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631.
为研究中国西南地区自然资源的动态变化特征,基于中国自然资源综合区划一级分区成果,以西南林耕自然资源大区为研究对象,通过选取符合区域特征的要素指标,确定指标权重,按照区划方案对西南林耕自然资源大区进行二级、三级区划,将其划分为6个自然资源亚区(二级区划)和11个自然资源地区(三级区划),并对区划单元内的自然资源动态变化进行了特征分析.研究区内自然资源以森林、耕地和草原为主,1990—2018年,自然资源变化主要表现为森林、耕地和草原三者间的相互转变,森林和耕地之间的相互转变主要分布于贵州和重庆的地区,森林和草原、耕地和草原之间的相互转变主要分布于云南和陕西的地区.建设用地明显增加,集中分布于各省会城市和直辖市.各类资源相互之间有明显转变,但面积在总体上基本保持动态平衡,表明自然资源的转变在合理范围内,其中四川盆地内的耕地和广西西部的森林受保护较好.各区划内优势资源明显,区划间变化特征彼此相异,可为全国或西南地区的自然资源配置、国土空间规划等自然资源统一管理提供决策支撑. 相似文献
632.
633.
5月和10~11月是孟加拉湾风暴活动的两个"峰值"期, 风暴对西南水汽输送有重要影响, 本文利用2001~2010年10年的JTWC(Joint Typhoon Warning Centre)风暴资料和NCEP(National Centers for Environmental Prediction)/NCAR(National Center for Atmospheric Research)1°×1°再分析资料, 研究风暴"双峰"期对西南水汽输送的贡献, 结果表明:风暴水汽向北输送最强, 其次是向东输送, 其它方向的输送较弱;在风暴中心区域及西南水汽通道, 各层和整层的 通量均大于气候平均值, 风暴的西南水汽输送特征显著;两个"峰值"期风暴的经向水汽输送比纬向几乎大一倍, 5月"峰值"期孟加拉湾风暴在西南方向的实际水汽输送总量约是10~11月的2倍, 孟加拉湾风暴前"峰值"期(5月)对水汽输送的影响大于后"峰值"期(10~11月), 孟加拉湾风暴是5月西南水汽输送的主要系统之一。 相似文献
634.
西南地区短时强降水的气候特征分析 总被引:3,自引:2,他引:3
利用国家级地面气象站逐小时和日降水数据集资料,对西南地区短时强降水的气候特征进行了分析,并对近30年来强短时强降水和强暴雨的变化趋势进行了分析。结果表明:西南地区短时强降水主要集中在4-10月;三个高发区分别位于贵州东南部、四川盆地西南部和云南东南部,年均发生次数约5~6次;强度一般为20~30 mm·h~(-1),其中贵州30 mm·h~(-1)以上的小时降水强度所占比例最高,四川盆地西部边缘地区小时降水最强,超过80 mm·h~(-1),极端小时降水达123.1 mm·h~(-1);短时强降水具有明显的夜发性,02时左右为发生频次的峰值时段。从近30年西南地区超过第90百分位的强短时强降水与强暴雨的长期变化趋势来看,强短时强降水呈现频次增加、强度增强的变化趋势,强暴雨则变化不明显。 相似文献
635.
Timescale of magma chamber processes revealed by U–Pb ages,trace element contents and morphology of zircons from the Ishizuchi caldera,Southwest Japan Arc 下载免费PDF全文
Mami Takehara Kenji Horie Kenichiro Tani Takeyoshi Yoshida Tomokazu Hokada Shoichi Kiyokawa 《Island Arc》2017,26(2)
U–Pb geochronology and trace element chemistry of zircons in a microscale analysis were applied to the Ishizuchi caldera in the Outer Zone of Southwest Japan in order to estimate the timescale of the magma process, in particular, the magma differentiation. This caldera is composed mainly of ring fault complexes, major pyroclastic flow deposits, and felsic intrusion including central plutons. Using SHRIMP‐IIe, our new U–Pb zircon ages obtained from the major pyroclastic flow deposits (Tengudake pyroclastic flow deposits), granitic rocks from central plutons (Soushikei granodiorite and Teppoishigawa quartz monzonite), and rhyolite from the outer ring dike (Tenchuseki rhyolite) and the inner ring dike (Bansyodani rhyolite) are 14.80 ±0.11 Ma, 14.56 ±0.10 Ma, 14.53 ±0.12 Ma, 14.55 ±0.11 Ma and 14.21 ±0.19 Ma, respectively. Based on the U–Pb ages, the Hf contents and the REE patterns of the zircons, three stages are recognized in the evolutionary history of the magma chamber beneath the Ishizuchi caldera: (i) climactic Tengudake pyroclastic flow eruption; (ii) Tenchuseki rhyolite intrusion into the outer ring dike and central pluton intrusion; and (iii) Bansyodani rhyolite intrusion in the inner ring dike. These results indicate a magma evolution history of the Ishizuchi caldera system which took at least ca 600 kyr from the climatic caldera‐forming eruption to the post‐caldera intrusions. Our new geochronological data suggest that the Ishizuchi caldera formed as part of the voluminous and episodic magmatism that occurred in the wide zone along the Miocene forearc basin of Southwest Japan during the inception of the young Philippine Sea Plate subduction. 相似文献
636.
壳幔结构及扩张期后的岩浆活动是研究南海西南海盆形成演化的关键.本文针对NH973-1剖面开展壳幔密度结构重力反演,并依据重力反演的壳幔模型,定量模拟海底扩张期后的壳幔热结构与热演化过程.重力反演表明:西南海盆中央残余扩张脊之下存在一个较深的凹陷带,其下Moho面比两侧略深,呈现扩张期后的热沉降特点.热模拟发现:海盆扩张终止后,壳幔并非均衡一致降温,而是以"地壳增温-地幔降温"方式进入热沉降阶段.海底扩张终结后,地壳继续增温约7 Ma之后才与地幔一同缓慢降温,同步进入后期热沉降.沿NH973-1剖面南、中、北段的地壳增温特点不同,在海盆扩张中心北侧约70 km之下7~9 km深度处,在9.6~4.6 Ma期间温度增幅一直保持在200℃以上,将该处地壳温度抬升至1100℃以上,具备了产生扩张期后岩浆熔融的温度条件.P-T图解分析也支持此期间如果地壳具备局部构造断裂形成的含水条件和减压条件,就可能因部分熔融产生岩浆活动. 相似文献
638.
Analyses of deflected river channels, offset of basement rocks, and fault rock structures reveal that slip sense inversion occurred on major active strike-slip faults in southwest Japan such as the Yamasaki and Mitoke fault zones and the Median Tectonic Line (MTL). Along the Yamasaki and Mitoke fault zones, small-size rivers cutting shallowly mountain slopes and Quaternary terraces have been deflected sinistrally, whereas large-size rivers which deeply incised into the Mio-Pliocene elevated peneplains show no systematically sinistral offset or complicated hairpin-shaped deflection. When the sinistral offsets accumulated on the small-size rivers are restored, the large-size rivers show residual dextral deflections. This dextral offset sense is consistent with that recorded in the pre-Cenozoic basement rocks. S–C fabrics of fault gouge and breccia zone developed in the active fault zones show sinistral shear sense compatible with earthquake focal mechanisms, whereas those of the foliated cataclasite indicate a dextral shear sense. These observations show that the sinistral strike-slip shear fabrics were overprinted on dextral ones which formed during a previous deformation phase. Similar topographic and geologic features are observed along the MTL in the central-eastern part of the Kii Peninsula. Based on these geomorphological and geological data, we infer that the slip sense inversion occurred in the period between the late Tertiary and mid-Quaternary period. This strike-slip inversion might result from the plate rearrangement consequent to the mid-Miocene Japan Sea opening event. This multidisciplinary study gives insight into how active strike-slip fault might evolves with time. 相似文献
639.
Avriel Venis L. Cirineo Akira Imai Ryohei Takahashi Redempta P. Baluda Noel C. Oliveros Victor B. Maglambayan Roy Ronald C. Luis Maria Lourdes M. Faustino Jacky Almadin 《Resource Geology》2021,71(1):1-40
The Southwest prospect is located at the southwestern periphery of the Sto. Tomas II porphyry copper–gold deposit in the Baguio District, northwestern Luzon, Philippines. The Southwest prospect hosts a copper‐gold mineralization related to a complex of porphyry intrusions, breccia facies, and overlapping porphyry‐type veinlets emplaced within the basement Pugo metavolcanics rocks and conglomerates of the Zigzag Formation. The occurrences of porphyry‐type veinlets and potassic alteration hosted in the complex are thought to be indications of the presence of blind porphyry deposits within the Sto. Tomas II vicinity. The complex is composed of at least four broadly mineralogically similar dioritic intrusive rocks that vary in texture and alteration type and intensity. These intrusions were accompanied with at least five breccia facies that were formed by the explosive brecciation, induced by the magmatic–hydrothermal processes and phreatomagmatic activities during the emplacement of the various intrusions. Hydrothermal alteration assemblages consisting of potassic, chlorite–magnetite, propylitic and sericite–chlorite alteration, and contemporaneous veinlet types were developed on the host rocks. Elevated copper and gold grades correspond to (a) chalcopyrite–bornite assemblage in the potassic alteration in the syn‐mineralization early‐mineralization diorite (EMD) and contemporaneous veinlets and (b) chalcopyrite‐rich mineralization associated with the chalcopyrite–magnetite–chlorite–actinolite±sericite veinlets contemporaneous with the chlorite–magnetite alteration. Erratic remarkable concentrations of gold were also present in the late‐mineralization Late Diorite (LD). High XMg of calcic amphiboles (>0.60) in the intrusive rocks indicate that the magmas have been oxidizing since the early stages of crystallization, while a gap in the composition of Al between the rim and the cores of the calcic amphiboles in the EMD and LD indicate decompression at some point during the crystallization of these intrusive rocks. Fluid inclusion microthermometry suggests the trapping of immiscible fluids that formed the potassic alteration, associated ore mineralization, and sheeted quartz veinlets. The corresponding formation conditions of the shallower and deeper quartz veinlets were estimated at pressures of 50 and 30 MPa and temperatures of 554 and 436°C at depths of 1.9 and 1.1 km. Temperature data from the chlorite indicate that the chalcopyrite‐rich mineralization associated with the chlorite–magnetite alteration was formed at a much lower temperature (ca. 290°C) than the potassic alteration. Evidence from the vein offsetting matrix suggests multiple intrusions within the EMD, despite the K‐Ar ages of the potassic alteration in EMD and hornblende in the LD of about the same age at 3.5 ± 0.3 Ma. The K‐Ar age of the potassic alteration was likely to be thermally reset as a result of the overprinting hydrothermal alteration. The constrained K‐Ar ages also indicate earlier formed intrusive rocks in the Southwest prospect, possibly coeval to the earliest “dark diorite” intrusion in the Sto. Tomas II deposit. In addition, the range of δ34S of sulfide minerals from +1.8‰ to +5.1‰ in the Southwest prospect closely overlaps with the rest of the porphyry copper and epithermal deposits in the Sto. Tomas II deposit and its vicinity. This indicates that the sulfides may have formed from a homogeneous source of the porphyry copper deposits and epithermal deposits in the Sto. Tomas II orebody and its vicinity. The evidence presented in this work proves that the porphyry copper‐type veinlets and the adjacent potassic alteration in the Southwest prospect are formed earlier and at a shallower level in contrast with the other porphyry deposits in the Baguio District. 相似文献
640.