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土壤水变动对冬小麦生长产量及水分利用效率的影响 被引量:29
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作者 高志红 陈晓远 刘晓英 《农业工程学报》 EI CAS CSCD 北大核心 2007年第8期52-58,共7页
采用盆栽和管栽试验,研究土壤水变动对冬小麦地上部生长、产量及水分利用效率的影响。结果表明:株高对水分胁迫的发生时期较敏感,叶面积对水分胁迫的持续时间更敏感,与其他水分胁迫处理相比,分蘖至拔节阶段水分胁迫处理的株高最小,分蘖... 采用盆栽和管栽试验,研究土壤水变动对冬小麦地上部生长、产量及水分利用效率的影响。结果表明:株高对水分胁迫的发生时期较敏感,叶面积对水分胁迫的持续时间更敏感,与其他水分胁迫处理相比,分蘖至拔节阶段水分胁迫处理的株高最小,分蘖至孕穗阶段水分胁迫处理的叶面积最小。冠重主要受胁迫持续时间的影响,分蘖至孕穗阶段水分胁迫处理的冠重最小。水分胁迫对冬小麦穗数和WUE的影响基本上表现为正效应,而对每穗粒数、千粒重及产量的影响则全部为负效应。在各水分胁迫处理中,拔节至孕穗阶段经中度水分胁迫后抽穗期复水的处理,产量最高,达到充分供水对照的62%;分蘖至拔节阶段经中度水分胁迫后孕穗期复水的处理,WUE最大。试验结果表明,冬小麦株高、叶面积及各产量要素对土壤水变动的响应存在差异。 展开更多
关键词 土壤水变动 冬小麦 冠生长 产量 水分利用效率
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作物生长对土壤水分变动的双重效应 被引量:7
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作者 刘建利 石元春 罗远培 《生态农业研究》 CSCD 1997年第1期18-21,共4页
阐述了植物对水分胁迫后复水的双重响应——滞后作用和补偿效应。水分胁迫对植物造成的不利影响,可以通过复水完全或者部分补偿,这取决于水分胁迫的程度和胁迫持续时间。植物在水分胁迫后是否存在补偿效应是目前国际上生物学研究与争论... 阐述了植物对水分胁迫后复水的双重响应——滞后作用和补偿效应。水分胁迫对植物造成的不利影响,可以通过复水完全或者部分补偿,这取决于水分胁迫的程度和胁迫持续时间。植物在水分胁迫后是否存在补偿效应是目前国际上生物学研究与争论的热点。从植物整体出发,利用对作物生长和水分关系已有的认识及作物生长对水分变动响应的2种效应,建立作物生长对水分经历反应的时间滞后模拟模型,是今后研究的一个重要方向。 展开更多
关键词 水分胁迫 土壤水变动 补偿生长
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黄土高原油松人工林土壤水分变动的人工神经网络模型研究
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作者 尹准生 唐孝甲 +3 位作者 卢佶 洪奕丰 陈伟 左松源 《华东森林经理》 2019年第2期67-70,76,共5页
依据黄土高原油松人工林试验样地林分情况,确定神经网络的输入变量和输出变量,利用2012—2015年的567组数据对网络模型进行训练和检验,构建了5∶q∶1的土壤水分变动的BP神经网络模型。结果表明:最适宜的网络结构为5∶6∶1,均方误差mse=0... 依据黄土高原油松人工林试验样地林分情况,确定神经网络的输入变量和输出变量,利用2012—2015年的567组数据对网络模型进行训练和检验,构建了5∶q∶1的土壤水分变动的BP神经网络模型。结果表明:最适宜的网络结构为5∶6∶1,均方误差mse=0.002645,总体拟合精度为96.78%,模拟检验拟合精度为94.44%。 展开更多
关键词 土壤水变动模型 人工神经网络 油松 黄土高原
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The Influence of Seasonal Snow on Soil Thermal and Water Dynamics under Different Vegetation Covers in a Permafrost Region 被引量:8
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作者 HANG Juan WANG Gen-xu +1 位作者 GAO Yong-heng WANG Yi-bo 《Journal of Mountain Science》 SCIE CSCD 2014年第3期727-745,共19页
Seasonal snow is one of the most important influences on the development and distribution of permafrost and the hydrothermal regime in surface soil. Alpine meadow, which constitutes the main land type in permafrost re... Seasonal snow is one of the most important influences on the development and distribution of permafrost and the hydrothermal regime in surface soil. Alpine meadow, which constitutes the main land type in permafrost regions of the Qinghai-Tibet Plateau, was selected to study the influence of seasonal snow on the temperature and moisture in active soil layers under different vegetation coverage. Monitoring sites for soil moisture and temperature were constructed to observe the hydrothermal processes in active soil layers under different vegetation cover with seasonal snow cover variation for three years from 2010 to 2012. Differences in soil temperature and moisture in areas of diverse vegetation coverage with varying levels of snow cover were analyzed using active soil layer water and temperature indices. The results indicated that snow cover greatly influenced the hydrothermal dynamics of the active soil layer in alpine meadows. In the snow manipulation experiment with a snow depth greater than 15 cm, the snow cover postponed both the freeze-fall and thawrise onset times of soil temperature and moisture in alpine LC(lower vegetation coverage) meadows and of soil moisture in alpine HC(higher vegetation coverage) meadows; however, the opposite response occurred for soil temperatures of alpine HC meadows,where the entire melting period was extended by advancing the thaw-rise and delaying the freeze-fall onset time of the soil temperature. Snow cover resulted in a decreased amplitude and rate of variation in soil temperature, for both alpine HC meadows and alpine LC meadows, whereas the distinct influence of snow cover on the amplitude and rate of soil moisture variation occurred at different soil layers with different vegetation coverages. Snow cover increased the soil moisture of alpine grasslands during thawing periods. The results confirmed that the annual hydrothermal dynamics of active layers in permafrost were subject to the synergistic actions of both snow cover and vegetation coverage. 展开更多
关键词 PERMAFROST Snow cover Vegetationcover Active soil layer Hydrothermal dynamics Synergistic action
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Soil Erosion Changes over the Past Five Decades in the Red Soil Region of Southern China 被引量:18
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作者 LIANG Yin LI Decheng +5 位作者 LU Xixi YANG Xuan PAN Xianzhang MU Huan SHI Deming ZHANG Bin 《Journal of Mountain Science》 SCIE CSCD 2010年第1期92-99,共8页
This paper reports the dynamic changes of soil and water loss in the red soil region of Southern China since the 1950s. The red soil region covers eight provinces: Jiangxi, Zhejiang, Fujian, Anhui, Hubei, Hunan, Guang... This paper reports the dynamic changes of soil and water loss in the red soil region of Southern China since the 1950s. The red soil region covers eight provinces: Jiangxi, Zhejiang, Fujian, Anhui, Hubei, Hunan, Guangdong and Hainan. From the 1950s to 1986, the annual rate of soil erosion increased by 3.4%. From 1986 to 1996 and from 1996 to 2000, the annual rates of soil erosion decreased by 2.0% and 0.32%, respectively. Field surveys showed that from 2000 to 2005, the area of soil and water loss decreased annually by 1.2%. This decrease was a result of large-scale erosion control activities across China. Although the eroded soil has been restored, the restoration process is very slow and full restoration will take a long time. Our report suggests that controlling soil and water loss is a challenging task, and additional measures must be taken to effectively control the soil erosion in the red soil region. 展开更多
关键词 red soil region soil and water loss dynamic change remote sensing field samplingsurvey
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A two-dimensional Richards equation solver based on CVODE for variably saturated soil water movement 被引量:2
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作者 TIAN FuQiang GAO Long HU HePing 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第12期3251-3264,共14页
A numerical model of two-dimensional soil water movement under surface drip irrigation condition was developed. The physical process of soil water movement is described by 2D Richards equation,and the upper boundary c... A numerical model of two-dimensional soil water movement under surface drip irrigation condition was developed. The physical process of soil water movement is described by 2D Richards equation,and the upper boundary condition is depicted by the improved moving ponded area boundary. The partial differential equation(PDE) is transformed into ordinary differential equations(ODEs) through spatial semi-discretization and numerically solved by an ordinary differential equation solver(CVODE) . The numerical and field experiments indicate the good performance of the model in terms of accuracy and efficiency. The model provides a useful tool for long-term simulation of soil water movement under surface drip irrigation. Also,the model can serve as a general 2D Richards equation solver for variably saturated soil water movement,which is named as TIVS model(Tsinghua Integrated Variably Saturated soil water movement model). 展开更多
关键词 surface drip irrigation moving ponded area boundary CVODE Richards equation
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番茄制种应加强防治脐腐病
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《党的建设》 2008年第4期53-53,共1页
在番茄制种中,脐腐病每年都有发生,既降低了种子产量,又影响了种子质量(发芽率、色泽),使生产者的利益受到严重损失。现将其病因及防治措施介绍如下:
关键词 脐腐病 制种 防治措施 番茄 种子产量 发芽率 种子质量 果实 土壤水变动 生产者
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