首页> 外文期刊>Transactions of the ASABE >DESIGN AND CONSTRUCTION OF A PRECISION WEIGHING LYSIMETER IN SOUTHEAST COLORADO
【24h】

DESIGN AND CONSTRUCTION OF A PRECISION WEIGHING LYSIMETER IN SOUTHEAST COLORADO

机译:科罗拉多州东南部精密称重立体计的设计与施工

获取原文
获取原文并翻译 | 示例
           

摘要

Accurate estimates of crop evapotranspiration (ET) are needed to effectively manage irrigation resources in the Arkansas River basin in Colorado and to maintain compliance with the Arkansas River compact with Kansas. This was a major impetus for the construction of a precision weighing lysimeter in the Arkansas River basin at the Colorado State University (CSU) Arkansas Valley Research Center (AVRC) near Rocky Ford, Colorado. The objective of this article is to describe the design and construction of the weighing lysimeter and characterize its performance and unique features. The main components of the lysimeter facility are the foundation, the scale system, the soil monolith tank, and the outer tank that houses the aforementioned components. The foundation, which was 4.12 m below the ground surface, consisted of a reinforced concrete slab 2.00 m wide by 6.31 m long and 0.20 m thick that was anchored to six square shaft helical anchors. The outer tank was secured onto the foundation and had a rectangular floor area of 6.10 m x 1.79 m (10.92 m(2)), an interior vertical clearance of 2.15 m, and walls made of reinforced 8 mm thick steel plates. The floor scale system (mechanical levers and load cell) was installed inside the outer tank and had a gross capacity of 17 Mg. The monolith tank (1.50 m x 1.50 m area, 2.44 m depth, 10 mm steel walls) containing an undisturbed soil profile was set on the scale system. The lysimeter facility was installed in the middle of a 3.5 ha field. Calibration of the scale system resulted in a linear response (R-2 = 1.000), with an equivalent conversion coefficient (slope) of 151.09 mm H2O (mV V-1)(-1). The sensitivity of the scale system was 0.023 mm of water, which is sufficient for measuring diurnal (15 min to hourly) changes in ET and soil water. Load cell readings taken at a frequency of 0.5 Hz were averaged in 15 min intervals (450 readings per 15 min) to filter out the measurement noise that was attributed to wind. The lysimeter was found to adequately detect ET, irrigation, and precipitation perturbations with an actively growing alfalfa hay crop (Medicago sativa L.) in 2011. The lysimeter facility is a state-of-the-art tool for quantifying ET of irrigated crops in the lower Arkansas basin in southeast Colorado.
机译:需要准确的作物蒸散估计(ET),以有效地管理科罗拉多州阿肯色州河流盆地的灌溉资源,并与堪萨斯州的阿肯色州河流统一维持遵守。这是在科罗拉多州立大学(CSU)阿肯色州河流盆地(CSU)Arkansas Valley研究中心(AVRC)的Arkansas River盆地精确称重Lysimeter建设了一个主要推动力。本文的目的是描述称重立体计的设计和结构,并表征其性能和独特的功能。 Lysimeter设施的主要部件是基础,刻度系统,土壤整体罐和容纳上述部件的外罐。在地面下方4.12米的基础,由钢筋混凝土板坯组成2.00米宽6.31米长,厚度为0.20米,锚定为六个方轴螺旋锚。外壳固定在基础上,矩形楼层面积为6.10米×1.79 m(10.92米(2)),内部垂直间隙为2.15米,墙壁由加强8毫米厚钢板制成。地板秤系统(机械杠杆和称号)安装在外壳内,并且具有17毫克的总容量。在比例系统上设定了含有未受干扰的土壤曲线的整体罐(1.50米×1.50米区域,2.44米深度,10毫米钢墙)。 Lysimeter设施安装在3.5公顷的田间中间。刻度系统的校准导致线性响应(R-2 = 1.000),其等效转换系数(斜率)为151.09mm H2O(MV V-1)( - 1)。刻度系统的敏感性为0.023mm水,足以用于测量ET和土壤水中的昼夜(15分钟至每小时)。以0.5Hz的频率为单位的负荷细胞读数在15分钟间隔(每15分钟450读数)中平均滤除归因于风的测量噪声。发现溶血镜通过2011年积极种植的苜蓿干草作物(Medicago Sativa L.)充分检测Et,灌溉和降水扰动。Lysimeter设施是定量灌溉作物的最先进的工具较低的阿肯色州盆地在东南科罗拉多州。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号