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Determining the influence of Itaipu Lake on thermal conditions for soybean development in adjacent lands

机译:确定伊泰普湖对邻近土地大豆生长的热条件的影响

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摘要

Previous numerical simulations have suggested that the area adjacent to Itaipu Lake in Southern Brazil is significantly affecting the local thermal regime through development of a lake breeze. This has led to concerns that soybean growth and development, and consequently yield, has been affected by the creation of the artificial lake in this important agricultural region, but a systematic climatological study of the thermal effects of Itaipu Lake has not been conducted. The objectives of this study were to assess the spatial pattern of minimum and maximum air temperatures in a 10-km-wide area adjacent to Itaipu Lake as affected by distance from the water. Measurements were conducted over 3 years in seven transects along the shore of Itaipu Lake, with five weather stations placed in each transect. Phenological observations in soybean fields surrounding the weather stations were also conducted. Generalized additive models for location, scale, and shape (GAMLSS) analysis indicated no difference in the temperature time series as distance from water increased. Semivariograms showed that the random components in the air temperature were predominant and that there was no spatial structure to the signal. Wind direction measured over the three growing seasons demonstrated that, on average, the development of a lake breeze is limited to a few locations and a few hours of the day, supporting the temporal and spatial analysis. Phenological observations did not show differences in the timing of critical soybean stages. We suggest that the concerns that soybean development is potentially affected by the presence of Itaipu Lake are not supported by the thermal environment observed.
机译:先前的数值模拟表明,巴西南部伊泰普湖附近的区域通过湖风的发展极大地影响了当地的热力状况。这引起了人们的担忧,即在这个重要的农业地区,人工湖的形成影响了大豆的生长发育,进而影响了产量,但尚未对伊泰普湖的热效应进行系统的气候学研究。这项研究的目的是评估伊泰普湖附近10公里宽地区受水面距离影响的最低和最高气温的空间格局。在伊泰普湖沿岸的七个样地中进行了为期3年的测量,每个样地中都设有五个气象站。还对气象站周围的大豆田进行了物候观测。用于位置,尺度和形状(GAMLSS)分析的通用加性模型表明,随着距水距离的增加,温度时间序列没有差异。半变异函数图表明,气温中的随机成分占主导地位,并且信号没有空间结构。在三个生长季节测量的风向表明,平均而言,微风的发展仅限于几个地点和一天中的几个小时,从而支持了时空分析。物候观察未显示关键大豆阶段的时间差异。我们建议,伊泰普湖的存在可能会影响大豆生长的担忧不能得到所观察到的热环境的支持。

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