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Response of Wetland Evapotranspiration to Land Use/Cover Change and Climate Change in Liaohe River Delta, China

机译:湿地蒸散对辽河三角洲土地利用/封面变化及气候变化的回应

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摘要

This study aims to investigate the effects of land use/cover change (LUCC) and climate change on wetland evapotranspiration (ET), and to identify the importance of the main effect factors in the spatiotemporal dynamics of ET. In the wetland of Liaohe River Delta, China, the ET of eight growing seasons during 1985−2017 was estimated using the surface energy balance algorithm for land (SEBAL) model with Landsat and meteorological data. Results show that the average relative error of regional ET estimated by the SEBAL model is 9.01%, and the correlation coefficient between measured and estimated values is 0.61, which indicates that the estimated values are reliable. This study observed significant spatial and temporal variations in ET across the region of interest. The distribution of the average and relative change rate of daily ET in the study area showed bimodal characteristics, that is, the lowest trough occurred in 2005, whereas crests occurred in 1989 and 2014. Simultaneously, the daily ET varied with the land use/cover area. Regional daily ET displays highly heterogeneous spatial distribution, that is, the ET of different land uses/cover types in descending order is as follows: water body, wetland vegetation, non-wetland vegetation, and non-vegetation (except water area). Therefore, the spatial pattern of ET is relevant to the land use/cover types to some extent. In addition, the temporal variation of wetland ET is closely related to landscape transformation and meteorological factor change. A strong correlation was found between ET and the weighted values of meteorological factors, with a correlation coefficient of 0.69. Meanwhile, the annual fluctuations of daily ET and the weighted values were relatively similar. Therefore, the findings highlight the importance of using cheap and readily available remote sensing data for estimating and mapping the variations in ET in coastal wetland.
机译:本研究旨在调查土地使用/覆盖变化(LUCC)和气候变化对湿地蒸散(ET)的影响,并确定ET时空动力学中主要效应因素的重要性。在辽河三角洲湿地,在中国,1985 - 2017年期间的八个生长季节估计了利用Landsat和气象数据的土地能量平衡算法估算了陆地(Sebal)模型。结果表明,SEBAL模型估计的区域ET的平均相对误差为9.01%,测量值与估计值之间的相关系数为0.61,表明估计值是可靠的。本研究观察到跨越感兴趣区域的ET的显着空间和时间变化。在研究区域中的每日ET的平均和相对变化率的分布显示了双峰特征,即2005年发生的最低槽,而火冠发生在1989年和2014年。同时,每日ET在土地使用/封面时变化区域。区域每日ET显示出高度异构的空间分布,即降序的不同土地使用/覆盖类型如下:水体,湿地植被,非湿地植被和非植被(除水域除外)。因此,ET的空间模式与土地使用/覆盖类型有关。此外,湿地Et的时间变化与景观转化和气象因子变化密切相关。在ET和气象因子的加权值之间发现了强烈的相关性,相关系数为0.69。同时,每日ET和加权值的年度波动相对相似。因此,调查结果突出了使用便宜的和易于获得的遥感数据来估算和绘制沿海湿地等差异的重要性。

著录项

  • 作者

    Manqing Liu; Deyong Hu;

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  • 年度 2019
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  • 原文格式 PDF
  • 正文语种 eng
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