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Rock strength assessment in tectonically deformed calcareous rocks integrating equotip,ultrasound velocity,and geo-structural fracture analysis
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作者 Elisa Mammoliti Danica Jablonská +3 位作者 Antonio Ferretti Michele Morici Stefano Mazzoli Mirko Francioni 《Journal of Rock Mechanics and Geotechnical Engineering》 2026年第1期196-213,共18页
In complex geological environments,the analysis of drill cores to determine rock strength can be challenging due to the wide variability in the degree of fracturing,leading to subjectivity in the collection of represe... In complex geological environments,the analysis of drill cores to determine rock strength can be challenging due to the wide variability in the degree of fracturing,leading to subjectivity in the collection of representative samples for uniaxial compressive strength testing.This study evaluates non-destructive techniques on calcareous rocks with different tectonic deformations,including Equotip hardness,ultrasound P-wave velocity,thin section analysis,and calcimetry,integrated with photogrammetric fracture analysis.The investigated carbonate rock samples are sourced from drill cores derived from the Umbria-Marche fold and thrust belt(northern Apennines,Italy),including a gently dipping limb of an anticline,a hinge zone of an anticline,and a fault zone associated with a thrust.Fracture intensity,quantified by the P21 parameter using photogrammetric techniques on pre-loading rock samples,is assessed alongside macroscopic identification of discontinuities(such as stylolites,veins,and joints)using marker colours to monitor failures during uniaxial compression testing.Empirical correlations depicted by single and multi-linear relationships indicate a strong dependence between the mechanical and physical properties of limestones.Both Equotip and P-wave velocity are influenced by fracture intensity,but P-wave velocity varies significantly with discontinuity orientation,especially at 45°-90°.To refine uniaxial compressive strength predictions and mitigate multicollinearity,statistical approaches,including linear and multilinear regression,Principal Component Analysis and Gaussian Process Regression,were tested.Findings improve the reliability of non-destructive techniques for assessing rock strength in structurally complex settings,with implications for geotechnical applications. 展开更多
关键词 Non-destructive testing Uniaxial compressive strength Equotip Ultrasound pulse velocity FRACTURING Calcareous rocks
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Exploring the thermal evolution of highly-to over-mature source rocks using Raman spectroscopy and geochemical signatures
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作者 Fu-hua Shang Xiao-peng Sun +3 位作者 Shu-wei Ma Yu-tong Pang Guan-qun Zhou Ke Miao 《China Geology》 2026年第1期75-85,共11页
This study investigated the heterogeneous responses of organic matter(OM)in highly-to over-mature source rocks during thermal maturation.An integrated analysis was conducted on the Raman spectroscopic and geochemical ... This study investigated the heterogeneous responses of organic matter(OM)in highly-to over-mature source rocks during thermal maturation.An integrated analysis was conducted on the Raman spectroscopic and geochemical signatures of shales from the Lower Silurian Longmaxi Formation and the Lower Cambrian Qiongzhusi Formation,as well as anthracites from the Lower Permian Shanxi–Formation and the Upper Carboniferous Taiyuan Formation(collectively referred to as the Shanxi Taiyuan Formations).Additionally,burial and thermal evolution modeling was employed to support the analysis.A systematic assessment of Raman spectral parameters(e.g.,the positions and intensity ratio of the D and G bands)revealed robust correlations between the thermal history patterns of source rocks and molecular structural evolution parameters.The subsequent mechanistic quantification demonstrated that the maturation state of the source rocks was subjected to the hierarchical control of three principal factors:Peak heating temperature,the duration of sustained thermal intensity,and effective maturation duration.In addition,comparative analyses demonstrated that the anthracites attained higher structural ordering under sustained thermal conditions.This contrasts with the disordered carbon matrices observed in the intermittently heated shales.Raman spectroscopy further revealed broader variations in the D and G band intensities of the Longmaxi Formation compared to the Qiongzhusi Formation.This difference is associated with their different thermal histories.The thermal burial histories confirm that shales in the Longmaxi Formation underwent thermal exposure at lower peak temperatures over a shorter duration compared to those in the Qiongzhusi Formation.Finally,this study established a maturity calibration model for over-mature source rocks through a systematic correlation between Raman peak height ratios(R_(D/G))and vitrinite reflectance(R_(o)). 展开更多
关键词 Raman spectroscopy Overmature source rock Qiongzhusi Formation Longmaxi Formation ANTHRACITE Mineral exploration engineering
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Mechanical behaviors and instability of rocks subjected to hydraulic progressive wetting:Acoustic emission and uniaxial compression experiments
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作者 Yixin Liu Jiaxin Cheng +2 位作者 Chuanhua Xu Gang Wang Jiang Xu 《Journal of Rock Mechanics and Geotechnical Engineering》 2026年第1期593-610,共18页
In the field of rock engineering,the influence of water is a dynamic process that exhibits varying effects over time and across different locations.To further understand how water influences the mechanical properties ... In the field of rock engineering,the influence of water is a dynamic process that exhibits varying effects over time and across different locations.To further understand how water influences the mechanical properties and acoustic emission(AE)behavior of rocks,this study conducted uniaxial compression experiments on sandstones with varying degrees of wetting under both natural conditions and water-chemical environments.In addition,the study combined AE equipment with digital image correlation(DIC)to monitor the entire failure process.Using the sliding window algorithm,the variation in the variance of AE characteristic parameters during the process of sandstone loading to failure is analyzed from the perspective of critical slowing down.This analysis enables the effective identification of the early warning signal before failure.The experimental findings suggest that an increase in wetting height results in a gradual decrease in peak stress,accompanied by a concomitant increase in the percentage of shear cracks.The characteristic parameters,including energy,amplitude,and ringing count,all exhibit critical slowing phenomena.The waveform of AE characteristic parameters of the same sample is similar,and the mutation time of the precursor signal is roughly the same.All signals appear in the irreversible plastic deformation stage of microcrack initiation.The integration of critical slowing down theory and the b-value early warning method facilitates a more comprehensive evaluation of the stability of rock mass,thereby significantly enhancing the efficiency and safety of disaster prevention measures. 展开更多
关键词 rock wetting and softening Uniaxial compression Acoustic emission(AE) Critical slowing Monitoring and early warning
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Zircon U-Pb ages of the volcanic rocks and their constraints on the ending of the Huoshiling Formation in the southeastern of Songliao Basin,NE China
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作者 Xue-jiao Qu Ming-kai Zhang +5 位作者 Pu-jun Wang Zhuo-long Yang You-feng Gao Kang-jun Wu Jia Wang Xian-feng Tan 《China Geology》 2026年第1期214-216,I0023,共4页
1.Objective The Songliao Basin(SB)is situated on the eastern margin of Eurasia continent(Northeast Asia).During the Late Jurassic to Early Cretaceous,hundreds of rifting basins developed in this area,and the SB is a u... 1.Objective The Songliao Basin(SB)is situated on the eastern margin of Eurasia continent(Northeast Asia).During the Late Jurassic to Early Cretaceous,hundreds of rifting basins developed in this area,and the SB is a unique case among them as it evolved into the largest rift basin.The rift basin filling of SB includes Huoshiling Formation,Shahezi Formation,and Yingcheng Formation in ascending order.The mega-rifting was controlled by the Mongol-Okhotsk Collisional Belt to the north and northwest and the Pacific Subduction Zone to the east(Wang PJ et al.,2016).As the first rifting succession,the Huoshiling Formation contains key information about the formation of the rifting basins and records the evolution of the Mongol-Okhotsk Collisional Belt and the Pacific Subduction Zone.However,the geological period of the Huoshiling Formation has not been well constrained for two main reasons.First,it is easily confused with the Yingcheng Formation,as both are dominated by volcanogenic-sedimentary successions.Second,there is lack of reliable dating samples from the uppermost part of the Huoshiling Formation due to its considerable burial depth. 展开更多
关键词 rift basin rift basinthe yingcheng formation ZIRCON U Pb ages rifting basins volcanic rocks huoshiling formationshahezi formationand
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A comparative study on the apatite and zircon from the ore-related and-barren magmatic rocks of the Shatanjiao region,Lower Yangtze River Belt:Controlling effects for petrogenesis and Cu-Au mineralization
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作者 Yu Wang Jing-ya Cao +4 位作者 Sheng-xiong Yang Xiao-yong Yang Majid Ghasemi Siani Asghar Dolati Muhammad Hafeez 《China Geology》 2026年第1期120-135,I0015-I0022,共24页
The links between the adakitic rocks and Cu-Au mineralization have long been argued.This study investigates petrogenesis and its link to mineralization potential by a series of in-situ geochronological and geochemical... The links between the adakitic rocks and Cu-Au mineralization have long been argued.This study investigates petrogenesis and its link to mineralization potential by a series of in-situ geochronological and geochemical signatures of apatite and zircon in three ore-related intrusions and one-barren intrusion in the Middle-Lower Yangtze River Metallogenic Belt(MLYRB).Zircon U-Pb dating yield ages of 139–143 Ma and 121 Ma for the ore-related and ore-barren intrusions,respectively.The ore-related rocks have higher apatite Sr/Y(1.57–9.69),(La/Yb)_(N)(16.7–159.5),andδEu(0.45–0.74)than the ore-barren rocks of 0.57–1.02,19.3–24.1 and 0.40–0.45,respectively,indicating the former has an adakitic affinity,while the latter has a non-adakitic affinity.The ore-related rocks have enriched zircon Hf isotopes withε_(Hf)(t)values of-15.9 to-5.5 and T_(DMC)ages of 2408–1655 Ma and apatite Sr-Nd isotopes,indicating that the ore-related magmas were mainly originated from partial melting of subducted oceanic crust.The orebarren rocks have higherε_(Hf)(t)values of-6.6 to-4.6 and lower T_(DMC)ages of 1598–1469 Ma and apatite Sr-Nd isotopes,indicating a lithospheric mantle source.The ore-related rocks have higher oxygen fugacity of mean∆FMQ+2.00 and X_(F)/X_(OH)of 8.36–175 than the ore-barren rocks of mean∆FMQ+1.43 and3.72–4.96.It was inferred that magma source,water content,and oxygen fugacity emerge as critical factors governing the regional Cu-Au mineralization potential. 展开更多
关键词 Sr-Nd-Hf isotopes Zircon U-Pb dating Apatite Sr-Nd isotopes Oxygen fugacity Magma source Adakitic rocks Cu-Au mineralization Shatanjiao Orefield
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血根碱调节RhoA/ROCK信号通路对糖尿病性骨质疏松症大鼠骨代谢和炎性损伤的影响
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作者 周飞 易松 +1 位作者 岳建彪 张上上 《免疫学杂志》 2026年第2期81-86,共6页
目的探究血根碱调节Ras同源基因家族成员A(RhoA)/Rho相关激酶(ROCK)信号通路对糖尿病性骨质疏松症大鼠骨代谢和炎性损伤的影响。方法取60只健康雄性8周龄SD大鼠,分为正常组(未予任何处理)、模型组(腹腔注射60 mg/kg 0.2%链脲佐菌素+骨... 目的探究血根碱调节Ras同源基因家族成员A(RhoA)/Rho相关激酶(ROCK)信号通路对糖尿病性骨质疏松症大鼠骨代谢和炎性损伤的影响。方法取60只健康雄性8周龄SD大鼠,分为正常组(未予任何处理)、模型组(腹腔注射60 mg/kg 0.2%链脲佐菌素+骨密度降低)、低剂量血根碱组(L-血根碱组)、高剂量血根碱组(H-血根碱组)、H-血根碱+抑制剂组,每组12只,L-血根碱组、H-血根碱组和H-血根碱+抑制剂组分别为造模成功大鼠予2.50 mg/(kg·d)血根碱灌胃+等量0.9%氯化钠注射液腹腔注射、6.25 mg/(kg·d)血根碱灌胃+等量0.9%氯化钠注射液腹腔注射、6.25 mg/(kg·d)血根碱灌胃+40 mg/(kg·d)Rhosin腹腔注射。各组大鼠处理8周后,使用双能X线吸收测定扫描系统测量骨密度;检测血清钙、骨钙素(OC)、骨保护素(OPG)、碱性磷酸酶(ALP)水平;行生物力学测试检测各组大鼠股骨最大载荷;HE染色观察各组大鼠胰腺组织病理学变化与股骨组织形态学;酶联免疫吸附试验检测各组大鼠血清肿瘤坏死因子-α(TNF-α)、白细胞介素-1β(IL-1β)、白细胞介素-6(IL-6)水平;Western blot实验检测各组大鼠股骨组织RhoA、ROCK1和ROCK2蛋白表达。结果与正常组相比,模型组大鼠骨密度和股骨最大载荷降低,胰岛和股骨组织被破坏,血清钙、OC、OPG含量及股骨组织RhoA、ROCK1、ROCK2蛋白表达降低,血清ALP、IL-1β、TNF-α、IL-6水平升高(P<0.05);与模型组相比,L-血根碱组、H-血根碱组大鼠骨密度和股骨最大载荷升高,胰岛和股骨组织损伤减轻,血清钙、OC、OPG含量及股骨组织RhoA、ROCK1、ROCK2蛋白表达升高,血清ALP、IL-1β、TNF-α、IL-6水平降低,且H-血根碱组上述指标变化更显著(P<0.05);与H-血根碱组相比,H-血根碱+抑制剂组逆转了血根碱对大鼠骨代谢和炎性损伤的影响。结论血根碱通过激活RhoA/ROCK信号通路改善糖尿病性骨质疏松症大鼠骨代谢,并减轻了其炎性损伤。 展开更多
关键词 骨质疏松症 糖尿病性 血根碱 大鼠 RhoA/rock信号通路 骨代谢 炎性损伤
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RhoA/ROCK信号通路在椎间盘退变中的作用
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作者 杜健强 郭子煜 +3 位作者 姚晨阳 冯其金 古恩鹏 王琳珏 《生理科学进展》 北大核心 2026年第1期52-59,共8页
椎间盘由髓核、纤维环和软骨终板组成,对维持脊柱正常生理功能至关重要。椎间盘退变(intervertebral disc degeneration,IDD)是导致腰背痛等脊柱退行性疾病的主要病理基础,给人们的健康状况造成极大的困扰。然而目前对IDD的分子机制仍... 椎间盘由髓核、纤维环和软骨终板组成,对维持脊柱正常生理功能至关重要。椎间盘退变(intervertebral disc degeneration,IDD)是导致腰背痛等脊柱退行性疾病的主要病理基础,给人们的健康状况造成极大的困扰。然而目前对IDD的分子机制仍然缺乏清晰的了解,导致缺乏有效的靶向干预措施。RAS同源家族成员A(RAS homolog family member A,RhoA)/Rho相关蛋白激酶(Rho-associated protein kinase,ROCK)信号通路是调节细胞收缩、迁移和生长的经典通路。其被激活后可参与调控细胞骨架重塑、细胞外基质代谢、生物钟节律、细胞表型改变、细胞衰老及死亡等环节,进而影响IDD的病理进程。深入探究RhoA/ROCK信号通路在IDD中的作用,不仅能揭示疾病发生的分子生物学机制,也有望为研发靶向该通路的治疗策略提供理论依据。 展开更多
关键词 椎间盘退变 RhoA/rock 信号传导 作用机制
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温阳利水方通过激活RhoA/ROCK通路改善慢性肺源性心脏病小鼠心肌细胞焦亡的机制
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作者 陈昕芳 李红 +2 位作者 苏士成 吴峰妹 黄辉 《辽宁中医杂志》 北大核心 2026年第2期204-208,F0003,共6页
目的探讨温阳利水方通过激活RhoA/ROCK通路改善慢性肺源性心脏病小鼠心肌细胞焦亡的机制。方法60只健康雄性C57BL/6小鼠用于实验研究。将小鼠暴露于烟雾和高压氧舱中诱导慢性肺源性心脏病(chronic pulmonary heart disease,CPHD)模型。... 目的探讨温阳利水方通过激活RhoA/ROCK通路改善慢性肺源性心脏病小鼠心肌细胞焦亡的机制。方法60只健康雄性C57BL/6小鼠用于实验研究。将小鼠暴露于烟雾和高压氧舱中诱导慢性肺源性心脏病(chronic pulmonary heart disease,CPHD)模型。将小鼠分为以下3组:对照组(正常条件下饲养的小鼠,接受清洁空气和0.9%氯化钠溶液作为模型组和温阳利水方组的对照,n=20),模型组(如前所述建立的CPF模型,n=20),温阳利水方组(在模型小鼠的基础上给予温阳利水方药剂治疗,n=20)。通过qPCR分析RhoA、ROCK1和ROCK2 mRNA表达。通过蛋白质印迹分析小鼠心肌组织p-MBS/t-MBS比值。通过酶联免疫吸附测定(ELISA)检测小鼠外周血炎症因子肿瘤坏死因子α(tumor necrosis factor-α,TNF-α)、白细胞介素1β(interleukin-1β,IL-1β)和白细胞介素6(interleukin-6,IL-6)水平。组织学分析小鼠心肌受损情况。通过超声心动图检测小鼠心肌功能。通过PI染色检测焦亡细胞。通过蛋白质印迹分析焦亡相关因子高迁移率族蛋白(HMGB1)和热休克蛋白70(HSP70)的表达。结果模型组RhoA、ROCK1和ROCK2 mRNA表达较对照组升高(P<0.05),温阳利水方组RhoA、ROCK1和ROCK2 mRNA表达较模型组降低(P<0.05)。模型组p-MBS/t-MBS比值较对照组升高(P<0.05),温阳利水方组p-MBS/t-MBS比值较模型组降低(P<0.05)。模型组TNF-α、IL-1β和IL-6水平较对照组升高(P<0.05),温阳利水方组TNF-α、IL-1β和IL-6水平较模型组降低(P<0.05)。HE染色显示,与对照组小鼠心肌相比,模型组小鼠心肌细胞排列紊乱,细胞肥大,炎症细胞浸润明显(P<0.05),与模型组相比,温阳利水方显著改善了CPHD引起的病理改变(P<0.05)。马松染色作为纤维化的病理检查表明,CPHD可导致小鼠严重的心肌纤维化,温阳利水方治疗可显著减少胶原沉积(P<0.05)。模型组小鼠左室收缩压(left ventricular systolic pressure,LVSP)、左室射血分数(left ventricular ejection fraction,LVEF)和心搏量(stroke volume,SV)较对照组降低(P<0.05),温阳利水方组LVSP、LVEF和SV较模型组升高(P<0.05)。模型组小鼠心肌细胞焦亡率较对照组升高(P<0.05),温阳利水方组小鼠心肌细胞焦亡率较模型组降低(P<0.05)。模型组HMGB1和HSP70的表达较对照组升高(P<0.05),温阳利水方组HMGB1和HSP70的蛋白表达较模型组降低(P<0.05)。结论温阳利水方通过激活RhoA/ROCK通路,显著改善了CPHD小鼠模型中心肌细胞焦亡和心肌结构及功能。 展开更多
关键词 温阳利水方 RhoA/rock CPHD 心肌细胞焦亡
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Assessing ground stability of a vertical backfilled stope considering creep behaviors of surrounding rocks 被引量:3
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作者 Ruofan Wang Lang Liu +4 位作者 Mengbo Zhu Huafu Qiu Bingbing Tu Huisheng Qu Hao Cui 《Journal of Rock Mechanics and Geotechnical Engineering》 2025年第1期187-199,共13页
Backfill is often employed in mining operations for ground support,with its positive impact on ground stability acknowledged in many underground mines.However,existing studies have predominantly focused only on the st... Backfill is often employed in mining operations for ground support,with its positive impact on ground stability acknowledged in many underground mines.However,existing studies have predominantly focused only on the stress development within the backfill material,leaving the influence of stope backfilling on stress distribution in surrounding rock mass and ground stability largely unexplored.Therefore,this paper presents numerical models in FLAC3D to investigate,for the first time,the time-dependent stress redistribution around a vertical backfilled stope and its implications on ground stability,considering the creep of surrounding rock mass.Using the Soft Soil constitutive model,the compressibility of backfill under large pressure was captured.It is found that the creep deformation of rock mass exercises compression on backfill and results in a less void ratio and increased modulus for fill material.The compacted backfill conversely influenced the stress distribution and ground stability of rock mass which was a combined effect of wall creep and compressibility of backfill.With the increase of time or/and creep deformation,the minimum principal stress in the rocks surrounding the backfilled stope increased towards the pre-mining stress state,while the deviatoric stress reduces leading to an increased factor of safety and improved ground stability.This improvement effect of backfill on ground stability increased with the increase of mine depth and stope height,while it is also more pronounced for the narrow stope,the backfill with a smaller compression index,and the soft rocks with a smaller viscosity coefficient.Furthermore,the results emphasize the importance of minimizing empty time and backfilling extracted stope as soon as possible for ground control.Reduction of filling gap height enhances the local stability around the roof of stope. 展开更多
关键词 Ground stability Time dependency CREEP Surrounding rocks Backfilled stope
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Restoration of hydrocarbon generation potential of the highly mature Lower Cambrian Yuertusi Formation source rocks in the Tarim Basin 被引量:2
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作者 Yao Hu Cheng-Zao Jia +6 位作者 Jun-Qing Chen Xiong-Qi Pang Lin Jiang Chen-Xi Wang Hui-Yi Xiao Cai-Jun Li Yu-Jie Jin 《Petroleum Science》 2025年第2期588-606,共19页
The Early Cambrian Yuertusi Formation(Є_(1)y)in the Tarim Basin of China deposits a continuously developed suite of organic-rich black mudstones,which constitute an important source of oil and gas reservoirs in the Pa... The Early Cambrian Yuertusi Formation(Є_(1)y)in the Tarim Basin of China deposits a continuously developed suite of organic-rich black mudstones,which constitute an important source of oil and gas reservoirs in the Paleozoic.However,its hydrocarbon generation and evolution characteristics and resource potential have long been constrained by deeply buried strata and previous research.In this paper,based on the newly obtained ultra-deep well drilling data,the hydrocarbon generation and expulsion model ofЄ_(1)y shale was established by using data-driven Monte Carlo simulation,upon which the hydrocarbon generation,expulsion,and retention amounts were calculated by using the diagenetic method.The research indicates that theЄ_(1)y shale reaches the hydrocarbon generation and expulsion threshold at equivalent vitrinite reflectances of 0.46%and 0.72%,respectively.The cumulative hydrocarbon generation is 68.88×10^(10)t,the cumulative hydrocarbon expulsion is 35.59×10^(10)t,and the cumulative residual hydrocarbon is 33.29×10^(10)t.This paper systematically and quantitatively calculates the hydrocarbon expulsion at various key geological periods for theЄ_(1)y source rocks in the study area for the first time,more precisely confirming that the black shale of theЄ_(1)y is the most significant source rock contributing to the marine oil and gas resources in the Tarim Basin,filling the gap in hydrocarbon expulsion calculation in the study area,and providing an important basis for the formation and distribution of Paleozoic hydrocarbon reservoirs.The prospect of deep ultra-deep oil and gas exploration in the Tarim Basin is promising.Especially,the large area of dolomite reservoirs under the Cambrian salt and source rock interiors are the key breakthrough targets for the next exploration in the Tarim Basin. 展开更多
关键词 Evaluation of resource potential Highly mature hydrocarbon source rocks Yuertusi formation Tarim Basin
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New progress and future exploration targets in petroleum geological research of ultra-deep clastic rocks in Kuqa Depression,Tarim Basin,NW China 被引量:4
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作者 WANG Qinghua YANG Haijun YANG Wei 《Petroleum Exploration and Development》 2025年第1期79-94,共16页
Significant exploration progress has been made in ultra-deep clastic rocks in the Kuqa Depression,Tarim Basin,over recent years.A new round of comprehensive geological research has formed four new understandings:(1)Es... Significant exploration progress has been made in ultra-deep clastic rocks in the Kuqa Depression,Tarim Basin,over recent years.A new round of comprehensive geological research has formed four new understandings:(1)Establish structural model consisting of multi-detachment composite,multi-stage structural superposition and multi-layer deformation.Multi-stage structural traps are overlapped vertically,and a series of structural traps are discovered in underlying ultra-deep layers.(2)Five sets of high-quality large-scale source rocks of three types of organic phases are developed in the Triassic and Jurassic systems,and forming a good combination of source-reservoir-cap rocks in ultra-deep layers with three sets of large-scale regional reservoir and cap rocks.(3)The formation of large oil and gas fields is controlled by four factors which are source,reservoir,cap rocks and fault.Based on the spatial configuration relationship of these four factors,a new three-dimensional reservoir formation model for ultra-deep clastic rocks in the Kuqa Depression has been established.(4)The next key exploration fields for ultra-deep clastic rocks in the Kuqa Depression include conventional and unconventional oil and gas.The conventional oil and gas fields include the deep multi-layer oil-gas accumulation zone in Kelasu,tight sandstone gas of Jurassic Ahe Formation in the northern structural zone,multi-target layer lithological oil and gas reservoirs in Zhongqiu–Dina structural zone,lithologic-stratigraphic and buried hill composite reservoirs in south slope and other favorable areas.Unconventional oil and gas fields include deep coal rock gas of Jurassic Kezilenuer and Yangxia formations,Triassic Tariqike Formation and Middle-Lower Jurassic and Upper Triassic continental shale gas.The achievements have important reference significance for enriching the theory of ultra-deep clastic rock oil and gas exploration and guiding the future oil and gas exploration deployment. 展开更多
关键词 Tarim Basin Kuqa Depression ultra-deep layers clastic rock multi-layer structural deformation multilayered migration and accumulation new three-dimensional accumulation model
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Coexisting Depleted and Enriched Mantle-derived Magmatic Rocks in the Liaodong Peninsula:Implications for the Destruction of the North China Craton 被引量:1
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作者 WANG Kun WANG Xingpeng +6 位作者 LAN Caiyun LIU Yali LIU Bin OU Quan MO Jiajian YANG Jialin MENG Fanwei 《Acta Geologica Sinica(English Edition)》 2025年第4期961-977,共17页
The North China Craton(NCC)experienced significant lithospheric thinning of over 100 km during the Mesozoic,accompanied by extensive magmatic activity and extensional tectonics.However,the timing and mechanism of this... The North China Craton(NCC)experienced significant lithospheric thinning of over 100 km during the Mesozoic,accompanied by extensive magmatic activity and extensional tectonics.However,the timing and mechanism of this thinning remain the subjects of debate.This study presents zircon U-Pb ages,Hf isotopic data and whole-rock elemental and Sr-Nd isotopic compositions of the Guanshui monzonites and diorites in the eastern NCC.Zircon U-Pb dating reveals that both rock types formed at ca.130 Ma.The monzonites,characterized by high Mg^(#)(50.9-57.9),low Nb/U ratios(2.53-3.89)and depleted isotopic compositions,suggest derivation from asthenospheric mantle modified by slab-derived fluids.The diorites,distinguished by low SiO_(2)(49.5-50.8),high Mg^(#)(66.7-68.5)and an EM2-type enriched mantle isotopic signature,point to a lithospheric mantle source modified by subducted sediment melts.The coexistence of monzonites and diorites suggests a transition in magma source from lithospheric to asthenospheric mantle,implying that lithospheric thinning may have commenced around 130 Ma.The destruction of the NCC was likely driven by localized,small-scale drip-style detachment processes,rather than wholesale lithospheric removal. 展开更多
关键词 lithospheric thinning magmatic rock mantle source North China Craton
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Pore-scale investigation of forced imbibition in porous rocks through interface curvature and pore topology analysis 被引量:1
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作者 Jianchao Cai Xiangjie Qin +2 位作者 Han Wang Yuxuan Xia Shuangmei Zou 《Journal of Rock Mechanics and Geotechnical Engineering》 2025年第1期245-257,共13页
Forced imbibition,the invasion of a wetting fluid into porous rocks,plays an important role in the effective exploitation of hydrocarbon resources and the geological sequestration of carbon dioxide.However,the interfa... Forced imbibition,the invasion of a wetting fluid into porous rocks,plays an important role in the effective exploitation of hydrocarbon resources and the geological sequestration of carbon dioxide.However,the interface dynamics influenced by complex topology commonly leads to non-wetting fluid trapping.Particularly,the underlying mechanisms under viscously unfavorable conditions remain unclear.This study employs a direct numerical simulation method to simulate forced imbibition through the reconstructed digital rocks of sandstone.The interface dynamics and fluid–fluid interactions are investigated through transient simulations,while the pore topology metrics are introduced to analyze the impact on steady-state residual fluid distribution obtained by a pseudo-transient scheme.The results show that the cooperative pore-filling process promoted by corner flow is dominant at low capillary numbers.This leads to unstable inlet pressure,mass flow,and interface curvature,which correspond to complicated interface dynamics and higher residual fluid saturation.During forced imbibition,the interface curvature gradually increases,with the pore-filling mechanisms involving the cooperation of main terminal meniscus movement and arc menisci filling.Complex topology with small diameter pores may result in the destabilization of interface curvature.The residual fluid saturation is negatively correlated with porosity and pore throat size,and positively correlated with tortuosity and aspect ratio.A large mean coordination number characterizing global connectivity promotes imbibition.However,high connectivity characterized by the standardized Euler number corresponding to small pores is associated with a high probability of non-wetting fluid trapping. 展开更多
关键词 Forced imbibition Porous rocks Interface dynamics Pore topology Residual fluid distribution
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Experimental study on failure precursory characteristics and moisture content effect of pre-cracked rocks under graded cyclic loading and unloading 被引量:1
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作者 Wei Zhang Dongxiao Zhang +1 位作者 Weiyao Guo Baoliang Zhang 《International Journal of Mining Science and Technology》 2025年第2期249-264,共16页
It is important to analyze the damage evolution process of surrounding rock under different water content for the stability of engineering rock mass.Based on digital speckle correlation(DSCM),acoustic emission(AE)and ... It is important to analyze the damage evolution process of surrounding rock under different water content for the stability of engineering rock mass.Based on digital speckle correlation(DSCM),acoustic emission(AE)and electromagnetic radiation(EMR),uniaxial hierarchical cyclic loading and unloading tests were carried out on sandstones with different fracture numbers under dry,natural and saturated water content,to explore the fracture propagation,failure precursor characteristics and damage response mechanism under the influence of water content effect.The results show that with the increase of water content,the peak stress and crack initiation stress decrease gradually,and the decreases are 15.28%-21.11%and 17.64%-23.04%,respectively.The peak strain and crack initiation strain increase gradually,and the increases are 19.85%-44.53%and 19.15%-41.94%,respectively.The precracked rock with different water content is mainly characterized by tensile failure at different loading stages.However,with the increase of water content,the proportion of shear cracks gradually increases,while acoustic emission events gradually decrease,the dissipative energy and energy storage limits of the rock under peak load gradually decrease,and the charge signal increases significantly,which is because the lubrication effect of water reduces the friction coefficient between crack surfaces. 展开更多
关键词 Damage mechanisms Pre-cracked rocks Crack propagation Water-rock interaction Graded cyclic loading and unloading
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Dynamic micro-macro fatigue fracture under cyclic direct tensile impacts in brittle rocks 被引量:1
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作者 LI Xiaozhao YAN Huaiwei +1 位作者 LUO Qiulin QI Chengzhi 《Journal of Mountain Science》 2025年第5期1848-1858,共11页
The fatigue fracture under cyclic dynamic direct tensions of brittle rock is an important mechanical characteristic index for the evaluation of geological disasters and underground engineering safety.However,most stud... The fatigue fracture under cyclic dynamic direct tensions of brittle rock is an important mechanical characteristic index for the evaluation of geological disasters and underground engineering safety.However,most studies focus on macroscopic fracture mechanical properties,and the mechanism linking the macroscopic fracture with the microcrack growth during the cyclic dynamic direct tensile loading of brittle rocks is rarely studied.In this paper,a micro-macro fracture model explaining the stress-strain constitutive relationship is established at the last impact failure after being subjected to multiple cyclic direct tensile impacts of brittle rocks.This model is based on the wing crack extension model under direct tensile loading,the quasi-static and dynamic fracture toughness relationship,the suggested crack rate and strain rate relationship,the relationship of damage and dynamic tensile fatigue life N,the relationship of dynamic fracture toughness and dynamic tensile fatigue life N.The variations of dynamic mechanical properties of rocks with dynamic tensile fatigue life for different initial crack sizes and angles within the rocks are further discussed.The compressive strength,elastic modulus,crack initiation stress,limit crack extension length and crack extension rate descend and the failure strain ascends with an increment of dynamic tensile fatigue life in rocks.This study's results provide help for the safety and stability of the underground surrounding rocks under blasting working or seismic disasters. 展开更多
关键词 Brittle rock Micro-macro fracture Cyclic dynamic direct tensile impact Fatigue life Constitutive relationship
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Wellbore breakouts in heavily fractured rocks:A coupled discrete fracture network-distinct element method analysis 被引量:1
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作者 Yongcun Feng Yaoran Wei +4 位作者 Zhenlai Tan Tianyu Yang Xiaorong Li Jincai Zhang Jingen Deng 《Journal of Rock Mechanics and Geotechnical Engineering》 2025年第3期1685-1699,共15页
Wellbore breakout is one of the critical issues in drilling due to the fact that the related problems result in additional costs and impact the drilling scheme severely.However,the majority of such wellbore breakout a... Wellbore breakout is one of the critical issues in drilling due to the fact that the related problems result in additional costs and impact the drilling scheme severely.However,the majority of such wellbore breakout analyses were based on continuum mechanics.In addition to failure in intact rocks,wellbore breakouts can also be initiated along natural discontinuities,e.g.weak planes and fractures.Furthermore,the conventional models in wellbore breakouts with uniform distribution fractures could not reflect the real drilling situation.This paper presents a fully coupled hydro-mechanical model of the SB-X well in the Tarim Basin,China for evaluating wellbore breakouts in heavily fractured rocks under anisotropic stress states using the distinct element method(DEM)and the discrete fracture network(DFN).The developed model was validated against caliper log measurement,and its stability study was carried out by stress and displacement analyses.A parametric study was performed to investigate the effects of the characteristics of fracture distribution(orientation and length)on borehole stability by sensitivity studies.Simulation results demonstrate that the increase of the standard deviation of orientation when the fracture direction aligns parallel or perpendicular to the principal stress direction aggravates borehole instability.Moreover,an elevation in the average fracture length causes the borehole failure to change from the direction of the minimum in-situ horizontal principal stress(i.e.the direction of wellbore breakouts)towards alternative directions,ultimately leading to the whole wellbore failure.These findings provide theoretical insights for predicting wellbore breakouts in heavily fractured rocks. 展开更多
关键词 Wellbore breakout Discrete fracture network(DFN) Distinct element method(DEM) Heavily fractured rocks
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基于RhoA/ROCKⅡ通路探讨水蛭改善脑缺血/再灌注小鼠脑损伤的机制
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作者 赵磊 曹玉爽 +4 位作者 郭莉琛 柴丽娟 王少峡 袁庆 胡利民 《中国药理学通报》 北大核心 2026年第1期100-106,共7页
目的探究水蛭提取物(leech)调控Rho激酶(Rhoassociated coiled-coil-forming kinase,ROCK)通路保护大脑中动脉闭塞/再灌注(middle cerebral artery occlusion/reperfu-sion,MCAO/R)小鼠血脑屏障及其作用机制。方法采用大脑中动脉线栓法... 目的探究水蛭提取物(leech)调控Rho激酶(Rhoassociated coiled-coil-forming kinase,ROCK)通路保护大脑中动脉闭塞/再灌注(middle cerebral artery occlusion/reperfu-sion,MCAO/R)小鼠血脑屏障及其作用机制。方法采用大脑中动脉线栓法建立MCAO/R模型后,将SPF级C57BL/6(C57BL/6JNifdc)雄性小鼠,分为假手术(Sham)组、MCAO/R组、阿司匹林组(aspirin,13 mg·kg^(-1))、水蛭提取液组(leech,0.8、1.6、2.4 mL·kg^(-1))共6组。TTC染色观察脑梗死体积,mNSS评分评价神经缺损情况;HE染色及Nissl染色观察各组小鼠脑缺血半暗带病理改变;免疫荧光检测Laminin,PDGFRβ/Biotinylated LEL免疫荧光双染检测脑缺血半暗带周细胞与脑微血管内皮细胞解离情况;Western blot检测RhoA、ROCKⅡ蛋白,紧密连接相关蛋白ZO-1、Occludin、Clau-din-5,基底膜(BM)相关蛋白层粘连蛋白(LN)、纤维连接蛋白(FN)及金属基质蛋白酶MMP-2、MMP-9蛋白,以及p-MLC/MLC蛋白表达情况。结果Leech明显改善小鼠神经缺损,减轻脑梗死体积(P<0.05,P<0.01);Western blot结果显示,leech可上调ZO-1、Occludin、Claudin-5、Laminin、Fibronectin蛋白表达,降低p-MLC/MLC、RhoA、ROCKⅡ、MMP-2、MMP-9蛋白表达(P<0.05,P<0.01);免疫荧光结果显示,leech可明显提高Laminin及PDGFRβ/Biotinylated LEL免疫荧光双染的表达。结论Leech可以改善MCAO/R小鼠脑缺血半暗带BBB损伤,其机制可能是通过调节RhoA/ROCKⅡ信号通路有关。 展开更多
关键词 水蛭 脑缺血/再灌注损伤 RhoA/rockⅡ信号通路 血脑屏障 紧密连接 基质金属蛋白酶
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FOXK1通过上调ROCK1表达促进食管鳞状细胞癌的恶性生物学行为
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作者 武俊红 杨霞 +4 位作者 许环琛 王歆皓 胡照坤 路军涛 郭炜 《临床与实验病理学杂志》 北大核心 2026年第1期29-37,共9页
目的探讨FOXK1在食管鳞状细胞癌(esophageal squamous cell carcinoma,ESCC)中的表达、功能及其潜在的分子调控机制。方法常规培养ESCC细胞系KYSE-150、KYSE-170和TE-1;并使用转染试剂将核酸和质粒转染至各组细胞。结合数据库分析和qRT-... 目的探讨FOXK1在食管鳞状细胞癌(esophageal squamous cell carcinoma,ESCC)中的表达、功能及其潜在的分子调控机制。方法常规培养ESCC细胞系KYSE-150、KYSE-170和TE-1;并使用转染试剂将核酸和质粒转染至各组细胞。结合数据库分析和qRT-PCR检测FOXK1在ESCC组织和细胞中的表达;开展生物信息学分析预测下游靶基因,并以ROCK1为候选基因,采用qRT-PCR检测其表达,双荧光素酶报告实验验证FOXK1对ROCK1启动子的转录调控作用。通过平板克隆实验、划痕愈合实验及Transwell小室实验检测各组细胞的克隆形成、迁移及侵袭能力。应用qRT-PCR和Western blot法检测各组细胞中上皮-间质转化(epithelialmesenchymal transition,EMT)关键分子的表达;免疫荧光实验检测F-actin的荧光强度。结果FOXK1在ESCC组织和细胞中呈高表达,其中KYSE-150、KYSE-170和TE-1细胞的表达量分别约为正常食管上皮细胞的40.0倍、17.9倍和24.8倍(P<0.05)。ROCK1为FOXK1的潜在下游靶基因,两者表达水平呈正相关(P<0.05),且ROCK1在ESCC细胞系中亦高表达。过表达及敲低FOXK1会相应上调或下调ROCK1的表达,并证实FOXK1可结合ROCK1启动子发挥转录调控作用。功能方面,过表达FOXK1促进ESCC细胞增殖、迁移和侵袭,敲低ROCK1抑制上述表型,两者同时作用可部分逆转由FOXK1过表达所引起的促肿瘤效应。机制层面,敲低ROCK1使EMT进程关键分子CDH2、vimentin和ZEB1的mRNA及蛋白水平均下降;过表达FOXK1增强F-actin的聚合,敲低ROCK1削弱F-actin的聚合,两者同时作用可部分逆转FOXK1对F-actin的促聚合效应。结论FOXK1通过上调ROCK1的表达促进ESCC细胞的迁移和侵袭,提示FOXK1可能作为ESCC的潜在诊断和治疗靶点。 展开更多
关键词 食管肿瘤 鳞状细胞癌 FOXK1 rock1 上皮-间质转化 细胞骨架
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Impact rock-breaking mechanisms and energy transfer laws of conical tooth bits in hot dry rocks
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作者 LIU Qingyou HUANG Tao 《Petroleum Exploration and Development》 2025年第4期1053-1063,共11页
Based on the finite-discrete element method,a three-dimensional numerical model for axial impact rock breaking was established and validated.A computational method for energy conversion during impact rock breaking was... Based on the finite-discrete element method,a three-dimensional numerical model for axial impact rock breaking was established and validated.A computational method for energy conversion during impact rock breaking was proposed,and the effects of conical tooth forward rake angle,rock temperature,and impact velocity on rock breaking characteristics and energy transfer laws were analyzed.The results show that during single impact rock breaking with conical tooth bits,merely 7.52%to 12.51%of the energy is utilized for rock breaking,while a significant 57.26%to 78.10%is dissipated as frictional loss.An insufficient forward rake angle increases tooth penetration depth and frictional loss,whereas an excessive forward rake angle reduces penetration capability,causing bit rebound and greater energy absorption by the drill rod.Thus,an optimal forward rake angle exists.Regarding environmental factors,high temperatures significantly enhance impact-induced rock breaking.Thermal damage from high temperatures reduces rock strength and inhibits its energy absorption.Finally,higher impact velocities intensify rock damage,yet excessively high velocities increase frictional loss and reduce the proportion of energy absorbed by the rock,thereby failing to substantially improve rock breaking efficiency.An optimal impact velocity exists. 展开更多
关键词 hot dry rock finite-discrete element method conical tooth bit forward rake angle impact velocity rock temperature energy transfer rock breaking mechanism
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Stress-sensitive porosity and permeability in carbonate rocks for underground hydrogen storage:A digital rock simulation study
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作者 Ziyi Pu Ye Tian +5 位作者 Jing Fu Yi Yang Ali Satea Zunrong Xiao Yulong Zhao Liehui Zhang 《International Journal of Coal Science & Technology》 2025年第4期90-105,共16页
Hydrogen,a genuinely clean energy,is a promising alternative to fossil fuels.Inspired by underground gas storage of methane,establishing underground hydrogen storage(UHS)in depleted oil and gas reservoirs has emerged ... Hydrogen,a genuinely clean energy,is a promising alternative to fossil fuels.Inspired by underground gas storage of methane,establishing underground hydrogen storage(UHS)in depleted oil and gas reservoirs has emerged as a significant research focus.Carbonate reservoirs,where widely-presented fractures can facilitate the high-speed injection and production of gases,are hence ideal candidates for building underground hydrogen storage facilities.During the cyclic injection and extraction processes of UHS,the formation is subjected to stress disturbances,leading to stress sensitivity.Understanding the stress sensitivity patterns of carbonate rocks is crucial for optimizing injection and production strategies.This study reconstructed three-dimensional digital models of fractured carbonate rocks from the L gas field using micro-CT scanning technology.Utilizing the finite element method,we investigated the microscopic permeability characteristics of carbonate rocks and analyzed the impact of stress loading direction and confining stress on stress sensitivity.The findings reveal that the stress loading direction significantly influences the stress sensitivity of fractured carbonate rocks.When a stress of 60 MPa is applied perpendicular to the fracture direction,the permeability reduction ratio can reach 17.32%.In contrast,when the same stress is applied parallel to the fracture direction,the permeability reduction ratio is only 4.82%.Furthermore,a simulation of UHS with cyclic injection and production of H2 in the target block was conducted.When both permeability and porosity stress sensitivity were considered,the working gas volume for UHS decreased by only 3.4%,demonstrating that fractured carbonate reservoirs are feasible candidates for constructing underground hydrogen storage. 展开更多
关键词 Underground hydrogen storage Digital rock Stress sensitivity CT scan Carbonate rock Simulation
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