Hesse, T. Nickschick, Qi Liu, J. Umlauft, T. Vylita, D. Wagner, T. Wonik, H. Flores, M. Alawi
Abstract. Microbial life in the continental deep biosphere is closely linked to geodynamic processes, yet this interaction is poorly studied. The Cheb Basin in the western Eger Rift (Czech Republic) is an ideal place for such a study because it displays almost permanent seismic activity along active faults with earthquake swarms up to ML 4.5 and intense degassing of mantle-derived CO2 in conduits that show up at the surface in form of mofettes. We hypothesize that microbial life is significantly accelerated in active fault zones and in CO2 conduits, due to increased fluid and substrate flow. To test this hypothesis, pilot hole HJB-1 was drilled in spring 2016 at the major mofette of the Hartousov mofette field, after extensive pre-drill surveys to optimize the well location. After drilling through a thin caprock-like structure at 78.5 m, a CO2 blowout occurred indicating a CO2 reservoir in the underlying sandy clay. A pumping test revealed the presence of mineral water dominated by Na+, Ca2+, HCO3−, SO42− (Na-Ca-HCO3-SO4 type) having a temperature of 18.6 °C and a conductivity of 6760 µS cm−1. The high content of sulfate (1470 mg L−1) is typical of Carlsbad Spa mineral waters. The hole penetrated about 90 m of Cenozoic sediments and reached a final depth of 108.50 m in Palaeozoic schists. Core recovery was about 85 %. The cored sediments are mudstones with minor carbonates, sandstones and lignite coals that were deposited in a lacustrine environment. Deformation structures and alteration features are abundant in the core. Ongoing studies will show if they result from the flow of CO2-rich fluids or not.
摘要大陆深层生物圈中的微生物生命与地球动力学过程密切相关,但这种相互作用的研究很少。位于Eger裂谷西部(捷克共和国)的Cheb盆地是进行此类研究的理想地点,因为它沿活动断层显示出几乎永久的地震活动,地震群高达ML 4.5,并且在地表以mofettes形式出现的管道中,地幔衍生的CO2强烈脱气。我们假设,在活动断裂带和二氧化碳管道中,由于流体和基质流动的增加,微生物的生命明显加快。为了验证这一假设,2016年春季,在Hartousov mofette油田的主要mofette地区,经过广泛的钻前调查以优化井位,我们钻了hbb -1先导井。在78.5 m处钻穿一层薄薄的盖层状结构后,发生了一次二氧化碳井喷,表明在下面的砂质粘土中存在二氧化碳储层。泵送试验表明,存在以Na+、Ca2+、HCO3−、SO42−(Na- ca -HCO3- so4型)为主的矿泉水,其温度为18.6 °C,电导率为6760 µS cm−1。高含量的硫酸盐(1470 mg L−1)是典型的卡尔斯巴德温泉矿泉水。该孔穿透新生代沉积物约90 m,最终深度达古生代片岩108.50 m。岩心回收率约为85% %。岩心沉积物为沉积于湖相环境的泥岩,含少量碳酸盐、砂岩和褐煤。岩心内有丰富的变形构造和蚀变特征。正在进行的研究将表明它们是否是由富含二氧化碳的流体流动造成的。
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引用次数: 20
The Iceland Deep Drilling Project 4.5 km deep well, IDDP-2, in the seawater-recharged Reykjanes geothermal field in SW Iceland has successfully reached its supercritical target 冰岛深水钻井项目位于冰岛西南部Reykjanes海水补给地热田的4.5 km深井IDDP-2已成功达到超临界目标
IF 1.2 Q3 GEOSCIENCES, MULTIDISCIPLINARY Pub Date : 2017-11-30 DOI: 10.5194/SD-23-1-2017
G. Ó. Friðleifsson, W. Elders, R. Zierenberg, Ari Stefánsson, A. Fowler, T. Weisenberger, B. S. Harðarson, K. Mesfin
Abstract. The Iceland Deep Drilling Project research well RN-15/IDDP-2 at Reykjanes, Iceland, reached its target of supercritical conditions at a depth of 4.5 km in January 2017. After only 6 days of heating, the measured bottom hole temperature was 426 °C, and the fluid pressure was 34 MPa. The southern tip of the Reykjanes peninsula is the landward extension of the Mid-Atlantic Ridge in Iceland. Reykjanes is unique among Icelandic geothermal systems in that it is recharged by seawater, which has a critical point of 406 °C at 29.8 MPa. The geologic setting and fluid characteristics at Reykjanes provide a geochemical analog that allows us to investigate the roots of a mid-ocean ridge submarine black smoker hydrothermal system. Drilling began with deepening an existing 2.5 km deep vertical production well (RN-15) to 3 km depth, followed by inclined drilling directed towards the main upflow zone of the system, for a total slant depth of 4659 m ( ∼  4.5 km vertical depth). Total circulation losses of drilling fluid were encountered below 2.5 km, which could not be cured using lost circulation blocking materials or multiple cement jobs. Accordingly, drilling continued to the total depth without return of drill cuttings. Thirteen spot coring attempts were made below 3 km depth. Rocks in the cores are basalts and dolerites with alteration ranging from upper greenschist facies to amphibolite facies, suggesting that formation temperatures at depth exceed 450 °C. High-permeability circulation-fluid loss zones (feed points or feed zones) were detected at multiple depth levels below 3 km depth to bottom. The largest circulation losses (most permeable zones) occurred between the bottom of the casing and 3.4 km depth. Permeable zones encountered below 3.4 km accepted less than 5 % of the injected water. Currently, the project is attempting soft stimulation to increase deep permeability. While it is too early to speculate on the energy potential of this well and its economics, the IDDP-2 is a milestone in the development of geothermal resources and the study of hydrothermal systems. It is the first well that successfully encountered supercritical hydrothermal conditions, with potential high-power output, and in which on-going hydrothermal metamorphism at amphibolite facies conditions can be observed. The next step will be to carry out flow testing and fluid sampling to determine the chemical and thermodynamic properties of the formation fluids.
摘要2017年1月,冰岛Reykjanes的冰岛深钻项目研究井RN-15/IDDP-2达到了4.5 km深度的超临界条件目标。经过短短6天的加热,测得井底温度为426 °C,流体压力为34 MPa。雷克雅内斯半岛的南端是冰岛大西洋中脊向陆地的延伸。雷克雅内斯在冰岛地热系统中是独一无二的,因为它是由海水补充的,海水的临界点为406 °C, 29.8 MPa。雷克雅内斯的地质环境和流体特征提供了一个地球化学模拟,使我们能够研究洋中脊海底黑烟热液系统的根源。钻井开始时,先将现有的一口2.5 km深的直井(RN-15)加深到3 km深,然后向系统的主要上升流区进行倾斜钻井,总倾斜深度为4659 m(垂直深度为 4.5 km)。钻井液的总循环漏失在2.5 km以下,无法使用堵漏材料或多次固井作业来解决。因此,钻探继续到总深度,没有钻屑返回。在3 km深度以下进行了13次点取心尝试。岩心内岩石主要为玄武岩和玄武岩,蚀变范围从上绿片岩相到角闪岩相不等,深部地层温度超过450 °C。在距离底部3 公里以下的多个深度层均检测到高渗透率循环失液区(进料点或进料区)。最大的循环损失(最具渗透性的区域)发生在套管底部和3.4 km深度之间。3.4 千米以下的透水层接受的注入水量不到5 %。目前,该项目正在尝试采用软增产措施来提高深层渗透率。虽然现在推测这口井的能源潜力及其经济效益还为时过早,但IDDP-2是地热资源开发和热液系统研究的一个里程碑。这是第一口成功遇到超临界热液条件的井,具有潜在的高功率输出,并且可以观察到角闪岩相条件下正在进行的热液变质作用。下一步将进行流动测试和流体取样,以确定地层流体的化学和热力学性质。
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引用次数: 72
Scientific Exploration of Induced SeisMicity and Stress (SEISMS) 诱发地震活动性和应力的科学探索
IF 1.2 Q3 GEOSCIENCES, MULTIDISCIPLINARY Pub Date : 2017-11-30 DOI: 10.5194/SD-23-57-2017
H. Savage, J. Kirkpatrick, J. Mori, E. Brodsky, W. Ellsworth, B. Carpenter, Xiaowei Chen, F. Cappa, Y. Kano
Abstract. Several major fault-drilling projects have captured the interseismic and postseismic periods of earthquakes. However, near-field observations of faults immediately before and during an earthquake remain elusive due to the unpredictable nature of seismicity. The Scientific Exploration of Induced SeisMicity and Stress (SEISMS) workshop met in March 2017 to discuss the value of a drilling experiment where a fault is instrumented in advance of an earthquake induced through controlled fluid injection. The workshop participants articulated three key issues that could most effectively be addressed by such an experiment: (1) predictive understanding of the propensity for seismicity in reaction to human forcing, (2) identification of earthquake nucleation processes, and (3) constraints on the factors controlling earthquake size. A systematic review of previous injection experiments exposed important observational gaps in all of these areas. The participants discussed the instrumentation and technological needs as well as faults and tectonic areas that are feasible from both a societal and scientific standpoint.
摘要几个主要的断层钻探项目已经捕捉到了地震的震间期和震后期。然而,由于地震活动的不可预测性,地震前和地震中断层的近场观测仍然难以捉摸。诱发地震活动性和应力科学探索(SEISMS)研讨会于2017年3月召开,讨论了在可控流体注入诱发地震之前对断层进行仪器测量的钻井实验的价值。研讨会参与者阐述了这样一个实验可以最有效地解决的三个关键问题:(1)对人类强迫反应中地震活动性倾向的预测性理解,(2)地震成核过程的识别,以及(3)控制地震大小的因素的约束。对以往注射实验的系统回顾揭示了所有这些领域的重要观察空白。与会者讨论了仪器和技术需求,以及从社会和科学的角度来看可行的断层和构造区域。
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引用次数: 18
IODP workshop: developing scientific drilling proposals for the Argentina Passive Volcanic Continental Margin (APVCM) – basin evolution, deep biosphere, hydrates, sediment dynamics and ocean evolution IODP研讨会:为阿根廷被动火山大陆边缘(APVCM)制定科学钻探建议-盆地演化,深层生物圈,水合物,沉积物动力学和海洋演化
IF 1.2 Q3 GEOSCIENCES, MULTIDISCIPLINARY Pub Date : 2017-05-31 DOI: 10.5194/SD-22-49-2017
R. Flood, R. Violante, T. Gorgas, E. Schwarz, J. Grützner, G. Uenzelmann‐Neben, F. Hernández‐Molina, J. Biddle, G. St‐Onge
Abstract. The Argentine margin contains important sedimentological, paleontological and chemical records of regional and local tectonic evolution, sea level, climate evolution and ocean circulation since the opening of the South Atlantic in the Late Jurassic–Early Cretaceous as well as the present-day results of post-depositional chemical and biological alteration. Despite its important location, which underlies the exchange of southern- and northern-sourced water masses, the Argentine margin has not been investigated in detail using scientific drilling techniques, perhaps because the margin has the reputation of being erosional. However, a number of papers published since 2009 have reported new high-resolution and/or multichannel seismic surveys, often combined with multi-beam bathymetric data, which show the common occurrence of layered sediments and prominent sediment drifts on the Argentine and adjacent Uruguayan margins. There has also been significant progress in studying the climatic records in surficial and near-surface sediments recovered in sediment cores from the Argentine margin. Encouraged by these recent results, our 3.5-day IODP (International Ocean Discovery Program) workshop in Buenos Aires (8–11 September 2015) focused on opportunities for scientific drilling on the Atlantic margin of Argentina, which lies beneath a key portion of the global ocean conveyor belt of thermohaline circulation. Significant opportunities exist to study the tectonic evolution, paleoceanography and stratigraphy, sedimentology, and biosphere and geochemistry of this margin.
摘要阿根廷边缘包含了自晚侏罗世-早白垩世南大西洋打开以来区域和局部构造演化、海平面、气候演化和海洋环流的重要沉积学、古生物学和化学记录,以及现今沉积后化学和生物蚀变的结果。尽管阿根廷的地理位置很重要,它是南北水团交换的基础,但人们还没有利用科学的钻探技术对其进行详细的调查,这也许是因为该边缘具有侵蚀性的名声。然而,自2009年以来发表的一些论文报道了新的高分辨率和/或多通道地震调查,通常与多波束测深数据相结合,显示了在阿根廷和邻近的乌拉圭边缘普遍存在分层沉积物和突出的沉积物漂移。在研究阿根廷边缘沉积物岩心中恢复的地表和近地表沉积物的气候记录方面也取得了重大进展。受这些最新成果的鼓舞,我们在布宜诺斯艾利斯(2015年9月8日至11日)举行了为期3.5天的国际海洋发现计划(IODP)研讨会,重点讨论了在阿根廷大西洋边缘进行科学钻探的机会,该地区位于全球海洋热盐环流传送带的关键部分之下。研究这一边缘的构造演化、古海洋学和地层学、沉积学、生物圈和地球化学具有重要意义。
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引用次数: 0
A comparison of the use of X-ray and neutron tomographic core scanning techniques for drilling projects: insights from scanning core recovered during the Alpine Fault Deep Fault Drilling Project 在钻探项目中使用x射线和中子层析成像岩心扫描技术的比较:从阿尔卑斯断层深断层钻探项目中获得的扫描岩心的见解
IF 1.2 Q3 GEOSCIENCES, MULTIDISCIPLINARY Pub Date : 2017-05-31 DOI: 10.5194/SD-22-35-2017
J. Williams, J. Bevitt, V. Toy
Abstract. It is now commonplace for non-destructive X-ray computed tomography (CT) scans to be taken of core recovered during a drilling project. However, other forms of tomographic scanning are available, and these may be particularly useful for core that does not possess significant contrasts in density and/or atomic number to which X-rays are sensitive. Here, we compare CT and neutron tomography (NT) scans of 85 mm diameter core recovered during the first phase of the Deep Fault Drilling Project (DFDP-1) through New Zealand's Alpine Fault. For the instruments used in this study, the highest resolution images were collected in the NT scans. This allows clearer imaging of some rock features than in the CT scans. However, we observe that the highly neutron beam attenuating properties of DFDP-1 core diminish the quality of images towards the interior of the core. A comparison is also made of the suitability of these two scanning techniques for a drilling project. We conclude that CT scanning is far more favourable in most circumstances. Nevertheless, it could still be beneficial to take NT scans over limited intervals of suitable core, where varying contrast is desired.
摘要现在,在钻井项目中,对回收的岩心进行非破坏性x射线计算机断层扫描(CT)是很常见的。然而,其他形式的层析扫描是可用的,这些可能对没有x射线敏感的密度和/或原子序数的显著差异的岩心特别有用。在这里,我们比较了在新西兰阿尔卑斯断层深断层钻井项目(DFDP-1)第一阶段回收的85 mm直径岩心的CT和中子层析成像(NT)扫描。对于本研究中使用的仪器,在NT扫描中收集了最高分辨率的图像。这使得某些岩石特征的成像比CT扫描更清晰。然而,我们观察到DFDP-1核的高中子束衰减特性降低了向核内部成像的质量。比较了这两种扫描技术在钻井工程中的适用性。我们得出结论,CT扫描在大多数情况下更有利。尽管如此,在合适的核区的有限间隔内进行NT扫描仍然是有益的,因为需要不同的对比度。
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引用次数: 2
Facility for testing ice drills 测试冰钻的设施
IF 1.2 Q3 GEOSCIENCES, MULTIDISCIPLINARY Pub Date : 2017-05-31 DOI: 10.5194/SD-22-29-2017
D. Nielson, C. Delahunty, J. Goodge, J. Severinghaus
Abstract. The Rapid Access Ice Drill (RAID) is designed for subsurface scientific investigations in Antarctica. Its objectives are to drill rapidly through ice, to core samples of the transition zone and bedrock, and to leave behind a borehole observatory. These objectives required the engineering and fabrication of an entirely new drilling system that included a modified mining-style coring rig, a unique fluid circulation system, a rod skid, a power unit, and a workshop with areas for the storage of supplies and consumables. An important milestone in fabrication of the RAID was the construction of a North American Test (NAT) facility where we were able to test drilling and fluid processing functions in an environment that is as close as possible to that expected in Antarctica. Our criteria for site selection was that the area should be cold during the winter months, be located in an area of low heat flow, and be at relatively high elevation. We selected a site for the facility near Bear Lake, Utah, USA. The general design of the NAT well (NAT-1) started with a 27.3 cm (10.75 in.) outer casing cemented in a 152 m deep hole. Within that casing, we hung a 14 cm (5.5 in.) casing string, and, within that casing, a column of ice was formed. The annulus between the 14 and 27.3 cm casings provided the path for circulation of a refrigerant. After in-depth study, we chose to use liquid CO2 to cool the hole. In order to minimize the likelihood of the casing splitting due to the volume increase associated with freezing water, the hole was first cooled and then ice was formed in increments from the bottom upward. First, ice cubes were placed in the inner liner and then water was added. Using this method, a column of ice was incrementally prepared for drilling tests. The drilling tests successfully demonstrated the functioning of the RAID system. Reproducing such a facility for testing of other ice drilling systems could be advantageous to other research programs in the future.
摘要快速进入冰钻(RAID)是为南极地下科学调查而设计的。它的目标是快速钻穿冰层,获取过渡区和基岩的岩芯样本,并留下一个钻孔观测站。为了实现这些目标,需要设计和制造一个全新的钻井系统,该系统包括一个改进的采矿式取心钻机、一个独特的流体循环系统、一个抽油杆滑块、一个动力单元,以及一个用于储存供应品和消耗品的车间。RAID制造的一个重要里程碑是北美测试(NAT)设施的建设,我们能够在尽可能接近南极洲预期环境的环境中测试钻井和流体处理功能。我们的选址标准是该地区冬季寒冷,位于低热流区域,海拔相对较高。我们选择了美国犹他州贝尔湖附近的场地。NAT井(NAT-1)的总体设计首先在152 米深的井眼中固井27.3 厘米(10.75 英寸)的套管。在该套管内,我们悬挂了14 厘米(5.5 英寸)的套管柱,在套管内形成了一层冰柱。14和27.3 cm套管之间的环空提供了制冷剂循环的路径。经过深入研究,我们选择使用液态CO2来冷却孔。为了最大限度地减少由于冻结水导致体积增加而导致套管破裂的可能性,首先对井眼进行冷却,然后从底部向上逐渐形成冰。首先,将冰块放入内胆,然后加水。利用这种方法,一柱冰被逐步制备用于钻井试验。钻井测试成功地证明了RAID系统的功能。复制这样的设施来测试其他冰钻系统可能对未来的其他研究项目有利。
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引用次数: 4
Scientific Drilling at Lake Tanganyika, Africa: A Transformative Record for Understanding Evolution in Isolation and the Biological History of the African Continent, University of Basel, 6-8 June 2016 非洲坦噶尼喀湖科学钻探:了解孤立进化和非洲大陆生物历史的变革记录,巴塞尔大学,2016年6月6-8日
IF 1.2 Q3 GEOSCIENCES, MULTIDISCIPLINARY Pub Date : 2017-05-31 DOI: 10.5194/SD-22-43-2017
A. Cohen, W. Salzburger
Abstract. We report on the outcomes of a workshop held to discuss evolutionary biology, paleobiology and paleoecology questions that could be addressed by a scientific drilling project at Lake Tanganyika, the largest, deepest and oldest of the African Rift Valley lakes. Lake Tanganyika is of special significance to evolutionary biologists as it harbors one of the most spectacular endemic faunas of any lake on earth, with hundreds of unique species of fish, molluscs, crustaceans and other organisms that have evolved over the lake's long history. Most of these groups of organisms are known from fossils in short cores from the lake, raising the possibility that both body fossil and ancient DNA records might be recovered from long drill cores. The lake's sedimentary record could also provide a record of African terrestrial ecosystem history since the late Miocene. This 3-day workshop brought together biological and geological specialists on the lake and its surroundings to prioritize paleobiological, ecological and microbiological objectives that could ultimately be incorporated into an overall drilling plan for Lake Tanganyika and to consider how biological objectives can effectively be integrated into the paleoclimate and tectonics objectives of a Lake Tanganyika drilling project already considered in prior workshops.
摘要我们报告了讨论进化生物学、古生物学和古生态学问题的研讨会的结果,这些问题可以通过坦噶尼喀湖的科学钻探项目来解决,坦噶尼喀湖是非洲裂谷中最大、最深和最古老的湖泊。坦噶尼喀湖对进化生物学家来说具有特殊的意义,因为它拥有地球上任何湖泊中最壮观的特有动物之一,数百种独特的鱼类、软体动物、甲壳类动物和其他生物在该湖的悠久历史中进化而来。这些生物群中的大多数都是从湖中的短岩心化石中发现的,这增加了从长岩心中恢复身体化石和古代DNA记录的可能性。湖泊的沉积记录也可以提供自中新世晚期以来非洲陆地生态系统历史的记录。这个为期3天的研讨会汇集了坦噶尼喀湖及其周边地区的生物学和地质学专家,优先考虑最终可以纳入坦噶尼喀湖整体钻探计划的古生物学、生态学和微生物学目标,并考虑如何将生物目标有效地整合到坦噶尼喀湖钻探项目的古气候和构造学目标中,这些目标已经在之前的研讨会中得到了考虑。
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引用次数: 4
GONAF - the borehole Geophysical Observatory at the North Anatolian Fault in the eastern Sea of Marmara GONAF——马尔马拉海东部北安那托利亚断层的钻孔地球物理观测站
IF 1.2 Q3 GEOSCIENCES, MULTIDISCIPLINARY Pub Date : 2017-05-31 DOI: 10.5194/SD-22-19-2017
M. Bohnhoff, G. Dresen, U. Çeken, F. T. Kadirioğlu, R. Kartal, T. Kılıç, M. Nurlu, K. Yanik, Diğdem Acarel, F. Bulut, Hisao Itô, W. Johnson, P. Malin, D. Mencin
Abstract. The Marmara section of the North Anatolian Fault Zone (NAFZ) runs under water and is located less than 20 km from the 15-million-person population center of Istanbul in its eastern portion. Based on historical seismicity data, recurrence times forecast an impending magnitude M>7 earthquake for this region. The permanent GONAF (Geophysical Observatory at the North Anatolian Fault) has been installed around this section to help capture the seismic and strain activity preceding, during, and after such an anticipated event.
摘要北安那托利亚断裂带(NAFZ)的马尔马拉部分在水下运行,距离东部1500万人口的伊斯坦布尔中心不到20 公里。根据历史地震活动资料,预测该地区即将发生里氏7级以上地震。永久的GONAF(北安纳托利亚断层地球物理观测站)已经安装在这一区域周围,以帮助捕捉地震和应变活动,在这种预期事件发生之前,期间和之后。
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引用次数: 17
Fifteen years of the Chinese Continental Scientific Drilling Program 中国大陆科学钻探十五周年
IF 1.2 Q3 GEOSCIENCES, MULTIDISCIPLINARY Pub Date : 2017-05-31 DOI: 10.5194/SD-22-1-2017
Zhiqing Xu, Jingsui Yang, Chengshan Wang, Z. An, Haibing Li, Qin Wang, D. Su
Abstract. Continental scientific drilling can be regarded as a telescope into the Earth's interior because it provides process insight and uncompromised samples of rocks, fluids, and even sampled from the deep biosphere from the Earth's surface to great depths. As one of the three founding members of the International Continental Scientific Drilling Program (ICDP), ICDP China has made great achievements in many scientific drilling-related research fields. Based on the ICDP participation it attracted global attention of scientists and set up not only the Chinese Continental Scientific Drilling (CCSD) Program in 2001 but also a growing number of ambitious drilling projects in the country. The 5158 m deep borehole of the CCSD project at Donghai County in the Sulu ultrahigh-pressure metamorphic terrain demonstrates that large amounts of crustal rocks of the South China Block have been subducted to at least 120 km, followed by rapid uplift. After successful completion of drilling at Donghai, several continental scientific drilling projects were conducted with funding of the Chinese government and partially with support of ICDP, resulting in a total drilling depth of more than 35 000 m. These projects encompass the Continental Environmental Scientific Drilling Program of China, the Scientific Drilling Project of Wenchuan Earthquake Fault Zone, the Continental Scientific Drilling Project of Cretaceous Songliao Basin, and the Program of Selected Continental Scientific Drilling and Experiments. On the occasion of the 20th anniversary of the ICDP and the 15th anniversary of the CCSD Program, this paper reviews the history and major progress of the CCSD Program.
摘要大陆科学钻探可以被看作是进入地球内部的望远镜,因为它提供了过程的洞察和岩石、流体的完整样本,甚至从地球表面到深处的深层生物圈的样本。作为国际大陆科学钻探计划(ICDP)的三个创始成员之一,ICDP中国在许多与钻探相关的科学研究领域取得了巨大成就。基于ICDP的参与,它吸引了全球科学家的关注,不仅在2001年建立了中国大陆科学钻探(CCSD)计划,而且在中国建立了越来越多的雄心勃勃的钻探项目。在苏鲁超高压变质地层中,东海县CCSD工程5158 m深钻孔表明,华南地块大量地壳岩石已俯冲至至少120 km,并迅速隆升。在东海钻井成功完成后,在中国政府的资助下,在ICDP的部分支持下,开展了几个大陆科学钻探项目,总钻探深度超过35 000 米。这些项目包括中国大陆环境科学钻探计划、汶川地震断裂带科学钻探计划、松辽盆地白垩纪大陆科学钻探计划、大陆科学钻探与实验精选计划等。在ICDP成立20周年和CCSD计划成立15周年之际,本文回顾了CCSD计划的历史和主要进展。
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引用次数: 3
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Scientific Drilling
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