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161.
为研究插入式滴头局部阻力间的相互影响,以16插入式滴灌管为研究对象,设置6种滴头间距进行灌水试验,同时采用CFD模拟并分析验证。在此基础上对20滴灌管进行了模拟研究。结果表明:滴头局部阻力相邻影响系数模拟结果与试验结果基本吻合;滴头局部阻力相邻影响系数随滴头间距的减小而减小;滴头前后扰动范围和流速分布的变化是滴头局部阻力产生相邻影响的主要原因;滴灌设计中,当滴头间距小于0.5 m时,应考虑滴头局部阻力间的相邻影响,相邻影响系数取值范围为0.9~1.0。  相似文献   
162.
利用Markov随机场和Gibbs分布理论,建立了猪肉糜微结构图像的随机场模型,然后通过迭代方法,对不同微结构的猪肉糜图像进行了随机模拟,同时对随机模拟图像和原始图像作了对比分析。糜状食品物料微观结构图像的分析和模拟是定研究其微结构模式形态对流变特性影响的关键问题。通过从已知流变特性反演糜状食品物料微结构的几何形态,可以更深入地探讨、研究微结构形成的动力学机制和过程,进而沟通流变特性和微结构形态之间的联系,从而为定量描述糜状食品物料的流变特性提供了条件。  相似文献   
163.
山东省利用世界银行贷款加强灌溉农业(二期)引黄项目区,插花分布在10个县,水资源时空变化大,灌溉水源除当地水外还引用黄河水补充灌溉,引黄水和当地水丰枯遭遇不同,因此进行项目区水资源供需平衡分析对项目立项和建成后可持续发展具有重要作用。采用典型年净平衡和水平衡模拟模型2种方法,对引黄项目区农业灌溉水资源水平衡进行了分析计算,使农业灌溉水资源评价结果更加科学和符合实际。  相似文献   
164.
Low-pressure pipe distribution systems forsurface irrigation provide both off- andon-farm recognized environmental benefits.However, expected benefits can only beattained when adequacy, dependability andequity of systems are high enough tosupport appropriate conditions for wateruse on the farm. An innovative methodologyfor design and analysis is proposed anddescribed, which includes the generation ofthe demand at the scale of the distributionsystem and, consequently, the generation ofthe flow regimes expected during a givenperiod of time, generally the peak month.These flow regimes are utilized for theoptimization of pipe sizes using theiterative discontinuous method for severalflow regimes. The performance analysis isdeveloped through the system simulationwith several flow regimes, which allow thecomputation of the system adequacy,dependability and equity. An application toone sector of the Sorraia irrigation systemillustrates the usefulness of themethodology proposed.  相似文献   
165.
In this paper, a contribution to the design of collective pressurised irrigation networks in solid-set sprinkler-irrigated windy areas is presented. The methodology is based on guaranteeing minimum on-farm performance, using a historical hourly wind speed database and a ballistic solid-set irrigation simulation model. The proposed method was applied to the Montesnegros Irrigation District (central Ebro basin, Spain). The district irrigates an area of 3493 ha using an on-demand schedule. The average wind speed in the area is 2.8 m s−1. An analysis of district water records showed that farmers often reduce water demand when the wind speed is high, but their irrigation decision making is limited by the capacity of the irrigation network and by the unpredictable character of local winds. Simulations were performed for 11 irrigation seasons, 2 triangular sprinkler spacings (18 m × 18 m and 18 m × 15 m), and 2 sprinkler models. The percentage of monthly suitable time for irrigation was determined for four management strategies. The first one was based on a wind speed threshold (3 m s−1), while the other three were based on three levels (standard, relaxed and restrictive) of two irrigation performance parameters: the Christiansen Uniformity Coefficient (CU) and the Wind Drift and Evaporation Losses (WDEL). The standard strategy classified the time as suitable for irrigation when CU ≥ 84% and WDEL ≤ 20%. The thresholds limits of the irrigation parameters for the relaxed strategy were CU ≥ 80% and WDEL ≤ 25%. Finally, the restrictive strategy used thresholds of CU ≥ 90% and WDEL ≤ 15%. The suitable time for the first strategy (56%) was always lower than for the standard and the relaxed strategies (with respective average values of 75 and 86%), and higher than for the restrictive strategy (30%). In order to design the collective network, the hydrant operating time was equalled to the suitable time for irrigation. The differences in the cost of the collective network plus the on-farm equipment were particularly relevant between the restrictive strategy and the other three. Differences in suitable operating time were clear between sprinkler spacings, and less evident between sprinkler models. The application of the proposed methodology may be limited by the availability of historical wind speed records and CU estimates for different combinations of sprinkler models, sprinkler spacings and wind speed.  相似文献   
166.
Remotely sensed (RS) data is a major source to obtain spatialdata required for hydrological models. The challenge for thefuture is to obtain besides the more direct observable data(landcover, leaf area index, digital elevation model andevapotranspiration), non-visible data such as soilcharacteristics, groundwater depth and irrigation practices.In this study we have explore the option of using inversemodeling to obtain these non-RS-visible data. For a commandarea in Haryana, India, we applied for the 2000–2001 rabiseason a RS-GIS-combined inverse modeling approach to derivenon-RS-visible data required in the regional application ofhydrological models. A Genetic Algorithm loaded stochasticphysically based soil-water-atmosphere-plant model (SWAP) wasdeveloped for the inverse problem and used in the study. Theresults showed good agreement with the inventoried data suchas soil hydraulic properties, sowing dates, groundwaterdepths, irrigation practices and water quality. The deriveddata could be used to predict the state of the system at anytime in the cropping season, which can be used to evaluateoperational management strategies.  相似文献   
167.
基于虚拟样机的桁架式喷洒车稳定性动力学仿真   总被引:2,自引:0,他引:2  
为了提高卷盘式喷灌机桁架式喷洒车爬坡和抗倾覆能力,克服喷洒车试验周期长、成本高、试验优化能力受限制的缺点,采用虚拟样机软件ADAMS建立JP75型喷灌机桁架式喷洒车的动力学参数化仿真模型,对喷洒车的纵向、横向抗倾覆性以及爬坡能力进行了仿真。分析了不同坡度角工况下影响桁架式喷洒车爬坡和抗倾覆能力的几种关键因素,采用二分法控制仿真坡度角的变化,对各因素的影响程度进行了仿真试验研究,提高了仿真速度。通过对影响爬坡和倾覆性能较大的地面粘附系数、质心高度、轮距等关键因素进行优化,使临界爬坡角比现有喷洒车提高了21.48%。优化后新机型的试验运行结果表明,在同样坡度工况下新机型倾覆次数明显减少,能够达到的最大爬坡角得到提高,仿真优化取得明显效果。  相似文献   
168.
油葵收获割台工作性能仿真及试验研究   总被引:2,自引:0,他引:2  
为研究油葵收获割台在工作过程中的性能与可靠性,得到该割台正常工作时的关键参数,利用SOLIDWORKS对割台进行三维参数化建模并导入ADAMS中进行运动学仿真,得到收获时茎秆受力和摆动程度的仿真结果并进行正交组合分析,仿真和分析结果表明:割台正常工作最优参数的组合是拉茎辊转速800 r/min、机器的行驶速度2.12 km/h、拉茎间隙10 mm、拉茎辊的倾角20°,同时往复切割刀的切割速度2 m/s时茎秆的受力最小,通过田间试验发现整个收获过程籽粒损失率≤3%,喂入输送绞龙的茎秆较短,收获可靠性较好,结果表明该割台适合油葵的机械化收获。  相似文献   
169.
In most cases, when calculating soil water availability, only thewater content is considered. The effect of salinity on the wiltingpoint is neglected. The objective of this work is to use asimulation model (CERES-maize) in order to predict cornyields as a function of water salinity under severalenvironmental, agrotechnical, and plant characteristics. A modelis presented in which the wilting point is a function of the soilsalt content. At high salinity, the water content at wilting pointis higher than at low salinity, resulting in an insufficient amountof available water and, therefore, a reduced yield. The modelwas used to simulate several theoretical and experimentalsituations for forage corn and grain corn. Simulation resultsshowed that nitrogen fertilization increases the salinity thresholdvalue and the yield sensitivity (rate of yield reduction per unitof salinity). The also showed that forage corn is more sensitiveto salinity than grain corn. If the soil is not leached, a heaviersoil texture has a higher salinity threshold value. On the otherhand, if the soil is leached, the soil texture has no influence onthe salinity threshold value and the yield is less sensitive tosalinity in sandy soils. The determination coefficient (r2= 0.75) indicated that the results of the simulations were in goodagreement with the field data.  相似文献   
170.
Based on a simulation model reflecting physical and economic conditions typically found in rice irrigation systems in Asia, the irrigation performance implications of alternative water distribution rules for dry season irrigation are evaluated under varying degrees of water shortage. The rules examined reflect differing water distribution strategies designed either to maximize conveyance efficiency, economic efficiency, or equity; or to achieve a balance between efficiency and equity objectives. Irrigation performance is evaluated using several efficiency measures reflecting the physical, agronomic and economic productivity of water, and one measure of equity. Economic efficiency and equity among farmers within the portion of the irrigation system that is on in any given season are shown to be complementary, and not competing objectives. Economic efficiency and equity among all farmers within the command area of the irrigation system are largely complementary strategies at the lower levels of water shortage, but with increasing shortage, significant tradeoffs develop between these objectives. An operational rule for water distribution under a goal of maximizing economic efficiency is developed, and the data requirements for its implementation are shown to be modest. Under the model's assumed conditions of dry season rice production dependent solely on surface irrigation for water, the distribution strategy designed to maximize conveyance efficiency results in only modestly lower levels of economic efficiency and equity than could be achieved by the strategy designed to maximize economic efficiency.  相似文献   
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