首页> 外文OA文献 >Development of an improved urban emissivity model based on sky view factor for retrieving effective emissivity and surface temperature over urban areas
【2h】

Development of an improved urban emissivity model based on sky view factor for retrieving effective emissivity and surface temperature over urban areas

机译:基于天空因子改进的城市辐射率模型的开发,以获取城市地区的有效辐射率和地表温度

摘要

This study aims to evaluate the effects of urban geometry on retrieval of emissivity and surface temperature in urban areas. An improved urban emissivity model based on sky view factor (IUEM-SVF) was further enhanced to consider all radiance contributions leaving the urban canopy, including (i) emission by all facets within an instantaneous field of view (IFOV); (ii) reflection by all facets of emission from surrounding facets; and (iii) propagation of emitted and reflected radiation with multiple reflections (scattering) within a complex 3D array of urban objects. The effective emissivity derived from IUEM-SVF was evaluated with a microscale radiative transfer and energy balance model: Temperatures of Urban Facets in 3-D (TUF-3D). IUEM-SVF performs well when urban facets have uniform emissivity and temperature; e.g., root mean square deviations (RMSD) are less than 0.005 when material emissivity is larger than 0.80 (? ? 0.80). However, when material emissivities are variable within the observed target, differences of effective emissivity between IUEM-SVF and TUF-3D become larger, e.g., RMSD of 0.010. When the effect of geometry is not considered and a mixed pixel emissivity is defined, the difference is even much larger (i.e. 0.02) and this difference increases with the decrease of sky view factor. Thus, the geometry effect should be considered in the determination of effective emissivity. Effective emissivity derived from IUEM-SVF was used to retrieve urban surface temperature from a nighttime ASTER thermal infrared image. Promising results were achieved in comparison with standard LST products retrieved with the Temperature and Emissivity Separation (TES) algorithm. IUEM-SVF shows promise as a means to improve the accuracy of urban surface temperature retrieval. The effect of thermal heterogeneity on the effective emissivity was also evaluated by TUF-3D, and results show that the thermal heterogeneity cannot be neglected since the RMSD between the effective emissivity based on TUF-3D and IUEM-SVF is relatively large.
机译:这项研究旨在评估城市几何形状对城市地区发射率和地表温度反演的影响。进一步增强了基于天空视角因子(IUEM-SVF)的改进的城市发射率模型,以考虑离开城市机盖的所有辐射贡献,包括(i)瞬时视场(IFOV)中所有面的发射; (ii)从所有方面反射周围方面的发射; (iii)发射的和反射的辐射在复杂的3D城市物体阵列中的多次反射(散射)的传播。使用微型辐射传输和能量平衡模型:3-D中的城市面温度(TUF-3D),评估了IUEM-SVF得出的有效发射率。当城市面具有均匀的发射率和温度时,IUEM-SVF表现良好;例如,当材料的发射率大于0.80(?0.80)时,均方根偏差(RMSD)小于0.005。然而,当材料发射率在所观察的目标内变化时,IUEM-SVF和TUF-3D之间的有效发射率差异变大,例如,RMSD为0.010。当不考虑几何形状的影响并且定义了混合像素发射率时,该差异甚至更大(即0.02),并且该差异随着天空视角因子的减小而增大。因此,在确定有效发射率时应考虑几何效应。来自IUEM-SVF的有效发射率用于从夜间ASTER热红外图像检索城市表面温度。与通过温度和发射率分离(TES)算法检索到的标准LST产品相比,取得了可喜的结果。 IUEM-SVF有望将其作为提高城市地表温度反演精度的一种手段。 TUF-3D还评估了热异质性对有效发射率的影响,结果表明,由于基于TUF-3D的有效发射率与IUEM-SVF之间的RMSD相对较大,因此不能忽略热异质性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号