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The influence of wind speed on infrared temperature in impervious surface areas based on in situ measurement data

机译:基于原位测量数据的风速对不透水表面红外温度的影响

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摘要

Wind perturbations can cause a relatively rapid decay in infrared temperature, thus resulting in abnormal spatial patterns of infrared temperature in urban areas and the subsequent reduction in the reliability of infrared temperature measurements. To increase the reliability of such measurements, the effects of wind speed must be evaluated and removed. However, studies on the quantitative estimation of wind speed effects on infrared temperature are limited. In this study, in situ infrared temperature measurements and synchronous meteorological data were used to evaluate the influence of wind speed on in situ infrared temperature measurements of impervious surfaces. Five different impervious surfaces were selected in this study. The technical schemes are proposed for quantitative estimation of wind speed effects: (1) the residual-based method from the diurnal temperature cycle model was proposed to estimate the infrared temperature decay (ITD) due to wind fluctuations; (2) quantile regression method was introduced to define the relationship between wind speed fluctuations and the ITD; and (3) An improved probabilistic prediction interval as well as a ratio method were developed to estimate the magnitude and duration of the ITD. The results indicated that relative extreme wind speed (EWS) was significantly correlated with the range of ITD over 5-min intervals; the hourly decay rate and impact duration of ITD varied with changes in relative wind speed and impervious surface type; and the impact duration of ITD increased with an increase in the relative EWS and lasted more than 1.3 h for the studied impervious surfaces. The above findlings provide us a guidance for in situ measurement of infrared temperature and could be utilized for correcting thermal infrared images.
机译:风的扰动会引起红外温度的相对快速衰减,从而导致市区中红外温度的空间格局异常,进而降低红外温度测量的可靠性。为了提高此类测量的可靠性,必须评估并消除风速的影响。然而,关于风速对红外温度影响的定量估计的研究是有限的。在这项研究中,使用原位红外温度测量和同步气象数据来评估风速对不透水表面原位红外温度测量的影响。在这项研究中选择了五个不同的不透水表面。提出了对风速影响进行定量估算的技术方案:(1)提出了基于昼夜温度循环模型的残差法估算风速波动引起的红外温度衰减(ITD); (2)引入分位数回归方法来定义风速波动与ITD之间的关系; (3)开发了一种改进的概率预测间隔以及比率方法来估计ITD的大小和持续时间。结果表明,相对极速(EWS)与5分钟间隔内ITD的范围显着相关; ITD的小时衰减率和冲击持续时间随相对风速和不透水面类型的变化而变化; ITD的冲击持续时间随着相对EWS的增加而增加,并且对于所研究的不透水表面持续超过1.3 h。以上发现为我们提供了红外温度原位测量的指南,可用于校正红外热图像。

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