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Soil temperature in the peanut pod zone with subsurface drip irrigation

机译:地下滴灌对花生荚区土壤温度的影响

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摘要

Maintaining soil temperatures at specified levels (below 29 C) in peanut (Arachis hypogaea L.) is vital to crop growth, development, and pod yield. Subsurface drip irrigation (SDI) systems are not designed to wet the soil surface. Possible lack of moisture in the pod zone could result in elevated soil temperatures that could be detrimental to the peanut crop. The objective of this study was to document the response of pod zone soil temperature when irrigated with a SDI system. Thermocouple sensorswere inserted at 5-cm soil depth in the crop row and at specified distances from the crop row in SDI and nonirrigated (NI) treatments. Maximum hourly and daily soil temperature data were measured at three locations, one in Virginia and two in Georgia. The maximum daily soil temperature decreased as plant canopy increased. During the first 50 d after planting (DAP), the average maximum soil temperature was 1 to 2 C cooler for both the SDI and NI treatments than the average maximum air temperature. From 50 DAP to harvest, the average maximum soil temperatures for SDI and NI treatments were 6 C cooler than the average maximum air temperature. During pod filling and maturation, the average maxiniuin soil temperature was about 5 C cooler (27 C) for SDI treatments than die maximum air temperature and 2 C cooler than the recommended 29 C. Soil temperature in the NI treatments did exceed 29 C during periods of drought but decreased to values similar to SDI treatments immediately following a rainfall event. Overall, SDI can maintain maximum soil temperatures below critical values (29 C) during peanut fruit initiation to crop harvest
机译:将花生(Arachis hypogaea L.)的土壤温度保持在指定水平(低于29 C)对于作物生长,发育和荚果产量至关重要。地下滴灌(SDI)系统并非旨在润湿土壤表面。豆荚区可能缺少水分,可能导致土壤温度升高,这可能对花生作物有害。这项研究的目的是记录使用SDI系统灌溉时豆荚区土壤温度的响应。在SDI和非灌溉(NI)处理中,将热电偶传感器插入土壤行的土壤深度为5 cm处,并与作物行保持指定的距离。在三个地点测量了每小时和每天的最高土壤温度数据,一个地点在弗吉尼亚州,两个地点在乔治亚州。最高每日土壤温度随植物冠层的增加而降低。在播种后的前50天(DAP),SDI和NI处理的平均最高土壤温度比平均最高气温低1至2C。从50 DAP到收获,SDI和NI处理的平均最高土壤温度比平均最高气温低6C。在豆荚灌装和成熟过程中,SDI处理的平均最高土壤温度比最高气温低约5 C(27 C),比建议的最高温度低2C。在NI处理中,土壤温度在此期间确实超过29 C干旱,但降雨后立即下降到类似于SDI处理的值。总体而言,在花生果实开始收获到作物收获期间,SDI可以将最高土壤温度保持在临界值(29 C)以下。

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