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Modelling Crop Transpiration in Greenhouses: Different Models for Different Applications

机译:在温室中造型作物蒸腾:不同应用的不同模型

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Models for the evapotranspiration of greenhouse crops are needed both for accurate irrigation and for the simulation or management of the greenhouse climate. For this purpose, several evapotranspiration models have been developed and presented, all based on the Penman–Monteith approach, the “big-leaf” model. So, on the one hand, relatively simple models have been developed for irrigation scheduling purposes, and on the other, “knowledge–mechanistic” models have been developed for climate control purposes. These models differ in the amount of detail about variables, such as stomatal and aerodynamic conductance. The aim of this review paper is to present the variables and parameters affecting greenhouse crop transpiration, and to analyze and discuss the existing models for its simulation. The common sub-models used for the simulation of crop transpiration in greenhouses (aerodynamic and stomatal conductances, and intercepted radiation) are evaluated. The worth of the multilayer models for the simulation of the mass and energy exchanges between crops and air are also analyzed and discussed. Following the presentation of the different models and approaches, it is obvious that the different applications for which these models have been developed entail varying requirements to the models, so that they cannot always be compared. Models developed in different locations (high–low latitudes or for closed or highly ventilated greenhouses) are discussed, and their sensitivity to different parameters is presented.
机译:需要精确灌溉和对温室气候的模拟或管理所需要的温室作物蒸散的模型。为此目的,已经开发出了几种蒸发型号,并基于Penman-Monteith方法,“大叶”模型。因此,一方面,已经开发了相对简单的模型,用于灌溉调度目的,另一方面,已经开发了“知识机制”模型,用于气候控制目的。这些模型的细节数量不同,例如气孔和空气动力测量。本综述论文的目的是介绍影响温室作物蒸腾的变量和参数,并分析和讨论其模拟的现有模型。评估用于模拟绿色屋(空气动力学和气孔导电和截取的辐射)模拟作物蒸腾的常见子模型。还分析并讨论了用于模拟作物和空气之间的质量和能量交换的多层模型的价值。在呈现不同的模型和方法之后,很明显,这些模型已经开发的不同应用需要不同的要求对模型来说,因此不能总是进行比较。讨论了在不同位置(高纬度或闭合或高度通风或高度通风的温室)开发的模型,并提出了对不同参数的敏感性。

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