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排序方式: 共有322条查询结果,搜索用时 31 毫秒
161.
利用1982—2000年NOAA-AVHRR数据资料,研究了中国区域地表反照率的空间分布及其随时间的变化规律。结果表明,中国区域年均地表反照率在空间分布上有很大的差异,胡焕庸线以西地区地表反照率明显大于以东地区;年平均地表反照率呈现缓慢下降趋势,但是不同地区的变化趋势有所不同,年均地表反照率显著降低的区域主要集中在华北平原,显著增加的区域主要集中在长白山和大兴安岭北部;不同季节地表反照率存在很大的差异,冬季最大,春、夏季次之,秋季最小,且冬季平均地表反照率波动幅度比较大;不同地表覆盖的地表反照率的年际变化也存在比较显著的差异。 相似文献
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163.
Auromeet Saha Marc Mallet Jean Claude Roger Philippe Dubuisson Jacques Piazzola Serge Despiau 《Atmospheric Research》2008,90(2-4):195-ICNAA07
We present results of direct aerosol radiative forcing over a French Mediterranean coastal zone based on one year of continuous observations of aerosol optical properties during 2005–2006. Monthly-mean aerosol optical depth at 440 nm ranged between 0.1 and 0.34, with high Angstrom coefficient (α > 1.2). The single scattering albedo (at 525 nm) estimated at the surface ranged between 0.7 and 0.8, indicating significant absorption. The presence of aerosols over the Mediterranean zone during summer decreases the shortwave radiation reaching the surface by as much as 26 ± 3.9 W m− 2, and increases the top of the atmosphere reflected radiation by as much as 5.2 ± 1.0 W m− 2. The shortwave atmospheric absorption translates to an atmospheric heating of 2.5 to 4.6 K day− 1. Concerted efforts are needed for investigating the possible impact of the increase in heating rate on the maintenance of heat-waves frequently occurring over this coastal region during summer time. 相似文献
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165.
渤海冬季海冰反照率变化 总被引:1,自引:1,他引:0
渤海海冰对于大尺度气候变化比较敏感,基于CLARA-A1-SAL数据分析了1992~2008年冬季(12、1、2月)渤海海冰区域反照率的时空变化,同时分析了海冰密集度、海冰外延线面积和海水表面温度的变化与海冰反照率的相互关系。渤海海冰区域反照率随时间波动变化且变化趋势不明显,趋势线斜率仅为0.0388%。年际变化在9.93%~14.5%之间,平均值为11.79%。海冰反照率在1999,2000和2005等重冰年的值明显高于其他年份,在1994,1998,2001和2006等轻冰年的值较低。从单个月份反照率来看,12月海冰反照率的增加趋势(趋势线斜率0.0988%)明显高于1月和2月,1月的海冰反照率平均值(12.9%)高于另外两个月份。海冰反照率和海冰密集度呈明显的正相关关系;和海表面温度呈负相关关系(显著性水平90%)。 相似文献
166.
中国第四次北极科学考察期间北极点附近海冰和融池的航空遥感观测 总被引:1,自引:1,他引:0
An aerial photography has been used to provide validation data on sea ice near the North Pole where most polar orbiting satellites cannot cover. This kind of data can also be used as a supplement for missing data and for reducing the uncertainty of data interpolation. The aerial photos are analyzed near the North Pole collected during the Chinese national arctic research expedition in the summer of 2010(CHINARE2010). The result shows that the average fraction of open water increases from the ice camp at approximately 87°N to the North Pole, resulting in the decrease in the sea ice. The average sea ice concentration is only 62.0% for the two flights(16 and 19 August 2010). The average albedo(0.42) estimated from the area ratios among snow-covered ice,melt pond and water is slightly lower than the 0.49 of HOTRAX 2005. The data on 19 August 2010 shows that the albedo decreases from the ice camp at approximately 87°N to the North Pole, primarily due to the decrease in the fraction of snow-covered ice and the increase in fractions of melt-pond and open-water. The ice concentration from the aerial photos and AMSR-E(The Advanced Microwave Scanning Radiometer-Earth Observing System) images at 87.0°–87.5°N exhibits similar spatial patterns, although the AMSR-E concentration is approximately 18.0%(on average) higher than aerial photos. This can be attributed to the 6.25 km resolution of AMSR-E, which cannot separate melt ponds/submerged ice from ice and cannot detect the small leads between floes. Thus, the aerial photos would play an important role in providing high-resolution independent estimates of the ice concentration and the fraction of melt pond cover to validate and/or supplement space-borne remote sensing products near the North Pole. 相似文献
167.
地表反照率是反映地表能量平衡的重要参数。本文通过中国陆地生态系统通量观测研究网络的实测反照率和MODIS的地表反照率产品对MISR的短波反照率数据进行验证和分析:提取了中国通量网中的8个站点的数据和对应的MODIS、MISR的反照率产品用于验证。验证的结果显示,在多数站点,MISR短波反照率能与地面数据相吻合,大部分的反演误差都集中在0.04以内;MISR与MODIS短波反照率的吻合度更高,总体的误差为0.018,均方根误差在0.04左右。总的来说,MISR地表反照率产品具有较高的反演质量。 相似文献
168.
Comparison of Aerosol Single Scattering Albedo Derived from the Ozone Monitoring Instrument with Aerosol Robotic Network Observations
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The single-scattering albedo (SSA), which quantifies radiative absorption capability, is an important optical property of aerosols. Ground-based methods have been extensively exploited to determine aerosol SSA but there were no satellite-based SSA measurements available until the advent of advanced remote sensing techniques, such as the Ozone Monitoring Instrument (OMI). Although the overall accuracy of OMI SSA is estimated to approach 0.1, its regional availability is unclear. Four-year SSA daily measurements from three Aerosol Robotic Network (AERONET) sites in China (Xianghe, Taihu, and Hong Kong) are chosen to determine the accuracy of OMI SSA in specific locations. The results show that on a global scale, the OMI SSA is systematically higher (with a mean relative bias of 3.5% and a RMS difference of ~0.06) and has poor correlation with the AERONET observations. In the Xianghe, Taihu, and Hong Kong sites, the correlation coefficients are 0.16, 0.47, and 0.44, respectively, suggesting that the distinct qualities of OMI SSA depend on geographic locations and/or dominant aerosol environments. The two types of SSA data yield the best agreement in Taihu and the worst in Hong Kong; the differing behavior is likely caused by varying levels of cloud contamination. The good consistency of the aerosol variation between the two SSA datasets on a seasonal scale is promising. These findings suggest that the current-version OMI SSA product can be applied to qualitatively characterize climatological variations of aerosol properties despite its limited accuracy as an instantaneous measurement. 相似文献
169.
天津夏季大气消光性质的研究 总被引:2,自引:0,他引:2
利用2010年夏季天津城市边界层观测站颗粒物、黑碳气溶胶、氮氧化物(NOX)浓度、地面能见度和气象梯度观测资料,分析了天津夏季大气消光特性及低能见度事件产生的原因。结果表明,天津夏季主要污染物为PM10和PM2.5,大气气溶胶消光系数为529.06M.m-1,其中,吸收系数为50.17M.m-1,散射系数为478.89M.m-1,气体吸收系数为7.74M.m-1,气溶胶单次散射反射率为0.87。天津夏季边界层大气状态有近一半的时间为中性或偏稳定层结,当出现中性或偏稳定层结大气时则有接近一半的情况出现低能见度事件(能见度<5km),影响人们的日常生活。 相似文献
170.
青藏高原地区MODIS反照率的精度分析 总被引:2,自引:1,他引:1
应用2002-2004年青藏高原CAMP/Tibet试验期间4个地面站点的反照率观测结果定量分析Te丌aMODISlkm分辨率短波SW波段(0.3—5.0μm)反照率全反演结果和当量反演结果的精度。对于全反演结果,黑空反照率、白空反照率与地面观测结果的均方根差分别为0.0187和0.0168;对于当量反演结果,黑空反照率、白空反照率与地面观测结果的均方根差分别为0.0766和0.0761。综合全反演结果和当量反演结果,则黑空反照率、白空反照率与地面观测结果的均方根差分别为0.0679和0.0675。当地面观测结果与MODIS反照率当量反演结果均为“无雪”状态时,黑空反照率、白空反照率与地面观测结果的均方根差分别为0.0352和0.0364;当地面观测结果为“积雪”状态,MODIS反照率当量反演结果为“无雪”状态时,黑空反照率、白空反照率与地面观测结果的均方根差分别高达0.1556和0.1541。 相似文献