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1.
近100年天津平均气温与极端气温变化   总被引:7,自引:0,他引:7       下载免费PDF全文
郭军  任国玉  任雨 《高原气象》2011,30(5):1399-1405
利用1910-2009年天津气象站逐日最高、最低气温观测资料,计算了平均气温和平均最高(低)气温序列,以及高(低)温阈值、最长暖日(冷夜)日数和霜冻日数等极端气温指数序列。利用线性回归和Mann-Kendall检验分析了这些气温序列变化趋势的显著性和跃变特征。结果表明,天津市近100年平均气温显著上升,冬、春季最低气温...  相似文献   

2.
1951—2009年天津市主要极端气候指数变化趋势   总被引:2,自引:0,他引:2       下载免费PDF全文
利用1951—2009年天津市逐日气温和降水量资料,计算了极端气候指数,并研讨了其中11个主要指数的变化特征。结果表明:天津市暖日、冷夜具有基本相反的变化趋势,暖日显著增加,冷夜显著减少,且冷夜的变化幅度远大于暖日。持续暖期、霜日呈显著增加趋势,持续冷期呈显著减少趋势。降水指数中连续干日呈增加趋势,最大连续5 d降水量...  相似文献   

3.
高晓梅  江静  刘畅  马守强 《气象科学》2018,38(6):749-758
利用1949—2015年台风年鉴资料、NCEP/NCAR再分析资料、NOAA资料等对近67 a影响山东的台风频数特征及其与相关气候因子的关系进行了分析。结果表明:(1)影响山东的6类台风中沿海北上类最多,登陆填塞类最少。8月和8月上旬是主要月份和旬份。台风年代际变化明显,并存在显著的26 a年代际尺度和5 a年际尺度的周期变化。(2)台风频数与同年份的东亚槽位置、亚洲区极涡面积指数分别呈显著的负、正相关关系。Ni1o3. 4区海温对台风频数存在超前的显著负相关,超前影响分别在1、2、3、4月。台风频数与冬季北大西洋涛动(NAO)指数、太平洋年代际振荡(PDO)指数分别存在显著的正、负相关关系。春、夏、秋季和年PDO冷位相时台风频数偏多,PDO暖位相时台风频数偏少,这与西太平洋副热带高压和低层水汽条件关系密切。(3)冷、暖位相年台风频数与太平洋海温分别存在显著的相关区,特别是冬季暖位相时赤道中东太平洋显著负相关区域较大。年PDO冷位相与夏季的显著相关区较相似,暖位相与秋季相似。(4)太平洋海温与台风频数相关性较好的海域主要有3个关键区:赤道中东太平洋、北太平洋中部和西太平洋暖池。其中赤道中东太平洋的的显著性表现在冬季,北太平洋中部的显著性表现在年、春、夏、秋季,西太平洋暖池的显著性表现在夏、秋季。  相似文献   

4.
利用1960—2014年湖南省88个地面气象站日最高和最低气温的均一化资料,运用百分位阈值法统计暖日、暖夜、冷日和冷夜数,采用线性回归、M-K突变检验、Morlet小波分析等方法,研究湖南省55 a以来极端气温事件的时空变化特征。结果表明:(1)湖南省暖日和暖夜呈上升趋势,其年际变化倾向率分别为0.68 d/10 a、2.73 d/10 a,冷日和冷夜呈下降趋势,其年际变化倾向率分别为-0.45 d/10 a、-2.46 d/10 a,夜间增暖显著;(2)湖南省大部分地区的暖日、暖夜呈上升趋势,冷日、冷夜呈下降趋势,其中湘西北、湘西南、湘东南部分地区变化趋势明显;(3)暖日、暖夜、冷夜有明显的阶段性变化,暖日、暖夜分别在2008、2003年突变增加,冷夜在1986年突变减少;(4)湖南省极端气温日数在不同的时间段存在着长短不同的振荡周期。  相似文献   

5.
1951—2010年长沙市极端气温事件的变化特征   总被引:2,自引:0,他引:2  
利用1951-2010年长沙最高和最低气温资料,运用国际上通用的百分位阈值法确定暖日、暖夜和冷日、冷夜数,采用线性倾向估计法和M-K突变检测等方法,研究长沙市60 a来极端气温事件的时空变化特征。结果表明,暖日和暖夜数分别以3.48个.(10a)-1和3.06个.(10a)-1的速率显著增加,冷日和冷夜数分别以-2.13个.(10a)-1和-1.78个.(10a)-1的速率显著减少,白天增暖幅度大于夜间增暖幅度。研究还表明,阶段性特征明显,近60 a来暖日和冷日、冷夜数发生了明显的突变。暖日数增加秋季最显著,春季次之;暖夜数增加夏季最显著,冬季次之。冷日(夜)数减少的季节主要是春季和冬季;四季都在变暖,但以春季、冬季变暖最明显。7月暖日(暖夜)数增加最显著,4月和2月冷日(冷夜)数减少最显著。  相似文献   

6.
利用1951—2009年天津市逐日气温和降水量资料,计算了极端气候指数,并研讨了其中11个主要指数的变化特征。结果表明:天津市暖日、冷夜具有基本相反的变化趋势,暖日显著增加,冷夜显著减少,且冷夜的变化幅度远大于暖日。持续暖期、霜日呈显著增加趋势,持续冷期呈显著减少趋势。降水指数中连续干日呈增加趋势,最大连续5 d降水量、日降水强度、强降水率和极强降水率及连续湿日均呈减少趋势,表明天津市干旱化倾向明显。与气温有关的极端指数大多在1993年前后出现突变,周期特征不明显。与降水有关的极端指数未现突变,但周期特征明显,大多出现10 a和4 a的周期。  相似文献   

7.
利用卫星遥感资料对安徽省46个台站进行分类,统计分析了城市站、郊区站和乡村站1961-2010年的极端气温指数的年和季节的变化趋势及其受城市化的影响和贡献。结果表明:1) 近50年来,除最高气温年极大值外,其他气温年极值都有明显上升趋势,以最低温度极小值最显著;暖日、暖夜天数呈增加趋势,而冷日、冷夜天数呈减少趋势,其中暖夜和冷夜变化趋势更明显;各极端指数的变化趋势总体均表现为城市站较乡村站更显著,郊区站介于两者之间。2) 城市站最高气温极大值、最低气温极大值和最低气温极小值因城市化造成的增温分别为0.144、0.184和0.161℃/10a,增温贡献率分别达100.0%、58.8%和21.6%,但城市化对最高气温极小值影响较弱;季节尺度的城市化影响基本都造成增温,春、秋季更明显,而增温贡献率以春、夏季更明显,冬季最小或不显著。3) 城市化效应使暖日和暖夜天数增加、冷夜天数减少的趋势更加显著,城市化影响贡献率都在40%以上;暖日、暖夜和冷夜天数的城市化影响贡献率都在冬季最小或不显著。  相似文献   

8.
利用1960-2014年湖南省88个地面气象站日最高和最低气温的均一化资料,运用百分位阈值法统计暖日、暖夜、冷日和冷夜数,采用线性回归、M-K突变检验、Morlet小波分析等方法,研究湖南省55a以来极端气温事件的时空变化特征。结果表明:(1)湖南省暖日和暖夜数呈上升趋势,其年际变化倾向率分别为0.68d.(10a)-1、2.73 d.(10a)-1,冷日和冷夜数呈下降趋势,其年际变化倾向率分别为-0.45d.(10a)-1、-2.46d.(10a)-1,夜间增暖幅度大于白天增暖幅度;(2)湖南省大部分地区的暖日、暖夜数呈上升趋势,冷日数、冷夜数呈下降趋势,其中湘北、湘南部分地区变化趋势明显;(3)暖日、暖夜、冷夜数有明显的阶段性变化,其突变检验特征较明显,暖日、暖夜分别在2008、2003年突变增加,冷夜在1986年突变减少;(4)湖南省极端气温日数在不同的时间段存在着长短不同的振荡周期。  相似文献   

9.
基于均一化资料的中国大陆极端温度的长期趋势   总被引:1,自引:0,他引:1  
肖冰霜  马玉霞  赵天保  颜书豪 《气象》2016,42(3):339-346
近百年来,全球气候变暖。这与暖日和暖夜增加,冷日和冷夜减少相关联。文章研究结果进一步证实了这一发现。本文基于1960-2012年中国大陆542个台站均一化气温资料,通过将中国大陆划分为8个次区域,利用百分位定义法计算了极端温度指数序列,同时,运用时间趋势分析法,对中国大陆各区域极端温度和极端温度指数的时空分布及变化趋势特征进行了分析。结果表明:在全球变暖的背景下,从地理分布而言,中国大陆在过去53年除西南地区外,大部分地区最低和最高温度有显著的升高趋势,其中,东北温度升高最为明显;从季节而言,冬季极端温度升高最为明显,夏季升高最少;最低温度明显升高,最高温度也有所升高,但是最低温度的升高幅度更大。冷夜和冷日出现频率呈减少趋势,暖夜和暖日出现频率呈增加趋势,其中以冷夜指数变化最为突出,均呈现一种区域差异的现象。本文利用更新的资料验证了前人的工作,也进一步分区分析,结果可为更多地区评估以及进一步的相关研究提供参考。  相似文献   

10.
利用1951-2010年长沙最高和最低气温资料,运用国际上通用的百分位阈值法确定暖日、暖夜和冷日、冷夜,采用线性倾向估计法和M-K突变检测等方法,研究长沙市60 a来极端气温事件的时空变化特征。结果表明,暖日和暖夜数分别以3.5 个·(10 a)-1和3.1个·(10 a)-1的速率显著增加,冷日和冷夜数分别以-2.1个·(10 a)-1和-1.8个·(10 a)-1的速率显著减少,白天增暖幅度大于夜间增暖幅度。研究还表明, 阶段性特征明显,近60 a来暖日和冷日、冷夜数发生了明显的突变。暖日数增加秋季最显著,春季其次;暖夜数增加夏季最显著,冬季其次。冷日(夜)数的减少主要是春季和冬季;四季都在变暖,但以春季、冬季变暖最明显。7月暖日(夜)数增加最显著,4月和2月冷日(夜)数减少最显著。  相似文献   

11.
Changes in Chinese temperature extremes are presented based on a six-hourly surface air temperature dataset for the period 1961--2005. These temperature series are manually observed at 0200, 0800, 1400, and 2000 Beijing Time (LST), and percentile based extreme indices of these time series are chosen for analysis. Although there is a difference in time among the different time zones across China, as more than 80% of the stations are located in two adjacent time zones, these indices for all the stations are called warm (cold) nights (0200 LST), warm (cold) mornings (0800 LST), warm (cold) days (1400 LST), and warm (cold) evenings (2000 LST), respectively for convenience. The frequency of the annual warm extremes has generally increased, while the frequency of the annual cold extremes has decreased, and significant changes are mainly observed in northern China, the Tibetan Plateau, and the southernmost part of China. Based on the national average, annual warm (cold) nights increase (decrease) at a rate of 5.66 (-5.92) d (10 yr)-1, annual warm (cold) days increase (decrease) at a rate of 3.97 (-2.98) d (10 yr)-1, and the trends for the annual warm (cold) mornings and evenings are 4.35 (-4.96) and 5.95 (-4.35) d (10 yr)-1, respectively. For China as a whole, the increasing rates for the occurrence of seasonal warm extremes are larger in the nighttime (0200, 2000 LST) than these in the daytime (0800, 1400 LST), the maximal increase occurs at 2000 LST except in the summer and the minimal increase occurs at 1400 LST except in autumn; the maximal decrease in the occurrence of seasonal cold extremes occurs at 0200 LST and the minimal decrease occurs at 1400 LST.  相似文献   

12.
By comparing two sets of quality-controlled daily temperature observation data with and without the inhomogeneity test and adjustment from 654 stations in China during 1956-2004 and 1956-2010, impacts of inhomogeneity on changing trends of four percentile temperature extreme indices, including occurrences of cold days, cold nights, warm days, and warm nights with varying intensities, were discussed. It is found that the inhomogeneity affected the long-term trends averaged over extensive regions limitedly. In order to minimize the inhomogeneity impact, the 83 stations identified with obvious inhomogeneity impacts were removed, and an updated analysis of changing trends of the four temperature extreme indices with varying intensities during 1956-2010 was conducted. The results show that annual occurrences of both cold nights and cold days decreased greatly while those of warm nights and warm days increased significantly during the recent 20 years. The more extreme the event is, the greater the magnitude of changing trends for the temperature extreme index is. An obvious increasing trend was observed in annual occurrences of cold days and cold nights in the recent four years. The magnitude of changing trends of warm extreme indices was greater than that of cold extreme indices, and it was greater in northern China than in southern China. Trends for summer occurrence of cold days were not significant. Decreasing trends of occurrences of both cold nights and cold days were the greatest in December, January, and February (DJF) but the least in June, July, and August (JJA), while increasing trends of warm nights were the greatest in JJA. Cold nights significantly decreased from 1956 to 1990, and then the decreasing trend considerably weakened. The decreasing trend also showed an obvious slowdown in recent years for occurrence of cold days. However, increasing trends of warm nights and warm days both have been accelerated continuously since the recent decades. Further analysis presents that the evolution of the trends for occurrences of the four temperature extreme indices was dominated by the changes in northern China.  相似文献   

13.
Trends in the frequencies of four temperature extremes (the occurrence of warm days, cold days, warm nights and cold nights) with respect to a modulated annual cycle (MAC), and those associated exclusively with weather-intraseasonal fluctuations (WIF) in eastern China were investigated based on an updated homogenized daily maximum and minimum temperature dataset for 1960–2008. The Ensemble Empirical Mode Decomposition (EEMD) method was used to isolate the WIF, MAC, and longer-term components from the temperature series. The annual, winter and summer occurrences of warm (cold) nights were found to have increased (decreased) significantly almost everywhere, while those of warm (cold) days have increased (decreased) in northern China (north of 40°N). However, the four temperature extremes associated exclusively with WIF for winter have decreased almost everywhere, while those for summer have decreased in the north but increased in the south. These characteristics agree with changes in the amplitude of WIF. In particular, winter WIF of maximum temperature tended to weaken almost everywhere, especially in eastern coastal areas (by 10%–20%); summer WIF tended to intensify in southern China by 10%–20%. It is notable that in northern China, the occurrence of warm days has increased, even where that associated with WIF has decreased significantly. This suggests that the recent increasing frequency of warm extremes is due to a considerable rise in the mean temperature level, which surpasses the effect of the weakening weather fluctuations in northern China.  相似文献   

14.
近40年我国极端温度变化趋势和季节特征   总被引:16,自引:4,他引:12       下载免费PDF全文
利用1961—2000年我国194个测站逐日最高温度和最低温度器测资料,结合具有实际意义的季节极端温度指数,分析了我国近40年极端温度事件的年变化趋势和季节特征。对年极端气候指数的研究表明:绝对阈值定义的冷暖指数由于无法考虑南北气候差异,其结果不理想。百分比阈值所得的冷暖指数中,冷日指数和暖日指数具有不对称性,冷夜指数和暖夜指数具有较强的对称性。对季节极端温度指数研究表明:冬季极端冷指数变化趋势最为明显,夏季极端暖指数的变化趋势次之,春、秋两季极端冷指数的变化趋势不明显;年和季节尺度的极端冷暖指数均反映出增暖趋势。  相似文献   

15.
This paper reports a comprehensive study on the observed and projected spatiotemporal changes in mean and extreme climate over the arid region of northwestern China, based on gridded observation data and CMIP5 simulations under the RCP4.5 and RCP8.5 scenarios. The observational results reveal an increase in annual mean temperature since 1961, largely attributable to the increase in minimum temperature. The annual mean precipitation also exhibits a significant increasing tendency. The precipitation amount in the most recent decade was greater than in any preceding decade since 1961. Seasonally,the greatest increase in temperature and precipitation appears in winter and in summer, respectively. Widespread significant changes in temperature-related extremes are consistent with warming, with decreases in cold extremes and increases in warm extremes. The warming of the coldest night is greater than that of the warmest day, and changes in cold and warm nights are more evident than for cold and warm days. Extreme precipitation and wet days exhibit an increasing trend, and the maximum number of consecutive dry days shows a tendency toward shorter duration. Multi-model ensemble mean projections indicate an overall continual increase in temperature and precipitation during the 21 st century. Decreases in cold extremes, increases in warm extremes, intensification of extreme precipitation, increases in wet days, and decreases in consecutive dry days, are expected under both emissions scenarios, with larger changes corresponding to stronger radiative forcing.  相似文献   

16.
This study investigates the recent extreme temperature trends across 19 stations in the Klang Valley, Malaysia, over the period 2006-16. Fourteen extreme index trends were analyzed using the Mann-Kendall non-parametric test, with Sen’s slope as a magnitude estimator. Generally, the annual daily mean temperature, daily mean maximum temperature, and daily mean minimum temperature in the Klang Valley increased significantly, by 0.07°C yr~(-1), 0.07°C yr~(-1)and 0.08°C yr~(-1),respectively. For the warm temperature indices, the results indicated a significant upward trend for the annual maximum of maximum temperature, by 0.09°C yr~(-1), and the annual maximum of minimum temperature, by 0.11°C yr~(-1). The results for the total number of warm days and warm nights showed significant increasing trends of 5.02 d yr~(-1)and 6.92 d yr~(-1),respectively. For the cold temperature indices, there were upward trends for the annual minimum of maximum temperature,by 0.09°C yr~(-1), and the annual minimum of minimum temperature, by 0.03°C yr~(-1), concurrent with the decreases in the total number cold days (TX10P), with-3.80 d yr~(-1), and cold nights (TN10P), with-4.33 d yr~(-1). The 34°C and 37°C summer days results showed significant upward trends of 4.10 d yr~(-1) and 0.25 d yr~(-1), respectively. Overall, these findings showed upward warming trends in the Klang Valley, with the minimum temperature rate increasing more than that of the maximum temperature, especially in urban areas.  相似文献   

17.
Extreme temperature events are simulated by using the Beijing Climate Center Atmospheric General Circulation Model (BCC AGCM) in this paper. The model has been run for 136 yr with the observed external forcing data including solar insolation, greenhouse gases, and monthly sea surface temperature (SST). The daily maximum and minimum temperatures are simulated by the model, and 16 indices representing various extreme temperature events are calculated based on these two variables. The results show that the maximum of daily maximum temperature (TXX), maximum of daily minimum (TNX), minimum of daily maximum (TXN), minimum of daily minimum (TNN), warm days (TX90p), warm nights (TN90p), summer days (SU25), tropical nights (TR20), and warm spell duration index (WSDI) have increasing trends during the 20th century in most regions of the world, while the cold days (TX10p), cold nights (TN10p), and cold spell duration index (CSDI) have decreasing trends. The probability density function (PDF) of warm/cold days/nights for three periods of 1881-1950, 1951- 1978, and 1979-2003 is examined. It is found that before 1950, the cold day/night has the largest probability, while for the period of 1979-2003, it has the smallest probability. In contrast to the decreasing trend of cold days/nights, the PDF of warm days/nights exhibits an opposite trend. In addition, the frost days (FD) and ice days (ID) have decreasing trends, the growing season has lengthened, and the diurnal temperature range is getting smaller during the 20th century. A comparison of the above extreme temperature indices between the model output and NCEP data (taken as observation) for 1948-2000 indicates that the mean values and the trends of the simulated indices are close to the observations, and overall there is a high correlation between the simulated indices and the observations. But the simulated trends of FD, ID, growing season length, and diurnal temperature range are not consistent with the observations and their correlations are low or even negative. This indicates that the model is incapable to simulate these four indices although it has captured most indices of the extreme temperature events.  相似文献   

18.
采用统计方法并结合气象台站历史沿革信息,对1910-2010年洞庭湖区气温观测资料进行均一性检验和订正,并利用洞庭湖区周边气象台站资料对洞庭湖区1951年以前缺测的气温资料进行插补,构成完整的气温序列。基于洞庭湖区完整气温序列,构建洞庭湖区近百年气温序列并分析其变化特征。结果表明:1910-2010年洞庭湖区年平均气温呈显著上升趋势,其中冬季和春季平均气温上升幅度最大,秋季次之,夏季变化趋势不显著;气温变化存在明显的冷暖交替,冷暖期交替比中国地区更频繁;近百年洞庭湖区年和冬季、春季、秋季平均气温均存在一个显著增暖的突变点;小波分析表明,近百年洞庭湖区年和四季平均气温均经历了冷-暖-冷-暖4个阶段的交替。  相似文献   

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