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Review of optimum temperature, humidity, and vapour pressure deficit for microclimate evaluation and control in greenhouse cultivation of tomato: a review

机译:番茄温室培养中微气候评估和控制的最佳温度,湿度和蒸气压缺陷述评:综述

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摘要

Greenhouse technology is a flexible solution for sustainable year-round cultivation of Tomato (Lycopersicon esculentum Mill), particularly in regions with adverse climate conditions or limited land and resources. Accurate knowledge about plant requirements at different growth stages, and under various light conditions, can contribute to the design of adaptive control strategies for a more cost-effective and competitive production. In this context, different scientific publications have recommended different values of microclimate parameters at different tomato growth stages. This paper provides a detailed summary of optimal, marginal and failure air and root-zone temperatures, relative humidity and vapour pressure deficit for successful greenhouse cultivation of tomato. Graphical representations of the membership function model to define the optimality degrees of these three parameters are included with a view to determining how close the greenhouse microclimate is to the optimal condition. Several production constraints have also been discussed to highlight the short and long-term effects of adverse microclimate conditions on the quality and yield of tomato, which are associated with interactions between suboptimal parameters, greenhouse environment and growth responses.
机译:温室技术是可持续全年种植番茄(Lycopersicon Esculentum Mill)的灵活解决方案,特别是在具有不利影响气候条件或有限的土地和资源的地区。准确了解不同增长阶段的工厂要求,在各种光线条件下,可以为更具成本效益和竞争性生产的自适应控制策略设计有助于设计。在这种情况下,不同的科学出版物建议在不同的番茄生长阶段下的微气候参数的不同价值。本文提供了最佳,边缘和故障空气和根区温度,相对湿度和蒸气压赤字的详细摘要,以获得番茄的成功温室培养。要确定这三个参数的最优性度的隶属函数模型的图形表示包括在图中确定温室微气候的接近程度是最佳状态的视图。还讨论了几种生产约束,以突出对番茄,温室环境和生长反应之间的相互作用有关的不良微气候条件对番茄质量和产量的短期和长期影响。

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