遥感反演大气水汽含量对进行天气预报、遥感大气校正、气候变化及水循环等研究具有重要意义。首先,通过对大气辐射传输方程的推导,改进了三通道算法;然后,模拟了在不同传感器视角条件下,大气水汽含量与MO-D IS 17、18、19通道大气透过...遥感反演大气水汽含量对进行天气预报、遥感大气校正、气候变化及水循环等研究具有重要意义。首先,通过对大气辐射传输方程的推导,改进了三通道算法;然后,模拟了在不同传感器视角条件下,大气水汽含量与MO-D IS 17、18、19通道大气透过率之间的关系,解决了传感器视角问题,提出了针对MOD IS数据的大气水汽含量计算方法;最后,在IDL 6.0环境下,编程实现了该方法,并对2003年6月14日的一景图像进行了反演,结果表明,本文提出的方法是可行的。展开更多
A rational plant population is an important attribute to high yield of cotton, because it can provide a beneficial micro environment within the canopy for plant growth and development as well as yield formation. A 2-y...A rational plant population is an important attribute to high yield of cotton, because it can provide a beneficial micro environment within the canopy for plant growth and development as well as yield formation. A 2-yr field experiment was conducted to determine the optimal plant density based on cotton yield in relation to the canopy micro environment (canopy temperature, relative humidity and light transmittance). Six plant densities (1.2-5.7 plants m^-2) were arranged with a completely randomized block design. The highest cotton yield (1 507 kg ha^-1) was obtained at 3.0 plants m^-2 due to more bolls per unit ground area (79 bolls m2), while the lowest yield (1 091 kg ha1) was obtained at 1.2 plants m^-2. Under the moderate plant density (3.0 plants m^-2), there was a lower mean daily temperature (MDT, 27. 1℃) attributing to medium daily minimum temperature (Train, 21.9℃) and the lowest daily maximum temperature (Tmax, 35.8℃), a moderate mean canopy light transmittance of 0.51, and lower mean daily relative humidity (MRH) of 79.7% from June to October. The results suggest that 3.0 plants m^-2 would be the optimal plant density because it provides a better canopy micro environment.展开更多
文摘遥感反演大气水汽含量对进行天气预报、遥感大气校正、气候变化及水循环等研究具有重要意义。首先,通过对大气辐射传输方程的推导,改进了三通道算法;然后,模拟了在不同传感器视角条件下,大气水汽含量与MO-D IS 17、18、19通道大气透过率之间的关系,解决了传感器视角问题,提出了针对MOD IS数据的大气水汽含量计算方法;最后,在IDL 6.0环境下,编程实现了该方法,并对2003年6月14日的一景图像进行了反演,结果表明,本文提出的方法是可行的。
基金supported by Special Fund for Agro-scientific Research in the Public Interest,China(3-5-19)the Modern Agro-Industry Technology Research System,China(Cotton 2007-2010)the National Transgenic Cotton Production Program,China(2009ZX08013-014B)
文摘A rational plant population is an important attribute to high yield of cotton, because it can provide a beneficial micro environment within the canopy for plant growth and development as well as yield formation. A 2-yr field experiment was conducted to determine the optimal plant density based on cotton yield in relation to the canopy micro environment (canopy temperature, relative humidity and light transmittance). Six plant densities (1.2-5.7 plants m^-2) were arranged with a completely randomized block design. The highest cotton yield (1 507 kg ha^-1) was obtained at 3.0 plants m^-2 due to more bolls per unit ground area (79 bolls m2), while the lowest yield (1 091 kg ha1) was obtained at 1.2 plants m^-2. Under the moderate plant density (3.0 plants m^-2), there was a lower mean daily temperature (MDT, 27. 1℃) attributing to medium daily minimum temperature (Train, 21.9℃) and the lowest daily maximum temperature (Tmax, 35.8℃), a moderate mean canopy light transmittance of 0.51, and lower mean daily relative humidity (MRH) of 79.7% from June to October. The results suggest that 3.0 plants m^-2 would be the optimal plant density because it provides a better canopy micro environment.