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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >A sub-pixel-based calculation of fire radiative power from MODIS observations: 2. Sensitivity analysis and potential fire weather application
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A sub-pixel-based calculation of fire radiative power from MODIS observations: 2. Sensitivity analysis and potential fire weather application

机译:从MODIS观测值基于亚像素的火辐射功率计算:2.敏感性分析和潜在的火情天气应用

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Fire radiative power (FRP) over a pixel area has been highlighted as a valuable parameter for quantitatively deriving smoke emissions. However, smoke plume rise forecasts and characterizations of fire intensity require additional information, including the FRP over the fire area (FRPf) and per fire area (or fire radiative flux), both of which can be calculated through a bi-spectral retrieval of sub-pixel fire area and temperature. This study, the second in a two-part series, examines the sources of error and the corresponding uncertainties in a sub-pixel algorithm that calculates FRP_f for fire pixels identified at 1km~2 nominal spatial resolution by the MODerate Resolution Imaging Spectroradiometer (MODIS) fire detection algorithm (collection 5). Radiative transfer simulations are incorporated to account for atmospheric effects as a function of Earth-satellite geometry at 3.96 and 11μm (MODIS fire detection channels), and show that the 11μm channel is highly sensitive to variations in column water vapor amount. By investigating several fire events in California, considerable variations in retrieved fire area, occasionally by more than 50%, are observed when comparing the mid-latitude summer climatology and observation-based atmospheric profiles that are used in the sub-pixel retrieval algorithm. While regions of dry, brown vegetation may also increase the potential for error via the surface emissivity assumption, the algorithm is much more sensitive to errors in 11μm background brightness temperature, where an error of only 1.0K may alter the retrieved fire area by an order of magnitude or more. An independent application, using the Texas wildfire event of September 2011, reveals that the sub-pixel retrieval can even become irrelevant for 17.6% of the available MODIS fire pixels as a result of noise in the background region causing the 11μm background brightness temperature to become warmer than the fire pixel, especially during daytime scenes. The various sources of uncertainty in the estimates of FRP_f and fire area can be reduced through the summation of individual pixel-level retrievals for large clusters of fire pixels, which can be defined based on the resolution of a mesoscale model grid. In comparison to the standard MODIS pixel-based FRP, the flux of FRP_f, defined as total FRP_f divided by the retrieved fire area, is shown to have a stronger and statistically significant correlation with surface (10-meter) wind speed and air temperature, especially for large fire pixel clusters, where the respective linear correlation coefficients are 0.55 and 0.77. These strong relationships suggest that, while additional studies are warranted, the flux of FRP_f may offer the potential for improved characterizations of the meteorological effects on fire intensity compared to the standard pixel-based FRP.
机译:像素区域的火辐射功率(FRP)已被突出显示为定量推导烟雾排放的重要参数。但是,烟羽上升预测和火势特征需要附加信息,包括火区上的FRP(FRPf)和每个火区的FRP(或火辐射通量),这两者都可以通过对子区域进行双光谱检索来计算-像素着火区域和温度。本研究是一个由两部分组成的系列文章中的第二部分,它研究了子像素算法中的误差来源和相应的不确定性,该子像素算法通过MODerate分辨率成像光谱仪(MODIS)为标称空间分辨率为1km〜2的火灾像素计算FRP_f火灾探测算法(集合5)。结合了辐射传递模拟,以说明在3.96和11μm(MODIS火灾探测通道)处,大气效应是卫星地球几何形状的函数,并且表明11μm通道对柱水蒸气量的变化高度敏感。通过调查加利福尼亚的几起火灾事件,在比较中纬度夏季气候和亚像素检索算法中使用的基于观测的大气廓线时,观察到的火势变化很大,偶尔会超过50%。虽然干燥,褐色植被的区域也可能通过表面发射率假设增加错误的可能性,但该算法对11μm背景亮度温度的错误更为敏感,其中仅1.0K的错误可能会将获取的火区改变一个数量级数量级或更多。一项独立的应用程序(使用2011年9月的德克萨斯州野火事件)显示,由于背景区域中的噪声导致11μm背景亮度温度变为15%,因此子像素检索甚至变得与17.6%的可用MODIS火象素无关。比起火象素更温暖,尤其是在白天的场景中。 FRP_f和火场估计的各种不确定性来源可以通过对大火象素簇的单个像素级检索结果求和来减少,这可以基于中尺度模型网格的分辨率来定义。与标准的基于MODIS像素的FRP相比,FRP_f的通量定义为总FRP_f除以检索到的着火面积,与地面(10米)风速和空气温度具有更强的统计意义上的相关性,特别是对于大型火像素簇,其线性相关系数分别为0.55和0.77。这些牢固的关系表明,尽管有必要进行更多的研究,但与标准的基于像素的FRP相比,FRP_f的通量可能提供改进表征火势的气象效应的潜力。

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