Application of the surface layer energy balance model for calculating of the evaporation from water objects

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Abstract

Formulation of the problem. When solving hydrological problems associated with the water balance of water bodies and the possibility of economic use of their water resources, an important problem is the accurate determination of evaporation from the water surface, which is the main component of water losses. Review of previous publications and studies.Currently, many indirect and empirical methods for calculating evaporation from the surface of soil, water and vegetation, developed by domestic and foreign scientists: M.I. Budyko, V.S. Mezentsev, A.R. Konstantinov, N.N. Ivanov, Penman-Monteith and others, are used. Most empirical methods do not have universal applicability, since, in most cases, they cannot take into account the features of various underlying surfaces and hydrometeorological conditions that affect evaporation processes. The only acceptable methods for estimating actual or potential evaporation can only be parametric models based on a numerical solution of the surface heat balance equation. One of such models is the atmospheric surface layer model – model SLEB, created at Odessa State Ecological Environmental University. Purpose. The purpose of this study is to obtain quantitative estimates of changes with evaporation of water surfaces with SLEB model and compare them with the measured and model data of analogous methods obtained by other authors (Ivanova, Penman), for example, a freshwater lake Yalpug. Methods. For research, a parametric energy balance model of the atmospheric surface layer SLEB, which is used standard meteorological information, was used. The main advantage of this model is the high accuracy of determining the heat expenditure for evaporation in the calculation of mass-heat transfer between the underlying surface and the atmosphere at the micro- and mesoscales. The SLEB model is applicable for all types of underlying surfaces characteristic of the territory of Ukraine. Results. The value of evaporation from unit area of the water surface of Lake Yalpug calculating by model SLEB was obtained for the first time taking into account the development of wave formation on the surface of the lake, which changes the hydrodynamic properties of the water surface and the aerodynamics of the air flow. Accounting for the effect of wind waves on the vast lake surface allowed us to obtain results almost equal to the measured evaporation from the pool surface. The results showed that the calculated values of evaporation from the water surface by the methods of Penman and Ivanov overestimate the amount of evaporated moisture compared with the values measured and calculated by the SLEB model. Conclusions. Application of the SLEB model allows to increase the quantitative estimation accuracy of the water balance main component – water losses due to evaporation from the water bodies water surface, which, in turn, can increase the water resources management efficiency of natural water bodies for purpose of their rational use for drinking water supply and land irrigation.
地表能量平衡模型在计算水体蒸发中的应用
问题的表述。在解决与水体水平衡和水资源经济利用可能性相关的水文问题时,一个重要的问题是准确确定水面蒸发,这是水损失的主要组成部分。回顾以前的出版物和研究。目前,国内外科学家提出了许多计算土壤、水和植被表面蒸发量的间接和经验方法:M.I. Budyko、V.S. Mezentsev、A.R. Konstantinov、N.N. Ivanov、Penman-Monteith等。大多数经验方法不具有普遍适用性,因为在大多数情况下,它们不能考虑到影响蒸发过程的各种下垫面和水文气象条件的特征。估计实际或潜在蒸发的唯一可接受的方法只能是基于表面热平衡方程数值解的参数化模型。其中一种模式是由敖德萨州立生态环境大学创建的大气表层模式——SLEB模式。本研究的目的是利用SLEB模型获得水面蒸发变化的定量估计,并将其与其他作者(Ivanova, Penman)获得的类似方法的实测数据和模型数据进行比较,例如淡水湖yalpug。研究采用标准气象信息,建立了大气表层SLEB的参数化能量平衡模型。该模式的主要优点是在计算下垫面与大气之间的微、中尺度质热传递时,计算蒸发热耗的精度较高。SLEB模型适用于乌克兰境内所有类型的下垫面特征。首次利用SLEB模型计算了雅尔布格湖单位面积水面蒸发量,考虑了湖面波浪形成的发展对水面水动力特性和气流气动特性的影响。考虑到风波对湖面的影响,我们得到的结果几乎等于对湖面蒸发量的测量。结果表明,与SLEB模型的实测值和计算值相比,Penman和Ivanov方法计算的水面蒸发量高估了蒸发水分的量。SLEB模型的应用可以提高水平衡主要成分水体水面蒸发损失的定量估算精度,从而提高自然水体的水资源管理效率,使其合理用于饮用水供应和土地灌溉。
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