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Temperature and Light Characterization during Winter Production Season in High Tunnels in the Southwestern United States

机译:美国西南部高隧道冬季生产季节温度和光明表征

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摘要

Replicated temperature data from passively heated high tunnels are lacking, especially in the southwestern United States. Field studies were conducted over three seasons in two locations in New Mexico-a southern site in Las Cruces and a northern site in Alcalde-to characterize the crop environment in three high-tunnel designs during the winter growing season (October-March). High tunnels were 16 x 32 ft and oriented with the long edge running east to west. Heavyweight woven plastic covered the single-layer (SL) high-tunnel design. Double-layer designs (DL) were covered with a lightweight woven plastic on the bottom, followed by a second layer of the heavyweight plastic inflated with a fan. A heat sink was created using 16 55-gal barrels painted black, filled with water, and aligned along the north side of the double layer for the DLDB design. Soil temperature (3 inches deep) and air temperature (1 ft above the soil surface) were recorded inside the high tunnel, inside the high tunnel under a floating rowcover, and outside the high tunnel. In addition, photosynthetically active radiation (PAR) was recorded inside and outside the high tunnels during or near the winter solstice each year of the study. Daily air and soil temperature minimums were highest in the DLDB design and lowest in the SL design. Maximum air and soil temperatures did not significantly differ between high-tunnel designs, although the DLDB design measurements were consistently lower. During season 1, the SL design had significantly higher PAR transmission than the other two designs. In the northern location, the difference became insignificant during seasons 2 and 3, likely due to dust accumulation and plastic aging. In the southern location, the SL design maintained higher PAR transmission throughout the study, possibly due to plastic cleaning. Data collected in this study can help inform the decisions of high-tunnel growers and researchers in the region.
机译:从被动加热高隧道复制温度数据缺乏,尤其是在美国西南部。实地研究,在新墨西哥州,南部网站拉斯克鲁塞斯,并在北面的两个位置上的三个赛季进行阿尔卡尔德到在冬季生长季节(10月 - 月)表征作物环境三个高隧道设计。高隧道分别为16×32英尺,长边应东向西方向。重量级编织塑料覆盖的单层(SL)高隧道设计。双层设计(DL)上覆盖的轻质塑料编织在底部,接着重量级塑料与风扇充气的第二层。一种散热器,使用16 55加仑桶涂成黑色,充满水创建,并且沿着用于DLDB设计双层北侧对齐。土壤温度(3英寸深)和空气温度(1英尺土壤表面以上)中的浮动rowcover下记录的高隧道内,高隧道内,并且高隧道外。此外,光合有效辐射(PAR),或在每年的研究接近冬至记录内部和高隧道外。每日空气和土壤温度最低分别在DLDB设计最高和最低的SL设计。最大的空气和土壤温度没有显著高隧道设计之间的不同,虽然DLDB设计测量始终较低。在第一季中,SL设计有显著较高的PAR传输比其他两种设计。在北部位置,差异变得季节2和3中不显着,这可能是由于灰尘堆积和塑料老化。在南部位置,则SL设计维持较高的PAR传输在整个研究中,可能是由于塑料的清洗。收集的数据在这项研究可以帮助告知高隧道种植者和研究人员的决定在该地区。

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  • 来源
    《HortTechnology》 |2020年第2期|共9页
  • 作者单位

    Colorado State Univ Dept Hort &

    Landscape Architecture Ft Collins CO 80523 USA;

    New Mexico State Univ Dept Econ Appl Stat &

    Int Business Agr Biometr Se Las Cruces NM 88003 USA;

    New Mexico State Univ Sustainable Agr Sci Ctr Alcalde Alcalde NM 87511 USA;

    New Mexico State Univ Dept Agr Econ &

    Agr Business Las Cruces NM 88003 USA;

    New Mexico State Univ Dept Plant &

    Environm Sci Las Cruces NM 88003 USA;

    New Mexico State Univ Dept Plant &

    Environm Sci Las Cruces NM 88003 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 园艺;
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