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1.
The crop estimates by remote sensing, developing quickly in recent decades, is a up-to-date technique. Regionalization for large area crop estimates by remote sensing, a special applied regionalization, is the foundation of crop estimates in a large area by remote sensing. According to the actual demands of wheat yield estimation by remote sensing and wheat agroclimatic demarcation of China, this paper first puts forward some principles upheld in this regionalization and analyses its main bases. Secondly, it works out the classificatory schemes about the optimum temporal for estimating wheat yield by remote sensing, information sources of space remote sensing and landuse structure in China. Finally, According to the regionalization indices, this study divides the wheat plantable region of China into 14 regions of crop yield estimates and 31 subregions of crop yield estimates.  相似文献   
2.
我国能源消费结构变化与气候特征   总被引:9,自引:1,他引:9       下载免费PDF全文
文章利用多项式法将气候耗能量从能源消费总量中分离出来,用统计分析的方法探讨了气候耗能量与气候因子之间的关系及其变化。研究表明:从20世纪50年代到80年代初期,旱涝灾害是影响我国气候耗能量的主要气候因子,它们之间存在显著的线性相关关系,随着经济的发展和人民生活水平的提高,旱涝灾害对气候耗能量的影响逐渐减弱,气温对气候耗能量的影响日趋显著,目前正处于过渡时期。  相似文献   
3.
广州市城市电力消费对气候变化的响应   总被引:4,自引:1,他引:3       下载免费PDF全文
低纬度地区的城市电力消费对气候变化有较为敏感的响应。该文引入了气候变化对农业产量和能源影响的研究方法, 分别建立了气候变化对电力消费影响强度的动态评估模型和降温度日模型, 对广州市城市电力消费对气候变化的响应作了深入分析。结果表明:广州市城市电力消费量主要受到气温、湿度、风速等气象因子的影响, 其中气温为关键性因子; 综合考虑各气候因子和气候变化的稳定性, 1956—2005年的近50年, 广州市气候变化对城市电力消费影响强度是持续稳定增加的, 正强度出现的概率呈现出增大趋势, 以10%/10a的速度增长; 通过对广州市降温度日的分析可知, 5—10月为主要的降温时期, 其气温的升高对降温度日强度变化影响很大, 达到46.6%/ ℃, 同时, 广州市的降温期长度变率也呈递增趋势, 因此, 气温的升高引发的降温度日的增加对广州市城市电力消费有深刻影响; 在未来气候变暖情景下, 夏季平均最高气温每升高1 ℃, 广州市全年单位工业产值耗电将增加2.02%, 5—10月的平均气温每升高1 ℃, 居民生活用电量的百分比将增加1.25%。在未来, 气候变暖将使城市用电压力有继续增大的趋势。  相似文献   
4.
The features of physical geography in the transitional region between Qinling Mountains and Huanghuai Plain possess transitional characters evidently in two directions: one is from the western mountain to the eastern plain and the other is from southern subtropical zone to northern temperate zone. Torrential rain, especially strong torrential rain is frequent in the transitional region, and there are many torrential rain centers. A majority of torrential rain is distributed among 100-200 m asl. The winter temperature at 100-400 m asl is higher than that in Huanghuai Plain whose altitude is lower than that of the transitional region, and the highest temperature in January appears at 350-400 m asl.The thickness of warm slope belt in the transitional region varies from 100 m to 250 m asl. The formation of torrential rain and warm slope belt is the result of joint action of atmospheric circulation and local terrain. Frequent torrential rains and warm slope belt had tremendous influences on the soil properties, plant distribution and local climate in the transitional region.  相似文献   
5.
采用1979~2013年NCEP/NCAR再分析资料,借助线性趋势、距平、累积距平、Mann-Kendall突变检验及Morlet小波等方法分析了西北太平洋地区海平面气压场季节转换时间的长期趋势和多尺度周期变化特征。结果表明:海平面气压场一年中存在两次季节转变,20°N~50°N海平面气压场冬夏季节转变的时间在第20候左右,而夏冬季节转变发生在第51候。并且海平面气压场的季节转换时间存在纬度差异与经度差异。通过趋势分析,发现海平面气压场由冬季型转变到夏季型的时间存在显著的趋势变化,并且在近35年内是趋于提前,其气候倾向率为-0.33候/10 a;夏季型转换为冬季型的时间趋于延后,气候倾向率为0.25候/10 a。季节转换时间的Mann-Kendall突变检测结果表明,海平面气压场由冬向夏的转换时间在1997~1998年间发生了突变;夏季型转换为冬季型的时间尚未发现显著突变。最后通过对季节转换时间的小波分析与小波功率谱的显著性检验得出,冬夏季节转换的时间具有显著的15 a周期变化;夏冬季节转换时间8 a周期振荡最为剧烈。  相似文献   
6.
河南省棉花气候适宜度变化趋势分析   总被引:24,自引:1,他引:24       下载免费PDF全文
结合前人的研究确立河南省棉花气候适宜度模型, 对所选46个站点1961—2000年的适宜度进行计算, 分析1961—2000年全省及各站点适宜度的变化趋势, 表明1981—2000年适宜度变化趋势显著。对1981—2000年各站点适宜度的变化趋势根据变化的方向和强度进行分类, 将河南省划分为适宜度强增长型、弱增长型、减弱型。分析结果表明:河南省棉花气候适宜度总体呈下降的变化趋势, 各地的变化趋势依据热量带和地形地貌的不同有明显的地域差异。结合各地1981—2000年的气候资料对各类型的气候适宜度变化原因进行了初步分析。  相似文献   
7.
Thecropestimatesbyremotesensing,developingquicklyinrecentdecades,isauptodatetechnique.Somesystemsofcropestimatesbyremotesen...  相似文献   
8.
Energy consumption has an inevitable connection with economic level and climate. Based on selected data covering annual total energy consumption and its composition and that of all kinds of energy in 1953-1999, the annual residential energy consumption and the coal and electricity consumption in 1980-1999 in China, the acreage of crops under cultivation suffered from drought and flood annually and gross domestic product (GDP) in 1953-1999 in the whole country, and mean daily temperature data from 29 provincial meteorological stations in the whole country from 1970 to 1999, this paper divides energy consumption into socio-economic energy consumption and climatic energy consumption in the way of multinomial. Itchanges between the climate energy consumption andalso goes further into the relations and their changes between the climate energy consumptionenergy consumption and the economic level inand climate factor and between the socio-economic energy between the climate energy level in China with the method of statistical analysis. At present, there are obvious transitions in the changing relationships of the energy consumption to economy and climate, which comprises the transition of economic system from resource-intensive industry to technology-intensive industry and the transition of climatic driving factors of the energy consumption from driven by the disasters of drought and flood to driven by temperature.  相似文献   
9.
Based on the citrus temperature, precipitation, sunlight and climate risk degree, the article divides subtropics of China into three types: the low risk region, the moderate risk region and the high risk region. The citrus temperature risk increases with increasing latitude (except for the western mountainous area of subtropics of China). The citrus precipitation risk in the central part of subtropics of China is higher than that in the northern and western parts. The distributions of citrus sunlight risk are not consistent to those of the citrus precipitation risk. The citrus climate risk is mainly influenced by temperature. There is latitudinal zonal law for the distribution of the climate risk, that is, the climate risk increases with increasing latitude. At the same time the climate risk in mountainous area is high and that in eastern plain area is low. There are differences in the temporal and spatial changes of the citrus climate. In recent 46 years, the citrus climate risk presents a gradual increasing trend in subtropics of China, especially it has been increasing fast since the 1980s. Because of the global warming, the low risk region in the eastern and southern parts has a gradual decreasing trend, however, the high risk region in the northern and western parts has an increasing trend and the high risk region has been extending eastward and southward. The article analyses the distribution of the citrus climate risk degree of reduction rates of >10%, >20% and >30% in subtropics of China, and studies their changes in different time periods. Results show that the risk is increasing from southeast to northwest.  相似文献   
10.
广州市受自然因素制约,能源资源稀缺,而随着经济的快速发展,能源需求增长迅速。以广州市1988―2010年的数据为基础,运用协整理论结合库兹涅茨曲线等方法,分析广州市能源消费和经济增长的关系。研究结果表明:1)经济增长总量是能源消费总量的格兰杰原因,第二产业经济增长是第二产业能源消费的格兰杰原因,他们都处于库兹涅茨曲线倒“U”型假说的前半段;2)第三产业能源消费是第三产业经济增长的格兰杰原因,其库兹涅茨曲线呈现正相关线性关系;3)第一产业能源消费和经济增长不存在长期均衡关系,两指标也不适用于分析库兹涅茨曲线关系。随着广州市经济结构转型升级,受提高能源利用效率的高新技术和节能技术的大量开发运用等其他多方面因素的影响,未来能源消费和经济增长的因果关系会发生改变。因此,不同发展时期应考虑不同产业结构以及技术进步等的发展,制定与之相适应的能源政策。  相似文献   
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