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在系统评估青藏高原积雪观测典型气象站历史定位坐标精度基础上,利用站点雪深资料对NOAA IMS 4 km和1 km分辨率雪冰产品在青藏高原的精度和适用性进行了验证和评估,定量分析了IMS 4 km到1 km空间分辨率提高和气象站历史定位与GPS定位坐标之间的差异对青藏高原IMS积雪监测精度的影响。结果表明:青藏高原个别气象站历史坐标与当前GPS接收机定位之间存在较大的差异,如安多气象站经度偏小0.6°,纬度偏大0.08°。IMS 4 km雪冰产品在青藏高原的总精度介于76.4%~83.2%,平均为80.1%,积雪分类精度介于35.8%~60.7%,平均为47.2%,平均误判率为17.1%,平均漏判率为45.5%,总体上呈现地面观测的积雪日数越多、平均雪深越大,其总体监测精度越低,而积雪分类精度越高的特点。IMS分辨率从4 km到1 km总体精度平均提高了2.9%,积雪分类精度平均提高了0.9%,主要是由于个别站点的精度提升较大引起的,对高原多数台站积雪监测精度的改进和提升很小。除个别台站外,目前气象站历史坐标和GPS定位坐标之间的差异,对IMS 4 km积雪监测精度验证结果没有影响。然而,今后随着卫星遥感技术的发展,更高时空分辨率的遥感积雪产品将用于积雪监测和研究,精确的地面观测站坐标信息是对这些遥感数据开展精度验证与实际应用的前提。  相似文献   
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The Mamupu skarn-type Cu-Au polymetallic deposit represents the first discovery of a medium deposit in the southern Yulong porphyry copper belt (YPCB), eastern Tibet. The Cu-Au mineralization mainly occurs as chalcopyrite in breccia, within the plate-like carbonate interlayer, being closely related to chloritization (e.g., chlorite, magnetite and epidote) and skarnization (e.g., diopside, tremolite and garnet). The ore-related quartz syenite porphyry (QSP) and granodiorite porphyry (GP) were emplaced at 40.1 ± 0.2 Ma and 39.9 ± 0.3 Ma, respectively. The QSP of Mamupu is an alkaline-rich intrusion, relatively enriched in LREE, LILE, depleted in HFSE, with no significant negative Eu and Ce anomalies, slightly high (87Sr/86Sr)i, low εNd(t), uniform (206Pb/204Pb)i and εHf(t) values, which indicates that the porphyry magma may be caused by both the mixing of metasomatized EM II enriched mantle and thickened juvenile lower crust. The QSP in the Mamupu deposit shares a similar genesis of petrology to other ore-related porphyries within the YPCB. High oxygen fugacity and water content of the magmas are essential for the formation of porphyry and skarn Cu deposits. The QSP has similar high magmatic oxidation states and water content to the Yulong deposit, which indicates that the Mamupu has a high prospecting potential. Differences in the geological characteristics and scale of mineralization between the Mamupu and other YPCB deposits may be due to the different emplacement depths of ore-related intrusions, as well as differences in the surrounding rocks.  相似文献   
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南支槽影响下西藏高原南部3次暴雪天气特征分析   总被引:2,自引:1,他引:1       下载免费PDF全文
罗布坚参  假拉  德庆  白珍  次旦巴桑 《气象》2019,45(6):862-870
利用NCEP/NCAR再分析资料和常规观测资料,对2013年1-2月西藏高原南部3次暴雪天气的环流形势、动力、水汽条件等进行诊断对比分析。结果表明:3次暴雪天气中高纬度均以经向型环流形势为主,从长波槽脊配置可分为长波槽型和横槽型两大类;西太平洋副热带高压偏西偏强、伊朗高压东北发展对南支槽加深和缓慢东移起到关键作用。南支槽区560 dagpm线在30°N以南,并东移至70°E附近或以东时西藏高原南部开始出现暴雪天气;暴雪区附近涡度场变化反映了南支槽强度特征,中高层强辐散对南支槽发展起到重要作用;水汽主要源于阿拉伯海,孟加拉湾水汽对东部降雪起到补充作用,南支槽前高空西南急流对水汽输送起关键作用,同时喜马拉雅山脉的大地形抬升,有利于上升运动和水汽凝结成云;水汽通量、水汽通量散度等变化及中心的移动方向,对降雪的强度、落区和时段具有较好的预报指示意义。  相似文献   
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