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The Impact of Insect Screens and Ventilation Openings on the Greenhouse Microclimate

机译:昆虫屏风和通风口对温室小气候的影响

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摘要

The objective of this work was to experimentally investigate the influence of vent type (side, roof, or both) and of anti-aphid insect screens on airflow, air temperature, and air vapor pressure deficit distribution in a round arch, mono-span greenhouse with vertical side walls. The greenhouse was equipped with two side roll-up vents and a flap roof vent. A tomato crop planted in double rows was cultivated inside the greenhouse. The three components of air velocity were measured by a 3-D sonic anemometer, and the air temperature and relative humidity were simultaneously recorded at several positions inside the greenhouse. Concerning the effect of insect screens, it was found that the mean value of the normalized air velocity was 58% lower in the greenhouse with insect screens on the side vent openings than in the case of a greenhouse without screens. Furthermore, the spatial heterogeneity of the microclimate variables was reduced with screens in the vent openings. When the ventilation was provided by side openings only, the air velocity inside the greenhouse was characterized by a strong air current near the greenhouse ground and low air velocity near the roof; when the ventilation was provided by roof vents, a circulating current prevailing at the center of the greenhouse was observed. The combined use of roof and side openings increased air velocity and decreased air temperature inside the greenhouse but also increased the spatial heterogeneity of the greenhouse microclimate compared to the cases with side or roof vents only. The most homogeneous climate conditions were achieved with the use of roof openings only. The results of this study provide a better understanding of the plant environment behavior under different vent configurations and a high-resolution database for validating on-going efforts with computer simulations.
机译:这项工作的目的是通过实验研究圆形拱门,单跨温室中通风孔类型(侧面,屋顶或两者)和抗蚜虫防虫网对气流,空气温度和空气蒸气压亏缺分布的影响。与垂直的侧壁。温室配有两个侧面的卷式通风口和一个顶棚通风口。在温室内种植了双行种植的番茄作物。用3-D声波风速计测量风速的三个分量,并同时记录温室内几个位置的空气温度和相对湿度。关于防虫网的效果,发现在侧面通风孔处有防虫网的温室中,标准化风速的平均值比没有防虫网的温室低58%。此外,通气孔中的筛网减少了小气候变量的空间异质性。当仅通过侧部开口提供通风时,温室内部的风速以温室地面附近的强气流和屋顶附近的低风速为特征。当通过屋顶通风口提供通风时,观察到了在温室中心普遍存在的循环电流。与仅具有侧面或屋顶通风口的情况相比,屋顶和侧面开​​口的组合使用增加了温室内的空气速度并降低了温室温度,但同时也增加了温室微气候的空间异质性。仅使用屋顶开口即可达到最均匀的气候条件。这项研究的结果可以更好地了解不同通风口配置下的植物环境行为,并提供一个高分辨率数据库,用于通过计算机仿真验证正在进行的工作。

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  • 来源
    《Transactions of the ASABE》 |2008年第6期|p.2151-2165|共15页
  • 作者单位

    The authors are Constantinos Kittas, Professor, and Nikolaos Katsoulas, Lecturer, Laboratory of Agricultural Constructions and Environmental Control, Department of Agriculture Crop Production and Rural Environment, School of Agricultural Sciences, University of Thessaly, Volos, Magnesia, Greece;

    Thomas Bartzanas, ASABE Member Engineer, Researcher, Center for Research and Technology of Thessaly, Institute of Technology and Management of Agricultural Ecosystems, Volos, Greece;

    Marie Mermier, Researcher, INRA, Avignon, France;

    and Thierry Boulard, Researcher, INRA, Sophia Antipolis, France. Corresponding author: Constantinos Kittas, Laboratory of Agricultural Constructions and Environmental Control, Department of Agriculture Crop Production and Rural Environment, School of Agricultural Sciences, University of Thessaly, Fytokou Str., N. Ionia-Volos, GR-38446, Magnesia, Greece;

    phone: +30-24210-93158;

    fax: +30-24210-93234;

    e-mail: ckittas@uth.gr.;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Airflow, Air temperature, Air velocity components, Climate heterogeneity, Greenhouse ventilation, Sonic anemometer;

    机译:气流;气温;风速成分;气候异质性;温室通风;声速风速计;

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