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Summer Production of Lettuce, and Microclimate in High Tunnel and Open Field Plots in Kansas

机译:堪萨斯州夏季生菜的生产以及高空和田间小气候

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High tunnels have been shown to be a profitable season-extending production tool for many horticultural crops. Production of cool-season vegetables during the hot summer months represents a challenge to market growers in the midwestern United States. Two experiments were conducted to investigate the microclimate and production of eight leaf lettuce (Lactuca sativa) cultivars in high tunnels and open fields, using unshaded and shaded (39% white shadecloth) tunnels in Summer 2002 and 2003, respectively. Wind speed was consistently lower in high tunnels with the sidewalls and endwalls open. An unshaded high tunnel resulted in ail increase of daily maximum and minimum air temperatures by approximate to 0.2 and 0.3 degrees C, respectively, in comparison with the open field. In contrast, daily maximum air temperature in a shaded high tunnel decreased by 0.4 degrees C, while the daily minimum air temperature was higher than that in the open field by 0.5 degrees C. Using high tunnels did not cause a marked change in relative humidity compared with the open field. When using shadecloth, the daily maximum soil temperature was lowered by 3.4 degrees C and the leaf surface temperature was reduced by 1.5 to 2.5 degrees C. The performance of lettuce during summer trials varied significantly among cultivars. Unshaded high tunnels generally led to more rapid bolting and increased bitterness of lettuce compared with the open field. Lettuce grown in high tunnels covered by shadecloth had a lower bolting rate, but decreased yield relative to the open field. Based on our results, summer lettuce production would not be recommended in high tunnels or open fields in northeastern Kansas, although the potential of shaded high tunnels deserves further studies. Reference crop evapotranspiration (ET0) was estimated from meteorological data on a daily basis using the FAO-56 method. The ET0 was lowest in the shaded high tunnel and was the highest in the open field. Relatively lower ET0 in high tunnels indicated a likely lower water requirement and therefore improved water use efficiency compared with the open field.
机译:高通道已被证明是许多园艺作物获利的延长季节的生产工具。在炎热的夏季,凉爽季节蔬菜的生产对美国中西部的市场种植者构成了挑战。进行了两个实验,分别在2002年夏季和2003年夏季,使用无阴影和阴影(39%的白色遮阳布)隧道,研究了高隧道和开阔地上的8种莴苣(小叶莴苣)品种的微气候和产量。高空隧道的侧壁和端壁打开时,风速始终较低。与空旷地带相比,没有遮挡的高空隧道导致每日最高和最低气温分别升高了大约0.2和0.3摄氏度。相比之下,阴凉的高空隧道中的每日最高气温降低了0.4摄氏度,而空旷的每日最低气温比旷野中的每日最低气温高出0.5摄氏度。与较高的隧道相比,使用高海拔的隧道不会引起相对湿度的明显变化与开放领域。当使用遮阳布时,每日最高土壤温度降低了3.4摄氏度,叶表面温度降低了1.5至2.5摄氏度。夏季试验期间,莴苣的表现因品种而异。与空旷的田地相比,没有遮挡的高空隧道通常导致生菜螺栓更快速,生菜的苦味增加。在被遮布覆盖的高大隧道中生长的生菜的抽rate率较低,但相对于空地而言,产量下降。根据我们的研究结果,不建议在堪萨斯州东北部的高空隧道或空旷地中使用夏季生菜,尽管有阴影的高空隧道的潜力值得进一步研究。使用FAO-56方法每天根据气象数据估算参考作物的蒸散量(ET0)。 ET0在带阴影的高空隧道中最低,在空旷地区最高。高空隧道中的ET0相对较低,这表明可能需要较低的水量,因此与露天田地相比,可以提高用水效率。

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