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1.
直插式根灌技术的研究与应用   总被引:1,自引:0,他引:1  
直插式根灌技术,是一种新型的节水灌溉技术,它结合了地面滴灌与地下渗灌的优点,能够把水直接灌溉到一定深度土壤层,起到对植物根系层,进行直接灌溉的目的;能有效减少表层土壤水分蒸发损失,提高灌水效率、提高灌溉水的有效利用率。过去的地埋式渗灌技术,有较好的灌水效果和抑制表层土壤水分蒸发损失作用,但其易堵塞、检修难的缺点,限制了地下渗灌技术的发展。地表滴灌技术成熟,但其表层土壤水分蒸发损失,影响滴灌水分的利用效率和灌水效率。为了结合滴灌与渗灌的优势,克服滴灌与渗灌的缺点;所以,开展对直插式根灌技术的研究,把地表滴灌的水分,直接引灌到一定深度的土壤层,实现土壤的越层灌溉,起到较好的灌水效果,根灌产品,安装简便,便于维护。  相似文献   

2.
葡萄分层地下滴灌滴头布设深度优化   总被引:1,自引:0,他引:1  
为解决不同树龄葡萄根系的差异使得地下滴灌系统在布设应用中存在的困难,采用室内试验和HYDRUS-2D数值模拟相结合的方法,以宁夏和关中葡萄产区为例,研究了2种土质条件下分层地下滴灌土壤水分运动规律,提出了分层地下滴灌带最佳布设深度.研究结果表明,HYDRUS-2D模拟值与试验实测值具有良好的吻合度.地下滴灌带的埋深直接影响土壤水分的分布,2种土质下湿润体内部处于最佳含水率区间的土壤体积随滴头间距的增加而增大.通过适当增大浅层滴头埋深并减小深层滴头埋深可减小表层水分无效损耗.从避免水分无效消耗以及提高湿润体与根系匹配效果等角度出发,建议关中地区葡萄单滴头灌溉且适宜滴灌带布设深度为20 cm;宁夏贺兰山地区滴灌带布设深度以15 cm和45 cm为宜.  相似文献   

3.
This study was carried out at the experimental field station of the Atomic Energy Authority in Anshas, Egypt, by the aim of assessing the soil moisture status under surface and subsurface drip irrigation systems, as a function of the variation in the distance between drippers along and between laterals. Moisture measurements were carried out using neutron moisture meter technique, and water distribution uniformity was assessed by applying Surfer Model. The presented data indicated that the soil moisture distribution and its uniformity within the soil profile under surface drip was to great extent affected by the distance between drippers rather than that between laterals. Generally, the soil moisture distribution under using 30-cm dripper spacing was better than of that under 50 cm. Under subsurface drip irrigation, the allocation of the irrigation system was the factor that dominantly affected the moisture trend under the studied variables. Installing the system at 30 cm from the soil surface is the one to be recommended as it represents the active root zone for most vegetable crops, beside it leads to a better water saving in sandy soils than that allocated at 15 cm depth.  相似文献   

4.
Dynamics and modeling of soil water under subsurface drip irrigated onion   总被引:3,自引:0,他引:3  
Subsurface drip irrigation provides water to the plants around the root zone while maintaining a dry soil surface. A problem associated with the subsurface drip irrigation is the formation of cavity at the soil surface above the water emission points. This can be resolved through matching dripper flow rates to the soil hydraulic properties. Such a matching can be obtained either by the field experiments supplemented by modeling. Simulation model (Hydrus-2D) was used and tested in onion crop (Allium cepa L.) irrigated through subsurface drip system during 2002-2003, 2003-2004 and 2004-2005. Onion was transplanted at a plant to plant and row to row spacing of 10 cm × 15 cm with 3 irrigation levels and 6 depths of placement of drip lateral. The specific objective of this study was to assess the effect of depth of placement of drip laterals on crop yield and application of Hydrus-2D model for the simulation of soil water. In sandy loam soils, it was observed that operating pressures of up to 1.0 kg cm−2 did not lead to the formation of cavity above the subsurface dripper having drippers of 2.0 l h−1 discharge at depths up to 30 cm. Wetted soil area of 60 cm wide and up to a depth of 30 cm had more than 18% soil water content, which was conducive for good growth of crop resulting in higher onion yields when drip laterals were placed either on soil surface or placed up to depths of 15 cm. In deeper placement of drip lateral (20 and 30 cm below surface), adequate soil water was found at 30, 45 and 60 cm soil depth. Maximum drainage occurred when drip lateral was placed at 30 cm depth. Maximum onion yield was recorded at 10 cm depth of drip lateral (25.7 t ha−1). The application of Hydrus-2D confirmed the movement of soil water at 20 and 30 cm depth of placement of drip laterals. The model performance in simulating soil water was evaluated by comparing the measured and predicted values using three parameters namely, AE, RMSE and model efficiency. Distribution of soil water under field experiment and by model simulation at different growth stages agreed closely and the differences were statistically insignificant. The use of Hydrus-2D enabled corroborating the conclusions derived from the field experimentation made on soil water distribution at different depths of placement of drip laterals. This model helped in designing the subsurface drip system for efficient use of water with minimum drainage.  相似文献   

5.
6.
微孔陶瓷渗灌与地下滴灌土壤水分运移特性对比   总被引:4,自引:0,他引:4  
以微孔陶瓷灌水器为研究对象,在0 m工作水头下进行土壤水分运移特性试验,并以10 m额定工作水头下工作的地下滴灌灌水器作为对照。通过对比分析2种灌溉方式下累计入渗量、流量、湿润体特征和土壤含水率变化,结果表明:相同灌溉时间下微孔陶瓷渗灌的累计入渗量、湿润锋运移距离、湿润体截面面积均明显小于地下滴灌。微孔陶瓷渗灌的流量随时间逐渐减小,直至接近于零;试验后期,微孔陶瓷渗灌湿润体内整体土壤含水率变化较小;由于微孔陶瓷渗灌为无压连续灌溉,因此在其工作过程中可为作物提供一个恒定的水分环境。而地下滴灌的流量则会维持稳定,使得土壤含水率一直增大,停止灌溉后由于土壤水分再分布而减小。地下滴灌为被动恒压灌溉,因此其灌溉条件下作物生长的水分环境处于干湿交替的循环变化状态。  相似文献   

7.
不同滴灌方式下咸水灌溉对棉花根系分布的影响   总被引:7,自引:1,他引:6  
通过大田试验研究了不同滴灌方式利用咸水灌溉对棉花根系分布的影响。结果表明,2种滴灌方式下土壤中的水分和盐分在1 m土体内随土壤深度的增加和咸水浓度的增加而增加,且由于滴头的洗盐作用,地表滴灌和地下滴灌方式下土壤中的水盐分布深度均有所下移。正是由于水盐在土壤有这样的分布特征,2种滴灌方式下不同盐度咸水灌溉后,作物不仅可以感受到变化了的环境信息,而且自发地改变结构形态、空间构型,即增加根长、根干重、根半径以及根表面积,对盐胁迫做出适应性的根系形态变化。  相似文献   

8.
地下滴灌条件下棉花土壤水分运移田间试验研究   总被引:6,自引:1,他引:6  
在棉花大田实地测量的基础上,对地下滴灌条件下棉花不同生育期内土壤含水量进行分析,同时对实际应用效果进行监测,结果表明:地下滴灌影响土壤水分变化深度主要为20~60 cm,棉花根系主要集中在15~50 cm。通过对棉花常规地面沟灌、膜下滴灌和地下滴灌土壤水分变化试验研究分析和应用效果监测,棉花地下滴灌节水增产效果显著。  相似文献   

9.
为探索解决地下滴灌玉米出苗难的问题,通过土箱试验,对内蒙古自治区具有典型代表性的3种土壤,开展了毛管铺设参数(滴头流量、埋深)和灌水定额对地下滴灌湿润半径的影响规律试验,结合玉米播种深度、水分向上及向下运移的距离及种子周围土壤含水量,研究了玉米适宜出苗灌水定额,以提高出苗率,指导实际生产.结果表明:按显著性水平0.05检验,土壤类型和灌水定额均对土壤湿润半径影响具有统计学意义,而滴头流量和埋深对湿润半径影响不具有统计学意义.在黏壤土中,玉米出苗灌水定额37.5~52.5 mm基本可满足毛管埋深25~35 cm的出苗要求;在壤土中,玉米出苗灌水定额37.5 mm左右基本可满足毛管埋深25~30 cm的出苗要求,灌水定额52.5 mm左右基本可满足埋深30~35 cm的出苗要求;在砂壤土中,灌水定额22.5~37.5 mm基本可满足毛管埋深约25 cm的玉米出苗要求,灌水定额52.5 mm基本可满足毛管埋深25~35 cm的玉米出苗要求.  相似文献   

10.
Two field studies were conducted on the west side of the San Joaquin Valley of California to demonstrate the potential for integrated management of irrigation and drainage systems. The first study used a modified cotton crop coefficient to calculate the irrigation schedule controlling the operation of a subsurface drip system irrigating cotton in an area with saline groundwater at a depth of 1.5 m. Use of the coefficient resulted in 40% of the crop water requirement coming from the groundwater without a loss in lint yield. The second study evaluated the impact of the installation of controls on a subsurface drainage system installed on a 65 hectare field. As a result of the drainage controls, 140 mm less water was applied to the tomato crop without a yield loss. A smaller relative weight of tomatoes classified as limited use, was found in the areas with the water table closest to the soil surface.  相似文献   

11.
不同灌溉模式下土壤中钾素运移规律的研究   总被引:1,自引:0,他引:1  
研究了膜下滴灌、低压渗灌和常规淹灌3种灌溉模式土壤速效钾含量.结果表明,在水平方向上,棉花宽行土壤中速效钾含量显著低于窄行;在垂直方向上,钾素均随土层深度的增加总体呈下降趋势.土壤中钾含量丰富,无论在耕层土壤还是深层土壤,速效钾含量均较高.  相似文献   

12.
通过小区试验,以地表滴灌为对照,探究红枣间接地下滴灌模式下水分的分布特征及不同灌水量对枣树生理生态指标、产量、品质的影响。间接地下滴灌下,最大的含水率出现在15~30cm土层处;而地表滴灌下,最大的含水率出现0~10cm土层处。枣树各生理生态指标,随灌水次数的增加,各处理性状差异逐渐增大,间接滴灌下中供水和高等供水枣树长势较好,低供水处理下红枣的糖分含量高,中供水处理下红枣的有机酸和VC含量高;地表滴灌处理枣树的平均单株产量高,但水分利用率最低,中供水处理不明显降低红枣单果质量和平均单株产量的前提下可以提高水分利用率;综合考虑枣树长势、产量、果实品质及水分利用率,中供水是间接地下滴灌下最佳的灌水量。  相似文献   

13.
温室滴灌条件下辣椒耗水特性的研究   总被引:2,自引:0,他引:2  
针对现代化玻璃温室地表和地下滴灌方式,选择灌水周期和灌水定额为试验因素,开展了辣椒耗水特性试验研究。结果表明,温室条件下,地下滴灌较地表滴灌能节水5%~18%;为了减少辣椒耗水,地表滴灌方式宜缩短灌水周期,地下滴灌方式则宜适当延长灌水周期。温室滴灌条件下,辣椒耗水量组成中,棵间蒸发占主导,棵间蒸发量是日均蒸腾量的1.7~3.0倍,且辣椒日均耗水量可以用日均棵间蒸发量很好地线性表达,同时,辣椒棵间蒸发量也可以用温室内同期水面蒸发量进行线性预估。  相似文献   

14.
Subsurface drip system is the latest method of irrigation. The design of subsurface drip system involves consideration of structure and texture of soil, and crop’s root development pattern. A 3-year experiment was conducted on onion (Allium Cepa L., cv. Creole Red) in a sandy loam soil from October to May in 2002–2003, 2003–2004 and 2004–2005 to study the effect of depth of placement of drip lateral and different levels of irrigation on yield. Tests for uniformity of water application through the system were carried out in December of each year. Three different irrigation levels of 60, 80 and 100% of the crop evapotranspiration and six placement depths of the drip laterals (surface (0), 5, 10, 15, 20 and 30 cm) were maintained in the study. Onion yield was significantly affected by the placement depth of the drip lateral. Maximum yield (25.7 t ha−1) was obtained by applying the 60.7 cm of irrigation water and by placing the drip lateral at 10 cm soil depth. Maximum irrigation water use efficiency (IWUE) (0.55 t ha−1 cm−1) was obtained by placing the drip lateral at 10 cm depth. The greater vertical movement of water in the sandy-loam soil took place because of the predominant role of gravity rather than that of the capillary forces. Therefore, placement of drip lateral at shallow depths is recommended in onion crop to get higher yield.  相似文献   

15.
Effective irrigation uniformity as related to root zone depth   总被引:1,自引:0,他引:1  
Summary In models used for relating the yield to irrigation uniformity it has been assumed that the spatial distribution of irrigation water, as measured at the soil surface, is indeed the water distribution at any depth throughout the root zone. In the present paper the distribution of infiltrated water within the soil bulk, as determined by an analytic solution of the two-dimensional unsaturated flow equation, did not conform to this assumption. A new alternative definition of irrigation uniformity is proposed under the assumption that water uptake by roots does not affect the flux distribution within the soil profile. In this analysis the spatial distribution of irrigation water flux at the soil surface, which is the upper boundary condition of the flow equation, is assumed to be a sine function. The solution to this problem indicates that there is a damping effect, which increases with soil depth, on the surface flux fluctuations. Furthermore, the actual irrigation uniformity at a given depth below the soil surface depends upon the initial uniformity at the surface and the distance between adjacent water sources. The closer the water sources are to each other, the shallower is the depth needed to damp the oscillations down to a certain level. This may explain why the actual uniformity of drip irrigation is high while the detailed distribution is very nonuniform and on the other hand, why the actual uniformity of sprinkler guns is low while the detailed actual distribution is close to uniform. Two uniformity coefficients are derived in this study: 1. A depth dependent coefficient which is made up of the damping factor that multiplies the flux fluctuations at the soil surface; 2. An effective uniformity coefficient, which is an average of the depth dependent coefficient over a part or the entire root zone. Different degrees of uniformity are expected when water is applied by different irrigation systems having similar uniformity coefficients at the soil surface, but dissimilar distances between the emitters. Assuming that crop yield depends to some extent on the uniformity of water depth actually available to the roots, the yields associated with such irrigation systems will probably also vary.  相似文献   

16.
One of the greatest challenges faced by irrigators using subsurface drip irrigation (SDI) is crop establishment. Establishment with SDI relies on unsaturated water movement from the buried source to the seed or seedling. Establishment is therefore affected by distance to source, soil texture, structure, and antecedent water content. Two products were compared (drip tape and CRZI – Capillary Root Zone Irrigation) in a field trial designed to address the establishment issue. To measure the widest establishment extent, a crop was sown perpendicular to the drip laterals. The CRZI system comprises a combination of both impermeable and highly conductive materials designed to produce a wider lateral wetting pattern, while reducing drainage and surface tunnelling. The hypothesis being tested was that the CRZI concept would offer some advantage over drip tape for addressing the establishment issue. Results showed that for the soil at the experimental site (Hanwood loam), installation depth of either product should be no greater than 0.2 m. If attempting to establish a broadsown crop such as lucerne or pasture, lateral spacing should be no greater than 1.0 m. With this configuration, an application depth of 120 mm should still be expected for total surface coverage. CRZI did not produce any establishment advantage over drip tape. Two explanations are given for this result. Firstly, the soil in which the trial was performed has excellent capillary properties and has a natural clay pan which would serve to even out results. Secondly, the two products exploited very different wetting methods to produce similar surface wetting efficiency (ratio of surface wetted width to applied irrigation volume). The drip tape quickly saturated the surface and wet outwards through surface flow. As CRZI did not utilise the surface to aid with distribution, it produced a slower, more even, wetting pattern.Communicated by P. Thorburn  相似文献   

17.
西北干旱区滴灌棉田膜间土壤蒸发试验研究   总被引:2,自引:0,他引:2  
膜间土壤蒸发是覆膜棉田水分消耗的主要组成部分,在干旱少雨的新疆石河子利用微型蒸渗仪观测了地下滴灌和膜下滴灌条件下,覆膜棉田膜间土壤水分蒸发,并对膜间不同位置处的土壤蒸发规律进行了试验研究,研究结果表明,滴灌条件下膜间土壤水分蒸发分别与气温、辐射、饱和水汽差以及相对湿度呈指数相关关系,与参考作物需水量呈线型相关关系,与表层土壤含水率呈指数关系;膜间土壤累积蒸发量在苗期最高、其次是花铃期、吐絮期最小;膜下滴灌条件下膜边土壤的蒸发量高于膜间(两条膜正中间的裸地)蒸发量;地下滴灌条件下,错位种植会导致灌溉水的无效蒸发,不利于灌溉水的高效利用。  相似文献   

18.
防堵塞地下滴灌系统设计与性能试验分析   总被引:2,自引:0,他引:2  
为解决滴灌过程中地下滴灌系统的堵塞问题,设计了新型防堵塞地下滴灌系统并阐述了其工作原理、设计要求,分析并确定地下滴灌系统水压为15~25 kPa,出水孔间距为300 mm,防护管内壁与毛管的外壁距离为40 mm时,灌水均匀度可达到85%以上;通过该系统对酿酒葡萄赤霞珠生长的影响试验结果表明,防堵塞地下滴灌与膜下滴灌、普通滴灌相比能保持20~60 cm深度土壤含水率的稳定性,明显提高植株根冠比,增加有效根表面积,加快根系周转与更新,进而增强植株根系对水分和养分的吸收能力。  相似文献   

19.
为了探索膜下滴灌盐碱地在灌溉过程中暗管排水规律及土壤脱盐效率,设计了一种暗管排水模型试验装置系统来探究灌溉过程中暗管排水规律和排盐效果.试验通过控制灌水时间、灌水量、观测并记录暗管出水时间、排水流量、排水矿化度、土壤盐分剖面等指标,分析灌溉排水过程中暗管排水流速和排水矿化度特征以及各土层土壤脱盐效率.结果表明:经过3次灌水淋洗试验后,暗管排水流速最终趋于1.5~3.5 L/h稳定范围,排水矿化度稳定在20~40 g/L内;0~40 cm土层脱盐率高达85%,0~80 cm土层土壤脱盐率为80.5%,两暗管中间位置处脱盐率最小分别为57.96%,56.73%,69.29%,暗管上方脱盐率最大分别为71.73%,73.34%,84.26%,暗管排盐量占0~80 cm土层总盐分含量的28.9%,其余盐分被淋洗到了80 cm土层以下.  相似文献   

20.
The aim of this study was to evaluate the effect of humic substances application in sandy soil under surface and subsurface drip irrigation systems on potato tubers yield quantity, quality, nutrients concentration in tubers and soil fertility after harvesting. For this purpose, field experiment was carried out at the experimental farm of the Agricultural Research Station, National Research Center, El-Nubaria district, Egypt during the winter season of 2007/2008. The used experimental design was split plot design with three replicates, main treatments were presented irrigation systems, i.e. surface and subsurface drip irrigation, while subtreatments were presented rates of humic substances additives which were 0, 60 and 120 kg ha−1. Results showed that increasing humic substances application rates up to 120 kg ha−1 enhanced tubers yield quantity, starch content and total soluble solids. The increase of humic substances application rates was associated with the decrease of nutrients leaching, which was reflected on increasing macro- and micronutrients concentration in potato tubers, as well as increasing concentration of these nutrients in soil after tubers harvesting. Subsurface drip irrigation system was found to be more efficient than surface drip irrigation system on improving tubers yield quantity, quality parameters and nutrients concentration content, in addition to soil fertility after harvesting.  相似文献   

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