...
首页> 外文期刊>Hydrology and Earth System Sciences >Matching the Budyko functions with the complementary evaporation relationship: consequences for the drying power of the air and the Priestley-Taylor coefficient
【24h】

Matching the Budyko functions with the complementary evaporation relationship: consequences for the drying power of the air and the Priestley-Taylor coefficient

机译:将Budyko函数与互补的蒸发关系相匹配:空气干燥能力和Priestley-Taylor系数的后果

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The Budyko functions B-1(Phi(p))are dimensionless relationships relating the ratio E/P (actual evaporation over precipitation) to the aridity index Phi(p) = E-p/P (potential evaporation over precipitation). They are valid at catchment scale with E-p generally defined by Penman's equation. The complementary evaporation (CE) relationship stipulates that a decreasing actual evaporation enhances potential evaporation through the drying power of the air which becomes higher. The Turc-Mezentsev function with its shape parameter lambda, chosen as example among various Budyko functions, is matched with the CE relationship, implemented through a generalised form of the advection-aridity model. First, we show that there is a functional dependence between the Budyko curve and the drying power of the air. Then, we examine the case where potential evaporation is calculated by means of a Priestley-Taylor type equation (E-0) with a varying coefficient alpha(0). Matching the CE relationship with the Budyko function leads to a new transcendental form of the Budyko function B-1'(Phi(0)) linking E/P to Phi(0) = E-0/P. For the two functions B-1(Phi(p)) and B-1'(Phi(0) ) to be equivalent, the Priestley-Taylor coefficient alpha(0) should have a specified value as a function of the Turc-Mezentsev shape parameter and the aridity index. This functional relationship is specified and analysed.
机译:Budyko函数B-1(Phi(p))是无量纲关系,将比率E / P(实际蒸发量超过降水量)与干旱指数Phi(p)= E-p / P(潜在降水量蒸发量)联系起来。它们在流域尺度上有效,通常由Penman方程定义E-p。互补蒸发量(CE)关系规定,减少的实际蒸发量会通过空气的干燥能力提高潜在的蒸发量,而空气的干燥能力会变得更高。从各种Budyko函数中选择的具有形状参数lambda的Turc-Mezentsev函数与CE关系相匹配,并通过对流-干旱模型的广义形式实现了CE关系。首先,我们表明Budyko曲线与空气的干燥能力之间存在函数相关性。然后,我们研究了通过具有可变系数alpha(0)的Priestley-Taylor型方程(E-0)计算潜在蒸发的情况。将CE关系与Budyko函数匹配会导致Budyko函数B-1'(Phi(0))的新超越形式,它将E / P链接到Phi(0)= E-0 / P。为了使两个函数B-1(Phi(p))和B-1'(Phi(0))等价,Priestley-Taylor系数alpha(0)应具有一个指定值,作为Turc-Mezentsev的函数形状参数和干旱指数。明确并分析了这种功能关系。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号