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Trunk sap flow characteristics during two growth stages of apple tree and its relationships with affecting factors in an arid region of northwest China.

机译:中国西北干旱区苹果树两个生长期的树干液流特征及其与影响因子的关系。

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摘要

Sap flow is an important parameter for orchard irrigation scheduling. According to seasonal variation of trunk diameter and leaf area index (LAI), the whole growth stage of apple tree was divided into stage I (rapid leaf and trunk growing) and stage II (rapid fruit enlarging and maturing). Trunk sap flow (SF) of apple tree irrigated with 100% evapotranspiration (ET) was measured using the compensation heat-pulse method, and meteorological variables, soil water content ( theta ), LAI, maximum daily stem shrinkage (MDS) and leaf water potential ( phi l) were monitored during the whole stages from 2008 to 2010 in an apple orchard of arid region of northwest China. The relationships between SF and affecting factors were also analyzed. The results show that LAI increased rapidly at stage I, and SF was mainly determined by vapor pressure deficit (VPD), LAI and reference evapotranspiration (ET0). However, LAI was relatively stable at stage II, and SF was affected by VPD, ET0 and theta . Under the condition of border irrigation with 100% ET, tree SF could be calculated using VPD, ET0 and LAI at stage I, and VPD, ET0 and theta at stage II. Moreover, SF had significantly negative linear relationship with phi l and exponential relationship with MDS. Therefore, it is beneficial for more accurate modeling of truck sap flow and orchard water management under border irrigation by analyzing major factors affecting sap flow during two stages of apple tree.
机译:汁液流量是果园灌溉计划的重要参数。根据树干直径和叶面积指数(LAI)的季节变化,将苹果树的整个生长阶段分为第一阶段(叶片和树干快速生长)和第二阶段(果实快速成熟)。使用补偿热脉冲法测量了灌溉量为100%蒸腾量的苹果树的树干液流(SF),并测量了气象变量,土壤含水量(theta),LAI,最大日干缩率(MDS)和叶水在中国西北干旱地区苹果园中,从2008年到2010年的整个阶段监测电位(phi l )。 SF和影响因素之间的关系也进行了分析。结果表明,LAI在第一阶段迅速增加,SF主要由蒸气压亏缺(VPD),LAI和参考蒸散量(ET 0 )决定。然而,LAI在第二阶段相对稳定,SF受VPD,ET 0 和θ的影响。在100%ET边界灌溉的条件下,可以在第一阶段使用VPD,ET 0 和LAI以及在第一阶段使用VPD,ET 0 和θ来计算树木SF二。此外,SF与phi l 具有显着的负线性关系,与MDS呈指数关系。因此,通过分析影响苹果树两个阶段中树液流量的主要因素,有利于卡车树液流量和果园水管理的更精确建模。

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