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Trends in Climatic Change in the Last 50 Years at Seven Agro-climatic Regio of Tamil Nadu

机译:在泰米尔纳德纳德七个农业气候区域的过去50年来气候变化趋势

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The climate change issue is part of the larger challenge of sustainable development and one of the most important global environmental challenges facing humanity which go far beyond its effect on the environment. In order to understand the climatic change happening in the different agro-climatic regions of Tamil Nadu and to develop strategies to mitigate climatic stress and to optimise productivity monthly, Maximum and Minimum Temperature and Relative Humidity Data during the period 1955-2005 were obtained from the Indian Meteorological Department, Pune. From the basic temperature data, mean maximum, mean minimum and Temperature Humidity Index was computed for each month for the seven agro-climatic regions of Tamil Nadu. Mean maximum temperature wasobserved at the month of May, and Cauvery Delta zone showed maximum temperature of 38.22 ± 1.33 °C with significant difference of P < 0.01 between the regions. Mean minimum temperature was observed at the month of January, and hilly zone showed minimum temperature of 5.59 ± 1.31 °C with a significant difference of P < 0.01 between the regions. The long-term mean and annual compounded growth rates of T_(max), T_(min) and THI were worked out on the basis of the representative areas selected for the study. The annual growth rate of maximum and minimum temperatures showed different patterns for different agro-climatic zones in the study area. The T_(max) showed an increase in all the agro-climatic zones except in north-western zone and southern zone.T_(min) also showed a positive growth pattern in all agro-climatic zones except in north-western zone and southern zone. The annual growth rate of THI showed different patterns for different agro-climatic zones. Five agro-climatic zones, viz., north-eastern zone, western zone and hilly zones, Cauvery Delta zone and high rainfall zone, were showing a positiveannual compounded growth rate for both morning and evening THI. In north-western zone the growth in THI was limited to morning and the evening THI showed a negative growth. Southern zone showed a negative annual compounded growth rate for both morning and evening THI.
机译:气候变化问题是可持续发展挑战的一部分,以及人类面临的最重要的全球环境挑战之一,远远超出其对环境影响。为了了解泰米尔纳德州不同农业气候区域的气候变化,并制定减轻气候压力的策略,并从1955 - 2005年期间优化生产率月度,最大和最低温度和相对湿度数据印度气象部门,浦那。从基本温度数据,每个月计算泰米尔纳德七个农业气候区域的每个月的平均值,平均最小和温度湿度指数。在5月份的月份的平均最大温度呈现,Cauvery Delta区显示出最高温度为38.22±1.33°C,在区域之间的P <0.01具有显着差异。在1月份观察到平均最小温度,丘陵区显示最小温度为5.59±1.31°C,在区域之间的P <0.01具有显着差异。在为该研究选择的代表领域的基础上制定了T_(MAX),T_(MIN)和THI的长期平均值和年度复合增长率。年增长率和最低温度的年增长率显示了研究区中不同农业气候区的不同模式。 T_(MAX)显示除西北区和南部区外的所有农业气候区.T_(MIN)还表现出所有农业气候区的正增长模式,除非西北区和南部区。 THI的年增长率显示不同农业气候区的不同模式。五个农业气候区,ZIZ,东北区,西区和丘陵区,Cauvery Delta区和高降雨区,均为早晨和晚上显示出态度的复合增长率。在西北地区,Thi的增长仅限于上午,晚上展出了负增长。南方地区为早晚和晚上显示了负复合增长率。

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