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991.
Cheng-Bang An Shi-Chen Tao Jiaju Zhao Fa-Hu Chen Yanbin Lv Weimiao Dong Hu Li Yongtao Zhao Ming Jin Zongli Wang 《Journal of Paleolimnology》2013,49(2):145-154
Surface and fossil pollen samples were collected to reconstruct the vegetation and environment since 30.7 cal ka BP in the Lake Balikun Basin, northwest China. This record demonstrates that the region was occupied by four vegetation communities during the interval 30.7–9.0 cal ka BP, including desert steppe (30.7–25.1 cal ka BP), Amaranthaceae-Asteraceae desert (25.1–17.7 cal ka BP), Amaranthaceae-Artemisia-Asteraceae desert (17.7–12.8 cal ka BP) and Amaranthaceae desert (12.8–9.0 cal ka BP), corresponding to relatively humid, the coldest and driest, cold and dry, and colder and drier conditions, respectively. The reconstructions of vegetation and environmental changes around Lake Balikun do not support the interpretation of an extremely humid LGM in Central Asia, challenging the cold-moist (glacial), warm-dry (interglacial) pattern of late Quaternary environmental change in Central Asia. The Last Glacial Maximum was cold and dry, and similarly harsh conditions continued into the early Holocene. 相似文献
992.
针对全球六边形离散格网的三维显示化方法开展研究,设计了一种六边形格网的空间层次结构(hexagonalquaternary balanced structure,HQBS),采用四位码元对格网单元进行编码,定义并实现了格网向量的基本运算,利用这些运算可以方便地实现格网单元的空间索引。在此基础上还研究了全球离散格网的动态生成与显示算法、可视化区域裁剪等相关内容。试验表明:全球格网动态生成的效率110~370单元/ms之间,加载空间数据后,格网数据和空间数据逐层加载的时间在300 ms左右,能够保证加载空间数据后的显示刷新率在20帧/s左右。 相似文献
993.
994.
When SINS (strap-down inertial navigation system) is combined with GPS, the observability of the course angle is weak. Although the course angle error is improved to some extent through Kalman filtering, the course angle still assumes a divergent trend. This trend is aggravated further when using low-cost and low-accuracy SINS. In order to restrain this trend, a method that uses AHRS to substitute for SINS course angle information is put forward aimed at the hardware component characteristic of the low-cost and low-accuracy SINS including AHRS (attitude and heading reference system) and IMU (inertial measurement unit). Real static and dynamic experiments show that the method can restrain the divergent trend of the navigation system angle effectively, and the positioning accuracy is high. 相似文献
995.
Xiaodong Zhang Ho Jin Kim Clinton Streeter David A. Claypool Ramesh Sivanpillai Santhosh Seelan 《国际地球制图》2013,28(7):537-551
Precision agriculture often relies on high-resolution imagery to delineate the variability within a field. Airborne Environmental Research Observational Camera (AEROCam) was designed to meet the needs of agriculture producers, ranchers, and researchers, who require high-resolution imagery in a near real-time environment for rapid decision support. AEROCam was developed and operated through a unique collaboration between several departments at the University of North Dakota, including the Upper Midwest Aerospace Consortium (UMAC), the School of Engineering and Mines, and flight operations at the John D. Odegard School of Aerospace Sciences. AEROCam consists of a Redlake MS4100 area-scan multi-spectral digital camera that features a 1920 × 1080 CCD array (7.4-μm detector) with 8-bit quantization. When operated at ~2 km above ground level, multispectral images with four bands in the visible and near infrared have a ground sample distance of 1 m with a horizontal extent of just over 1.6 km. Depending on the applications, flying at different altitudes can adjust the spatial resolution from 0.25 to 2 m. Rigorous spectral and radiometric calibrations allow AEROCam to be used in a variety of applications, qualitative and quantitative. Equipped with an inertial measurement unit (IMU) system, the images acquired can be geo-referenced automatically and delivered to end users near real time through our Digital Northern Great Plains system (DNGP). The images are also available to zone mapping application for precision farming (ZoneMAP), an online decision support tool for creating management zones from remote sensing imagery and data from other sources. Operational since 2004, AEROCam has flown over 250 sorties and delivered over 150,000 images to the users in the Northern Great Plains region, resulting in numerous applications in precision agriculture and resource management. 相似文献
996.
黑河流域生态—水文过程综合遥感观测联合试验总体设计 总被引:17,自引:4,他引:13
介绍了"黑河流域生态—水文过程综合遥感观测联合试验"的背景、科学目标、试验组成和试验方案。试验的总体目标是显著提升对流域生态和水文过程的观测能力,建立国际领先的流域观测系统,提高遥感在流域生态—水文集成研究和水资源管理中的应用能力。由基础试验、专题试验、应用试验、产品与方法研究和信息系统组成。其中,①基础试验:搭载微波辐射计、成像光谱仪、热像仪、激光雷达等航空遥感设备,开展一系列关键生态和水文参量的观测;发展遥感正向模型及反演和估算方法。形成覆盖全流域的水文气象综合观测网,为流域生态—水文模型研究提供更有代表性的模型参数、驱动数据及更高精度的验证数据。构建无线传感器网络,度量生态水文模型所需的若干关键的驱动、参数和模型状态的空间异质性。开展航空遥感定标和地基遥感试验。依托传感器网络,并辅之以地面同步和加密观测,开展遥感产品真实性检验。②专题试验:开展"非均匀下垫面多尺度地表蒸散发观测试验",采用密集的涡动相关仪、大孔径闪烁仪与自动气象站的观测矩阵,为揭示地表蒸散发的空间异质性,实现非均匀下垫面地表蒸散发的尺度扩展,发展和验证蒸散发模型提供基础数据。③应用试验:在流域上、中、下游分别开展针对积雪和冻土水文、灌溉水平衡和作物生长、生态耗水的综合观测试验,将观测数据和遥感产品用于上游分布式水文模型、中游地表水—地下水—农作物生长耦合模型、下游生态耗水模型,通过实证研究提升遥感在流域生态—水文集成研究和水资源管理中的应用能力。加强试验将在2012年5月起按中游、上游、下游的顺序展开,全流域持续观测期为2013—2015年。在各类试验的支持下,开展全流域生态—水文关键参量遥感产品生产,发展尺度转换方法,建立多源遥感数据同化系统。 相似文献
997.
青藏高原东北部共和盆地风成沉积地球化学特征及其揭示的气候变化 总被引:4,自引:0,他引:4
通过对共和盆地东部风成沉积的地球化学分析,并结合14C和OSL年代,重建了区域末次盛冰期以来气候变化过程。21 ka BP之前气候寒冷偏湿,21~15.82 ka BP为末次盛冰期(LastGlacial Maximum,LGM),气候极为寒冷干燥;15.82~9.5 ka BP气候转暖且偏干,其中14.5~13.6ka BP和11.9~9.5 ka BP气候明显冷干,分别为老仙女木时期(Oldest Dryas,OD)和新仙女木时期(Younger Dryas,YD),而15.82~14.5 ka BP和13.6~11.9 ka BP(BФlling-AllerФd暖期,B/A)相对温暖;9.5~7.2 ka BP暖湿程度明显提高,7.2~5.1 ka BP气候波动频繁,相对冷干和相对暖湿多次更替。5.1~2.7 ka BP暖湿程度基本稳定,之后气候趋于寒冷但湿度明显较大。这些气候变化过程与青藏高原大量的古气候信息记录具有良好的一致性,表明共和盆地气候变化与青藏高原气候变化的高度一致性。 相似文献
998.
利用NCEP/NCAR再分析资料及中国实测雨量资料,分析发现黄河流域夏季整层降水转化率普遍较低,因考虑到整层中应有某一气压层具有最有利的水汽输送、抬升凝结和垂直运动条件,由此将该气压层定义为有效降水转化率层(简称有效层),降水与有效层可降水量之比称为有效降水转化率。通过分析黄河流域夏季各分区垂直速度与水汽等因子,确定上、中、下游夏季有效层分别为地面~500hPa、600~400hPa、850~600hPa。对比分析表明:夏季各区平均水汽收支与降水转化率,各自在整层和有效层上的逐年演变趋势均一致,峰谷相对应,且49年间降水转化率在有效层上的数值均大于整层的。夏季有效降水转化率在青藏高原上空及中游东部最高,高原东北侧最低,旱、涝年与多年平均状况下的分布形式虽然一致,但涝年的数值明显大于旱年。 相似文献
999.
稀土作为一种重要的不可再生资源,在各行业的应用正逐渐被人们所重视。色谱技术以其快速、高效、自动化程度高等优势已成为稀土元素分离分析的主要方法。文章总结了纸色谱法、薄层色谱法、气相色谱法、超临界色谱法、高效液相色谱法、毛细管电泳法等色谱法在稀土元素分离分析中的应用及研究概况。其中,纸色谱法因展开时间过长,分离效果不理想已很少应用;薄层色谱法因其操作方便、设备简单、显色容易等优点,可用于稀土元素分离分析的初步检测;气相色谱法由于对样品热稳定性的限制,以及因常用的β-二酮类稀土螯合物配体存在分辨率差和吸附等问题也很少应用;超临界色谱法在分离稀土元素络合物中分离效果较好,但是仪器难以普及,限制了技术的发展;高效液相色谱法因分离效率高、重复性好、自动化操作等优点已成为目前稀土元素分离分析的主要方法;毛细管电泳法具有高效、样品及试剂用量少、操作模式灵活等优点,在稀土元素分离分析方面更具有广阔的发展空间。 相似文献
1000.
Risk evaluation of China’s natural disaster systems: an approach based on triangular fuzzy numbers and stochastic simulation 总被引:6,自引:6,他引:0
To deal effectively with the evaluation problem of natural disaster risk system affected by many uncertain factors, a multivariate
connection number expression is presented. This expression is based on the index samples and evaluation grade criterions of
natural disaster risk system and is capable of describing the hierarchy property and fuzziness of membership relationship
between index samples and evaluation grade criterions. In this proposed method, the fuzzy evaluation grade criterion problem
is resolved by combining triangular fuzzy numbers with multivariate connection number theory, and triangular fuzzy numbers
are used to express the discrepancy degree coefficients of connection number and evaluation index weights. Accordingly, a
connection number-based evaluation method for the natural disaster system of China (named CN-TFN for short) is established
using triangular fuzzy numbers and stochastic simulation. The application results show that the spatial distribution of natural
disaster risk grades of China has the trend of aggrandizement from west to east of China. The economically developed and densely
populated coastal areas are very likely to have a high level of natural disaster risk grade or above; thus, these areas are
the key regions of the natural disaster risk management of China. The results also show that the CN-TFN is able to reflect
practical conditions of the evaluation problem of natural disaster system and to provide more reliability information as compared
to the existing evaluation methods. This is as a result of its comprehensive usage of various information of subjective and
objective uncertainties in the evaluation process of natural disaster risk system and its expression by confidence intervals.
Due to the simplicity and generalization, the CN-TFM is applicable to comprehensive risk grade evaluation of various natural
disaster systems. 相似文献