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1.
ZY-2摇臂式喷头组合喷灌技术参数田间试验研究   总被引:2,自引:1,他引:1  
采用承雨筒测量法,对目前市场上常用的ZY-2摇臂式喷头采用18 m×18 m布置方式在不同气象条件下的组合喷灌主要技术参数开展田间试验研究.结果表明,组合喷灌均匀系数、喷洒水利用系数均在0.8以上,蒸发漂移损失的测试值为0.8%~14.28%.主要集中在4%~10%.构建了组合喷灌主要技术参数与主要气象因素、工作压力的...  相似文献   

2.
基于弹道理论有风条件下折射式喷头喷灌均匀度研究   总被引:3,自引:0,他引:3  
为计算有风条件下折射式喷头水量分布及喷灌均匀度,以弹道轨迹理论为基础,依据风速分布模型,建立有风条件下折射式单喷头水量分布计算方法,采用该方法模拟出有风条件下Nelson D3000型喷头倒挂安装方式下水量分布特性,通过与实测资料进行对比,验证了模拟具有较高的准确度,可应用于有风条件下折射式喷头水量分布计算。在此基础上,选用4.76 mm(24号)喷嘴直径,模拟出不工况下单喷头水量分布,计算出组合情况下喷灌均匀度,分析了风速、风向、喷头间距、工作压力和安装高度5种因素对喷灌均匀度的影响,并对蒸发漂移损失进行了分析。结果表明:95%的置信区间下,喷头布置间距对喷灌均匀度的影响最显著,其次是安装高度和喷头工作压力,风速和风向对喷灌均匀度影响不显著。风速、喷头工作压力和安装高度都会对蒸发漂移损失产生影响,其中工作压力影响最大。当选用Nelson D3000型喷头在风速小于6 m/s的环境下喷灌时,应将喷头安装间距固定在2.13~3.04 m范围内。另外,该安装间距范围内,喷头安装高度和喷灌压力增大后,喷灌均匀度增大的效果不明显,因此应采用低压喷灌以降低喷灌系统运行成本;考虑到较高的喷头安装高度会产生较大的蒸发漂移损失,喷灌时还应适当降低喷头安装高度,以提高喷灌水分利用率。  相似文献   

3.
Gross sprinkler evaporation losses (SELg) can be large and decrease irrigation application efficiency. However, it is not universally established how much of the SELg contributes to decrease the crop evapotranspiration during the sprinkler irrigation and how much are the net sprinkler losses (SELn). The components of SEL were the wind drift and evaporation losses (WDEL) and the water intercepted by the crop (IL). The gross WDEL (WDELg) and evapotranspiration (ET) were measured simultaneously in two alfalfa (Medicago sativa L.) plots, one being irrigated (moist, MT) and the other one not being irrigated (dry, DT). Catch can measurements, mass gains, and losses in the lysimeters and micrometeorological measurements were performed to establish net WDEL (WDELn) during the irrigation and net IL (ILn) after the irrigation as the difference between ETMT and ETDT. Also, equations to estimate ILn and net sprinkler evaporation losses (SELn) were developed. ILn was strongly related to vapor pressure deficit (VPD). SELn were 8.3 % of the total applied water. During daytime irrigations, SELn was 9.8 % of the irrigation water and slightly less than WDELg (10.9 %). During nighttime irrigations, SELn were slightly greater than WDELg (5.4 and 3.7 %, respectively). SELn was mainly a function of wind speed.  相似文献   

4.
基于LPM的摇臂式喷头水滴分布试验研究   总被引:2,自引:0,他引:2  
为了研究旋转式喷头水滴直径、速度及动能的分布规律,采用激光雨滴谱仪(Laser Precipitation Monitor,LPM)对3026B型摇臂式喷头分别在0.15,0.20,0.25,0.30,0.35 MPa这5种工作压力下进行了室内无风水滴分布试验,并根据最小二乘法原理建立了水滴分布数学模型.试验结果表明:3026B型摇臂式喷头的喷洒水滴直径与喷头距离之间总体上呈指数函数分布;直径在1~3 mm的水滴在5种压力下占整个喷洒区域的频率分别为56.80%,64.35%,72.14%,61.72%,40.17%;距喷头不同距离的水滴累积频率曲线斜率随着压力的增加逐渐减小;水滴速度与直径呈对数函数分布;水滴动能与喷头距离呈指数函数分布,其相关系数在0.8以上.压力对近处水滴直径、速度及动能的分布规律影响较小,对远处的影响较大.  相似文献   

5.
Sprinkler irrigation efficiency declines when applied water intercepted by the crop foliage, or gross interception (Igross), as well as airborne droplets and ponded water at the soil surface evaporate before use by the crop. However, evaporation of applied water can also supply some of the atmospheric demands usually met by plant transpiration. Any suppression of crop transpiration from the irrigated area as compared to a non-irrigated area can be subtracted from Igross irrigation application losses for a reduced, or net, interception (Inet) loss. This study was conducted to determine the extent in which transpiration suppression due to microclimatic modification resulting from evaporation of plant-intercepted water and/or of applied water can reduce total sprinkler irrigation application losses of impact sprinkler and low energy precision application (LEPA) irrigation systems. Fully irrigated corn (Zea Mays L.) was grown on 0.75 m wide east-west rows in 1990 at Bushland, TX in two contiguous 5-ha fields, each containing a weighing lysimeter and micrometeorological instrumentation. Transpiration (Tr) was measured using heat balance sap flow gauges. During and following an impact sprinkler irrigation, within-canopy vapor pressure deficit and canopy temperature declined sharply due to canopyintercepted water and microclimatic modification from evaporation. For an average day time impact irrigation application of 21 mm, estimated average Igross loss was 10.7%, but the resulting suppression of measured Tr by 50% or more during the irrigation reduced Igross loss by 3.9%. On days of high solar radiation, continued transpiration suppression following the irrigation reduced Igross loss an additional 1.2%. Further 4–6% reductions in Igross losses were predicted when aerodynamic and canopy resistances were considered. Irrigation water applied only at the soil surface by LEPA irrigation had little effect on the microclimate within the canopy and consequently on Tr or ET, or irrigation application efficiency.  相似文献   

6.
Sprinkler kinetic energy has been linked to a number of problems in irrigated fields. This work presents the characterization of sprinkler drop kinetic energy and specific power from low-speed photographic drop data using a commercial impact sprinkler and three operating pressures. The spatial variability of specific power (W m−2) was assessed for different sprinkler spacings, showing different patterns in rectangular and triangular spacings. The specific power uniformity coefficient ranged from 38–77%, depending on sprinkler spacing and operating pressure. An attempt was made to characterize specific power from estimated (measured diameter and estimated velocity) and simulated data (using a ballistic model). While estimated data produced adequate results, simulated data resulted in a large overestimation. Discrepancies in kinetic variables between measured and simulated drop data permit to conclude that it is important to continue experimental drop characterization efforts as well as sprinkler simulation model development.  相似文献   

7.
One of the most appropriate sprinkler systems for arid or semi-arid areas – where a great deal of irrigating water is required – are the permanent set systems and the continuous-move laterals. To know the reality of water application in this type of areas, many field evaluations of solid set systems and centre pivot irrigation were conducted in Castilla-La Mancha region (Spain). The main factors affecting water application and evaporation and drift losses with these systems (pressure, wind speed, sprinkler type, etc.) were analysed. A set of performance guidelines and recommendations for the design and management of sprinkle irrigation is presented to attain the highest uniformity and efficiency in water application in semi-arid areas. To use working pressure as low as possible, but with sprinklers that produce a great deal of middle size water drops along with night irrigation for minimising evaporation and drift losses are important aspects.  相似文献   

8.
Uniformity of distribution in irrigation systems plays an important role in the optimum use of irrigation water, with direct repercussions on water-use efficiency and production. To evaluate the effects of the wind on sprinkler water uniformity, it is necessary to measure infield water distribution under different wind conditions and then calculate the parameters that define water distribution. This paper perfects the SIRIAS simulation model for sprinkler systems, which can be used to design new irrigation installations or to improve existing ones. Using ballistic theory to simulate the trajectory of drops discharged by the sprinkler, the model obtains wind-distorted water distribution, with a new formulation for the air drag coefficient. It takes into account three options to distribute the evaporation and drift losses in the irrigation process. SIRIAS software has been programmed using Delphi language for Windows 95, 98 and NT.  相似文献   

9.
基于弹道轨迹方程的折射式喷头水量分布计算模型   总被引:2,自引:0,他引:2  
针对折射式喷头水量分布模拟研究较少的问题,通过高速摄像技术测得了不同工作压力和喷嘴型号下水滴射流速度和射流弧度,构建了折射式喷头水束射流速度及弧度的指数模型,在此基础上基于弹道轨迹方程和水滴蒸发模型,采用Eclipse作为开发工具编写出折射式喷头水量分布的计算程序。该软件能够在已知喷头工作参数及环境条件下,模拟出水滴粒径分布、水量分布、能量分布等指标。采用软件计算出不同工况下Nelson D3000型喷头喷洒水力特性,并依据模拟出的单喷头水量分布数据,以24 m平移式喷灌机为例进行多喷头组合叠加,与实测值进行对比,结果表明:基于3种模型下开发出的单喷头水量分布计算软件模拟出的水滴粒径分布及单喷头水量分布与实测值变化的规律相符,模拟准确度较高。不同间距下多喷头组合叠加时,喷灌均匀度相对误差在0.04%~14.77%,变化规律的差异性较小。该软件能够为移动式喷灌机优化设计提供技术支持。  相似文献   

10.
A field experiment was performed to study the effect of the space and time variability of water application on maize (Zea mays) yield when irrigated by a solid set sprinkler system. A solid set sprinkler irrigation layout, typical of the new irrigation developments in the Ebro basin of Spain, was considered. Analyses were performed (1) to study the variability of the water application depth in each irrigation event and in the seasonal irrigation and (2) to relate the spatial variability in crop yield to the variability of the applied irrigation and to the soil physical properties. The results of this research showed that a significant part of the variability in the Christiansen coefficient of uniformity (CU), and wind drift and evaporation losses were explained by the wind speed alone. Seasonal irrigation uniformity (CU of 88%) was higher than the average uniformity of the individual irrigation events (CU of 80%). The uniformity of soil water recharge was lower than the irrigation uniformity, and the relationship between both variables was statistically significant. Results indicated that grain yield variability was partly dictated by the water deficit resulting from the non-uniformity of water distribution during the crop season. The spatial variability of irrigation water depth when the wind speed was higher than 2 m s–1 was correlated with the spatial variability of grain yield, indicating that a proper selection of the wind conditions is required in order to attain high yield in sprinkler-irrigated maize.  相似文献   

11.
This study evaluates agricultural impact sprinklers under different combinations of pressure (p), nozzle diameter (D) and meteorological conditions. The radial curve (Rad) of an isolated sprinkler, i.e., the water distribution along the wetted radius, was evaluated through 25 tests. Christiansen's uniformity coefficient (CUC) and the wind drift and evaporation losses (WDEL) were evaluated for a solid-set system using 52 tests.The Rad constitutes the footprint of a sprinkler. The CUC is intimately connected to the Rad. The Rad must be characterized under calm conditions. Very low winds, especially prevailing winds, significantly distort the water distribution. The vector average of the wind velocity (V’) is recommended as a better explanatory variable than the more popular arithmetic average (V). We recommend characterizing the Rad under indoor conditions or under conditions that meet V’ < 0.6 m s−1 in open-air conditions.The Rad was mostly affected by the sprinkler model. V’ was the main explanatory variable for the CUC; p was significant as well. V was the main variable explaining the WDEL; the air temperature (T) was significant, too.Sprinkler irrigation simulators simplify the selection of a solid-set system for farmers, designers and advisors. However, the quality of the simulations greatly depends on the characterization of the Rad. This work provides useful recommendations in this area.  相似文献   

12.
喷灌系统组合均匀度是规划设计时的重要技术参数。在无风或微风条件下,可通过室外组合喷洒试验或依据单喷头试验资料用计算方法求得。在有风条件下,目前普遍采用的是以大量观测数据为基础的统计方法,由于试验条件、手段所限以及风的多变性,不但试验结果再现性差、且很难比较精确地求得某些特征风速(如灌溉期间的平均风速、设计风速)下的均匀度。本文提出了一种计算有风条件下喷灌系统组合均匀度的方法,经与实测值比较,表明具有较高精度。  相似文献   

13.
Assessing whole-field uniformity of stationary sprinkler irrigation systems   总被引:2,自引:0,他引:2  
The procedure established in the literature for the evaluation of stationary sprinkler irrigation systems is limited in space and time since it is based on a sample of precipitation taken around one sprinkler during a given period of the whole irrigation event. This procedure also ignores what happens in the soil after water infiltrates. A model of the drop trajectory and of the water distribution pattern is formulated here for simulating precipitation from single sprinklers. The operating pressure determines sprinkler flow and maximum throw. Wind and evaporation distort the distribution patterns. The water distribution of individual sprinklers is overlapped to generate precipitation over the whole field and to calculate a coefficient of uniformity. Field effective uniformity is then calculated by averaging precipitation over the extension of plant roots or water redistribution within the soil profile. Application of the model has shown the impact of system management and design, field topography and wind on irrigation uniformity. Management factors such as lateral operation time or riser inclination may account for a large part of the field precipitation variations. A rough topography may also reduce uniformity significantly. Wind speed is important when it exceeds 1.8–2 m s–1. The allowable maximum pressure loss of 20% fixed as a design criterion seems an overly strict limit when other factors may overcome pressure loss as sources of non-uniformity. The sources of non-uniformity have different scales of variation. Large-scale sources, such as lateral operation time or pressure loss, are not dampened by the crop or soil. Sources of smaller-scale variation, such as wind or inclination of the sprinkler riser, are better compensated by the crop and soil. The application of this kind of model to the design and management of sprinkler irrigation systems is discussed. Received: 9 May 1997  相似文献   

14.
考虑水滴运动蒸发的喷灌水量分布模拟   总被引:3,自引:0,他引:3  
提出了有风条件下喷头水滴运动与喷灌水量分布模拟方法,并利用Visual Basic 6.0开发了喷灌水量分布模拟软件.该软件在已知单喷头的径向水量分布数据时,可以模拟出不同风速、风向、空气温湿度等环境条件下单喷头或多喷头组合的喷灌水量分布,计算出喷灌系统的组合喷灌强度、喷灌均匀系数和蒸发损失率.以9708A型喷头为例,分别对工作压力为0.20、0.25和0.30 MPa下单喷头径向水量分布以及喷灌系统组合间距为14 m x 14 m和14 m×12 m时的喷灌水量分布进行了模拟,并与实测值进行了对比,结果表明:模拟的单喷头径向水量分布与实测值总体一致,由模拟水量分布推算的喷头流量与实测值的相对误差为0.83% ~8.01%;喷灌均匀系数模拟值与实测值的相对误差为0.69%~6.36%,蒸发损失率模拟值为0.51% ~ 1.75%,小于实测的水量损失率.模拟了不同组合间距下的喷灌水量分布,得到的喷灌均匀系数模拟值与其他软件比较,相对误差在0.11% ~2.44%之间.  相似文献   

15.
20PY2掺气喷头是以20PY2摇臂喷头结构为基础,引入气液两相流理论得到的一种喷头.以20PY2掺气喷头为研究对象,研究其低压下的喷灌效果,并对比摇臂喷头的喷灌效果.试验评价指标:平均喷灌强度、蒸发漂移量、喷灌均匀系数及分布均匀系数;变量:工作压力和组合间距.试验结果表明:与摇臂喷头相比,掺气喷头的射程变化不大,但掺气喷头的平均喷灌强度随工作压力递增,随着组合间距递减;低压下,掺气喷头在风速为1 m/s时的蒸发漂移量约为5%,其组合喷灌的最佳工作压力和组合间距分别为300 kPa和1.1R.掺气喷头喷灌强度峰值与谷值的阶梯性较好,同等数量测点的喷灌强度峰值区间和谷值区间平均值趋向于平均喷灌强度,峰值区间和谷值区间喷灌强度在灌溉总强度中的占比分别低于和高于摇臂喷头.因此,喷灌效果优于摇臂喷头.  相似文献   

16.
在能源危机的冲击下,节能已成为广大喷灌工作者共同关心的问题。降低喷灌系统工作压力是节能的主要方法之一,而喷头的工作压力与喷灌系统工作压力紧密相关。本文提出了固定式喷灌系统喷头经济压力的概念及其确定方法,并将此法运用到实例中。在选择经济、合理的喷头及其经济工作压力方面做了有意义的探讨。  相似文献   

17.
设计风速是喷灌工程规划设计中一项重要参数,本文利用模糊规划方法确定出设计风速。计算实例说明,此方法是可行的。  相似文献   

18.
【目的】探讨五道沟地区"蒸发悖论"及成因探析。【方法】以位于五道沟地区的五道沟实验站气象场1970―2017年实测数据为背景资料。对蒸发量的年际变化趋势进行分析与预测,对其影响因素(风速、温度、日照时间、水汽压力差、降雨量、相对湿度)应用线性趋势法进行定性分析,应用熵值法进行综合评价,并深入探讨蒸发皿蒸发量趋势变化的成因。【结果】1970―2017年蒸发量呈明显下降趋势,下降速率为8.7 mm/a,运用灰色系统中的GM(1,1)模型与Verhulst模型对蒸发量的年际趋势进行预测,结果表明GM(1,1)模型预测效果更好。蒸发量与各气象要素的相关关系:风速、日照时间与蒸发量呈正相关关系,气温、相对湿度、降雨量与蒸发量呈负相关关系。1970―2017年间气温每10年平均升高0.25℃,水面蒸发每10年平均下降86.9 mm,该区存在"蒸发悖论"现象。线性趋势法与熵值法对各影响因素分析结果一致:风速>气温>相对湿度>日照时间>降雨量>水汽压力差,表明在全球气候变暖的大背景下,风速下降、相对湿度增加和日照时间减少是该区"蒸发悖论"现象的主要因素。日照时间的下降可能是气溶胶含量增多造成的;风速的下降可能与城镇化发展有关,风速减弱可能会引起气溶胶增多;相对湿度的增加,会导致日照时间的减少。【结论】五道沟地区"蒸发悖论"的成因可能是气溶胶量的增加,太阳辐射减少,蒸发量下降。  相似文献   

19.
A photographic method for drop characterization in agricultural sprinklers   总被引:1,自引:0,他引:1  
The characterization of drops resulting from impact sprinkler irrigation has been addressed by a number of techniques. In this article, a new technique based on low-speed photography (1/100 s) is presented and validated. The technique permits to directly measure drop diameter, velocity and angle. The photographic technique was applied to the characterization of drops resulting from an isolated sprinkler equipped with a 4.8 mm nozzle and operating at a pressure of 200 kPa. Sprinkler performance was characterized from photographs of 1,464 drops taken at distances ranging from 1.5 to 12.5 m. It was possible to analyze separately the drops emitted by the main jet and those emitted by the impact arm. The proposed technique does not require specific equipment, although it is labor intensive.  相似文献   

20.
基于2DVD的非旋转折射式喷头水滴直径分布规律   总被引:6,自引:0,他引:6  
采用基于三维视频粒子测量原理的视频雨滴谱仪(Two-dimensional video disdrometer,2DVD)对喷灌机中常用的Nelson D3000型喷头在多个工作压力下水滴直径沿射程的分布进行了测量,分析了水滴直径沿射程的变化趋势及水滴速度、水滴角度与水滴直径之间的关系。结果表明:水滴直径与射程符合指数函数关系,在距离喷头相同测点处,水滴直径随工作压力的升高而减小,而射程末端的水滴直径随着压力的升高而增大;水滴速度随水滴直径增加而增大,两者呈对数关系;水滴落地时与地面夹角(简称水滴角度)随水滴直径增加呈减小趋势,水滴直径小于1.0 mm时,50、100、150和200 kPa工作压力下,与地面夹角为90°的水滴个数占总水滴数的比值分别为90.46%、84.46%、89.91%和89.15%,其余水滴与地面夹角在30°~89°之间,水滴直径在1.0~2.25 mm范围内,水滴角度随水滴直径的增加迅速减小,水滴直径大于2.25 mm时减小趋势变缓,4个工作压力下最大直径水滴落地时与地面夹角平均值为45°;工作压力对于水滴直径与速度、水滴直径与角度之间的关系影响较小。  相似文献   

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