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濒危植物柳州异裂菊和凹脉异裂菊扦插技术研究
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作者 包素青 邓丽丽 +1 位作者 韦霄 史艳财 《安徽农业科学》 CAS 2024年第21期30-37,共8页
[目的]筛选珍稀濒危植物柳州异裂菊(Heteroplexis incana)和凹脉异裂菊(Heteroplexis impressinervia)扦插繁殖最优组合,为其种质保育及开发奠定基础。[方法]选择健康的柳州异裂菊和凹脉异裂菊枝条进行扦插,采用正交试验设计,探究插穗... [目的]筛选珍稀濒危植物柳州异裂菊(Heteroplexis incana)和凹脉异裂菊(Heteroplexis impressinervia)扦插繁殖最优组合,为其种质保育及开发奠定基础。[方法]选择健康的柳州异裂菊和凹脉异裂菊枝条进行扦插,采用正交试验设计,探究插穗粗度、基质类型、植物生长调节剂种类和浓度4个因素对柳州异裂菊和凹脉异裂菊扦插苗生长性状的影响,并筛选出最优组合。[结果]柳州异裂菊9个组合的成活率差异较大,组合③成活率最高,为40%;9个组合的根长和根粗均不存在显著差异(P>0.05),而9个组合根数存在显著差异(P<0.05),组合③有利于根生长。凹脉异裂菊组合①的成活率最高,达20%,凹脉异裂菊的枝数、枝高、枝粗、叶片数、叶长9个组合间均不存在显著差异(P>0.05),而叶宽存在显著差异(P<0.05)。[结论]粗度为6.0~10.0 mm的穗条使用150 mg/L NAA浸泡后扦插于肥土基质中利于柳州异裂菊扦插成活及苗木生长,而同样粗度的凹脉异裂菊穗条使用50 mg/L SGJ浸泡后扦插于黄土基质中扦插效果较佳。 展开更多
关键词 柳州异 脉异 正交试验 扦插 成活率 叶绿素含量
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钢丝绳断裂事故及其预防措施
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作者 钟永祺 《港口科技动态》 1993年第8期13-17,共5页
关键词 钢丝绳 凹裂 起重机械
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凹调的种类——兼论北京话上声的音节学性质 被引量:31
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作者 朱晓农 章婷 衣莉 《中国语文》 CSSCI 北大核心 2012年第5期420-436,479-480,共17页
本文在分域四度制的基础上建立凹调的类型学。凹调有七种区别性的调型。四个在中域:低凹调/323/、后凹调/523/、前凹调/324/、两折调/3232/。三个在低域:嘎裂低凹调/202/、嘎裂高凹调/404/、弛声凹调/213/。五个非嘎裂凹调各有僵声变体... 本文在分域四度制的基础上建立凹调的类型学。凹调有七种区别性的调型。四个在中域:低凹调/323/、后凹调/523/、前凹调/324/、两折调/3232/。三个在低域:嘎裂低凹调/202/、嘎裂高凹调/404/、弛声凹调/213/。五个非嘎裂凹调各有僵声变体,嘎裂低凹调有个张声嘎裂变体。这七个凹调可以用四对区别特征来刻画:[±RgM,contourisity,double circumflex,high]。本文还讨论了几个重要的理论问题:"纯低调"概念的确立,北京话上声的"本质"或音节学属性,调型与调位的不同,凹调的演化途径等。 展开更多
关键词 声调 类型学 调型 两折调 弛声
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Cenozoic structural deformation and expression of the “Tan-Lu Fault Zone” in the West Sag of Liaohe Depression, Bohaiwan basin province, China 被引量:13
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作者 QI JiaFu LI XiaoGuang +1 位作者 YU FuSheng YU TianCai 《Science China Earth Sciences》 SCIE EI CAS 2013年第10期1707-1721,共15页
Based on the interpretation of 3D seismic data and structural mapping we analyzed the geometry and kinematics of the fault system and validated the expression of the"Tan-Lu Fracture Zone"in the West Sag of L... Based on the interpretation of 3D seismic data and structural mapping we analyzed the geometry and kinematics of the fault system and validated the expression of the"Tan-Lu Fracture Zone"in the West Sag of Liaohe Depression,Bohaiwan basin province.The Cenozoic structural deformation within the West Sag of Liaohe Depression can be divided into extensional structure system and dextral structure system.The extensional system is constituted by numerous NNE-NE trending Paleogene normal faults,where the Taian-Dawa fault(F1)is the master boundary fault(MBF)dominating the deposition during Paleogene so that the sag shows a complex half-graben with"boundary fault in the east and overlap in the west".The dextral system is constituted by 2–3 dextral basement faults in NNE-NE trending(F2,F3,F4)and associated structure,and the time of structural action started in Oligocene and continued to Quarternary so that some associated secondary faults of the dextral system cut off the Neogene and Quaternary.Under the influence of the position and attitude of NNE-NE trending basement strike-slip faults,the central north part and the south part of the West Sag show obviously different structural features.The former appears to be a complex"graben"structure limited by the reversed strike-slip fault in the west and bounded by the inverted normal fault in the east,the latter remains the complex half-graben structure with"boundary fault in the east and overlap in the west",and the graben was mildly reconstructed by one or two normal strike-slip faults.The dextral system within the West Sag is the element of the west branch fault of the Tan-Lu Fracture Zone,which is a deep fracture zone extending along the east of the Liaodongwan Gulf.The deep fracture zone branches off into two separate faults within the Liaohe Depression.The east branch goes through from northern part of the Liaodongwan Gulf to the East Sag of Liaohe Depression and links with the Denghua-Mishan Fault near Shenyang,and the west branch passes from northern part of the Liaodongwan Gulf to the West Sag and Damintun Sag of Liaohe Depression and links with the Yilan-Yitong Fault.The principal displacement zone of the west branch of the Tan-Lu Fracture Zone cuts off the master extensional fault(F1)within the West Sag of Liaohe Depression and induces many cover faults in EW trending within the Neogene and Quaternary. 展开更多
关键词 extensional structure strike-slip structure CENOZOIC Tan-Lu Fracture Zone West Sag of Liaohe Depression
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Late-stage rapid accumulation of the PL19-3 giant oilfield in an active fault zone during Neotectonism in the Bozhong depression,Bohai Bay 被引量:8
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作者 ZOU HuaYao GONG ZaiSheng +1 位作者 TENG ChangYu ZHUANG XinBin 《Science China Earth Sciences》 SCIE EI CAS 2011年第3期388-398,共11页
Late-stage is defined here as the period when Neotectonism occurred since 5.1 Ma. Most petroliferous basins in China lie in the areas where Neotectonism occurred intensively. In recent years, Chinese petroleum geologi... Late-stage is defined here as the period when Neotectonism occurred since 5.1 Ma. Most petroliferous basins in China lie in the areas where Neotectonism occurred intensively. In recent years, Chinese petroleum geologists have paid much attention to late-stage petroleum accumulation. The PL19-3 giant oilfield is situated where faulting activities occurred violently during Neotectonism. To understand the mechanism of lat-stage rapid accumulation, we discussed the most important aspects responsible for the formation of the giant oilfield, including oil generation, active oil-source rock occurrence, fault activity and fault conduits, late-stage rapid oil injection as well as the distinguishing indicators. This study shows that: (1) sufficient oil was supplied to the PL19-3 field since 5.1 Ma because the PL19-3 structure was surrounded by four sags in which three intervals of high-quality source rocks remained active during Neotectonism; (2) densely distributed faults and high porosity/permeability sandstone carrier beds comprised the effective conduit system for oil migration and injection; (3) oil migrated along the faults and charged the PL19-3 structure rapidly by means of seismic pumping which was triggered by frequent earthquakes during Neotetonism. It is documented that elevated reservoir temperature, abnormal geothermal gradients and abnormally high homogenization temperatures of the fluid inclusions are the indicators for late-stage rapid oil accumulation. 展开更多
关键词 Neotectonism active oil-source rock (AOSR) migration conduit late-stage rapid accumulation PL19-3 oilfield Bozhong depression
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Numerical modeling of the anomalous post-rift subsidence in the Baiyun Sag,Pearl River Mouth Basin 被引量:14
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作者 LIAO Jie ZHOU Di +2 位作者 ZHAO ZhongXian ZHANG YunFan XU ZiYing 《Science China Earth Sciences》 SCIE EI CAS 2011年第8期1156-1167,共12页
The Baiyun Sag is the deepest sag in the Pearl River Mouth Basin in northern continental margin of South China Sea,with the maximum sediment thickness over 12.5 km above the basement including >6.5 km sediments abo... The Baiyun Sag is the deepest sag in the Pearl River Mouth Basin in northern continental margin of South China Sea,with the maximum sediment thickness over 12.5 km above the basement including >6.5 km sediments above the 30 Ma breakup unconformity.According to the theoretical models for the rifted basins,the post-rift subsidence is driven solely by the thermal contraction and can be calculated as the function of the lithospheric stretching factor.A method combining the forward modeling and reverse backstripping was designed to estimate lithospheric stretching factor.Using the 2D forward modeling based on the flexural cantilever model,we simulated the multi-rifting process of the Baiyun Sag with constrain of the backstripped profiles.By doing this the lithospheric stretching factor was obtained,and then the theoretical post-rift subsidence was calculated.The calculated theoretical subsidence was much smaller than the observed subsidence given by backstripping.Along the 1530 line in the Baiyun Sag,the anomalous post-rift subsidence is over 2 km in the sag center,and varies slightly to the north and south edges of the sag.This suggests that the anomalous post-rift subsidence continues beyond the sag both in the continental shelf to the north and in the continental slope to the south.The sensitivity tests in the forward modeling process indicate that only the use of low-angle faults (≤13°) can we simulate the shape of the backstripped profile. 展开更多
关键词 anomalous post-rift subsidence 2D backstripping 2D forward modeling Baiyun Sag Pearl River Mouth Basin
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