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1.
不同灌溉方法对冬小麦农田土壤温度的影响   总被引:2,自引:0,他引:2  
田间试验表明,地面畦灌、喷灌和滴灌改变了土壤温度的剖面分布特征。喷灌和滴灌处理表层温度低于地面灌溉处理,而且剖面温差小。高频率的灌溉使得滴灌处理表层土壤温度低,最高温度分布在土壤20cm深度左右,剖面温度分布呈现"S"型特征。喷灌处理表层温度也较低,除表层外土壤温度的剖面分布可以近似为指数函数的分布特征。地面畦灌处理土壤温度的剖面分布表现出明显的指数函数分布特征。灌溉方法对土壤温度剖面分布特征的研究有助于分析不同灌溉方法的灌溉效应。  相似文献   

2.
为探究不同节水灌溉模式对白茶品质及茶园土壤重金属含量的影响,设计不同灌溉方式(喷灌和滴灌)和不同土壤水分控制下限(65%、75%和85%),观测白茶水浸出物、游离氨基酸、茶多酚、儿茶素等品质指标及茶园土壤铬、砷、镉、汞、铜和铅含量,同时引入投影寻踪分类模型,基于高优白茶品质和低重金属残留对节水灌溉模式进行综合评价.结果...  相似文献   

3.
【目的】确定根际环形多点源滴灌技术的应用效果。【方法】以陕北沙地枸杞为研究对象,采用小区灌水试验,将根际环形多点源滴灌与地表滴灌、涌泉根灌下对比,研究了不同灌水方式对土壤湿润锋垂直分布范围、土壤含水率、枸杞产量的影响。【结果】地表滴灌下69%的土壤湿润体位于地表0~20cm,涌泉根灌下72.2%的土壤湿润体位于根系主要分布层,根际滴灌下土壤湿润体100%位于枸杞主要根系层;地表滴灌和涌泉根灌、根际滴灌产量比不灌溉枸杞分别增产2 075、3 145、4 150 kg/m^2,水分利用率分别提高了22.4%、41.9%、60.2%;净收入高低排序为根际滴灌>涌泉根灌>地表滴灌,分别比不灌溉处理提高了193.1%、126.3%、81.2%,单位水产值达到了15.0、13.3、11.5元/m^3。【结论】根际环形多点源滴灌的水分湿润范围更适宜于沙质土壤的经济林,是减少地表蒸发损失和深层渗漏的有效技术措施,该技术在沙地经济林生产中有广阔的推广应用前景。  相似文献   

4.
Declining water resources and limited clean water reservoirs call for more efficient water use for food production in the future. The objective of this research was to compare different irrigation methods based on a parametric evaluation system in an area of 60,000 ha in the Dosalegh plain of the Khuzestan province, in the southwest of Iran. After the soil properties were analyzed and evaluated, suitability maps were generated for surface, sprinkler and drip irrigation methods, using Remote Sensing (RS) techniques and Geographic Information System (GIS). The results demonstrated that by applying sprinkler and drip irrigation instead of surface irrigation method, the land suitability of 23,790 and 33,261 ha (39.89%) in the Dosalegh plain will improve, respectively. The comparison of the different types of irrigation techniques revealed that the drip and sprinkler irrigations methods were more effective and efficient than that of surface irrigation for improved land productivity. However, the main limiting factor in using either surface or/and sprinkler irrigation methods in this area were soil texture, salinity, and slope, and the main limiting factor in using drip irrigation methods were the calcium carbonate content, soil texture and salinity.  相似文献   

5.
喷灌灌水与施肥对春小麦水分动态及产量的影响   总被引:4,自引:0,他引:4  
为了探索河西走廊春小麦适宜的喷灌灌溉施肥制度,以当地畦灌模式为对照对比分析了不同灌水方式、灌溉施肥水平下土壤水分动态分布及产量效应并对春小麦产量进行了回归分析.研究了喷灌条件下灌水前后土壤水分分布动态、不同生育期内土壤含水率变化特征及不同灌水量水平下土壤水分下渗状况,分析了不同灌水、施肥水平对产量及产量构成要素的影响.结果表明,喷灌灌水定额为75 mm时,有部分水分下渗至春小麦主要根系活动层以下,但较畦灌量小;喷灌灌水定额在45~60 mm时,灌水后大部分水分储存在0~40 cm土层;春小麦整个生育期内,中等灌溉水平40~80 cm土层土壤水分变化不明显;春小麦产量及其构成要素对灌溉量响应大于施肥量,灌溉量过大时,产量有下降趋势;喷灌条件下,中等灌溉、追肥水平下产量较畦灌高1105%,节水增产效果显著.另外,根据产量拟合方程并结合水分利用效率,喷灌中等灌水、施肥水平为该地区适宜发展的灌溉施肥制度.  相似文献   

6.
为了研究膜下滴灌小麦在河套灌区的适用性及根系分布特征,在河套地区开展了常规畦灌小麦与膜下滴灌小麦的对比试验.试验结果表明,膜下滴灌小麦在整个生育期内的保墒作用明显,且其根长密度、根表面积密度、根体积密度在主要的浸润层0~30 cm均优于CK;种植模式不同时,1膜5行的种植模式的根系指标数值在各个土层内平均大于1膜6行5.9%;灌水水平不同时,充分灌溉促进了0~30 cm土层中的根系生长,而轻度水分亏缺有利于深层土壤中根系的生长.膜下滴灌小麦各处理的产量、作物水分生产率与灌溉水分生产率显著高于CK,产量较CK分别提高了19.6%,14.6%,19.5%,14.7%,作物水分生产率较CK分别提高了28.2%,27.3%,29.6%,27.3%,灌溉水分生产率分别提高了37.1%,40.7%,42%,41.8%.1膜5行的充分灌溉处理不仅促进了根系的生长,同时为产量、作物水分生产率、灌溉水分生产率最优,是兼顾高产与提高作物水分生产率的优良种植模式.  相似文献   

7.
红枣不同灌水万式对土壤水分与产量影响研究   总被引:1,自引:0,他引:1  
对注灌和滴灌不同灌水处理下土壤水分、树径相对生长和产量研究表明:注灌土壤水分主要分布在30~50cm之间,滴灌主要在0~40cm之间;注灌能减少土壤表层蒸发和抑平土壤水分变化,使红枣根区30-40cm土壤保持稳定的供水能力;注灌较滴灌可改善红枣营养生长和生殖生长进程,促进营养生长和加快营养生长向生殖生长转换;注灌较滴灌...  相似文献   

8.
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   

9.
This study compares the effects of different irrigation regimes on seed yield and oil yield quality and water productivity of sprinkler and drip irrigated sunflower (Helianthus annus L.) on silty-clay-loam soils in 2006 and 2007 in the Mediterranean region of Turkey. In sprinkler irrigation a line-source system was used in order to create gradually varying irrigation levels. Irrigation regimes consisted of full irrigation (I1) and three deficit irrigation treatments (I2, I3 and I4), and rain-fed treatment (I5). In the drip system, irrigation regimes included full irrigation (FI-100), three deficit irrigation treatments (DI-25, DI-50, DI-75), partial root zone drying (PRD-50) and rain-fed treatment (RF). Irrigations were scheduled at weekly intervals both in sprinkler and drip irrigation, based on soil water depletion within a 0.90 m root zone in FI-100 and I1 plots. Irrigation treatments influenced significantly (P < 0.01) sunflower seed and oil yields, and oil quality both with sprinkler and drip systems. Seed yields decreased with increasing water stress levels under drip and sprinkler irrigation in both experimental years. Seed yield response to irrigation varied considerably due to differences in soil water contents and spring rainfall distribution in the experimental years. Although PRD-50 received about 36% less irrigation water as compared to FI-100, sunflower yield was reduced by an average of 15%. PRD-50 produced greater seed and oil yields than DI-50 in the drip irrigation system. Yield reduction was mainly due to less number of seeds per head and lower seed mass. Soil water deficits significantly reduced crop evapotranspiration (ET), which mainly depends on irrigation amounts. Significant linear relationships (R2 = 0.96) between ET and oil yield (Y) were obtained in each season. The seed yield response factors (kyseed) were 1.24 and 0.86 for the sprinkler and 1.19 and 1.06 for the drip system in 2006 and 2007, respectively. The oil yield response factor (kyoil) for sunflower was found to be 1.08 and 1.49 for both growing seasons for the sprinkler and 1.36 and 1.25 for the drip systems, respectively. Oil content decreased with decreasing irrigation amount. Consistently greater values of oil content were obtained from the full irrigation treatment plots. The saturated (palmitic and stearic acid) and unsaturated (oleic and linoleic acid) fatty acid contents were significantly affected by water stress. Water stress caused an increase in oleic acid with a decrease in linoleic acid contents. The palmitic and stearic acid concentrations decreased under drought conditions. Water productivity (WP) values were significantly affected by irrigation amounts and ranged from 0.40 to 0.71 kg m−3 in 2006, and from 0.69 to 0.91 kg m−3 in 2007. The PRD-50 treatment resulted in the greatest WP (1.0 kg m−3) and irrigation water productivity (IWP) (1.4 kg m−3) in both growing seasons. The results revealed that under water scarcity situation, PRD-50 in drip and I2 in sprinkler system provide acceptable irrigation strategies to increase sunflower yield and quality.  相似文献   

10.
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   

11.
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   

12.
针对极端干旱区水资源匮乏的现状,以大田葡萄为研究对象,采取根系分区交替滴灌方式研究葡萄生理指标和根区土壤水分分布的变化影响.结果表明:葡萄新枝生长量和叶面积指数随时间的变化过程均可用Logistic模型进行描述,且通过单因素方差分析得出,交替滴灌和常规滴灌的叶面积指数差异不具有统计学意义,说明交替滴灌对植物光合作用主要器官--叶片的生长无明显影响;在棵间蒸发、植物根系吸收以及重力势和水势梯度的共同作用下,交替滴灌条件下沟、垄土壤含水率交替上升,且土壤含水率变化范围主要集中在0~60 cm土层,交替滴灌的耗水量和棵间蒸发量均小于常规滴灌,从而可以提高作物的水分利用效率.该研究为极度干旱区作物节水灌溉提供了一定的科学依据.  相似文献   

13.
The oft-touted reason for the efficiency of drip irrigation is that roots can preferentially take up water from localised zones of water availability. Here we provide definitive evidence of this phenomenon. The heat-pulse technique was used to monitor rates of sap flow in the stem and in two large surface roots of a 14 year old apple tree (Malus domestica Borkh. cv. Braeburn). The aim was to determine the ability of an apple tree to modify its pattern of root water uptake in response to local changes in soil water content. We monitored the water status of the soil close to the instrumented roots by using time domain reflectometry (TDR) to measure the soil's volumetric water content, θ, and by using ceramic-tipped tensiometers to measure the soil's matric pressure head, h. A variation in soil water content surrounding the two roots was achieved by supplying a single localised irrigation to just one root, while the other root remained unwatered. Sap flow in the wetted root increased straight away by 50% following this drip irrigation which wetted the soil over a zone of approximately 0.6 m in diameter and 0.25 m in depth. Sap flow in the wetted root remained elevated for a period of about 10 days, that is until most of the irrigation water had been consumed. A comparative study of localised and uniform irrigation was then made. Following irrigation over the full root zone no further change in sap flow in the previously wetted root was observed when referenced to the corresponding sap flow measured in the stem of the apple tree. However sap flow in the previously dry root responded to subsequent irrigations by increasing its flow rate by almost 50%. These results show that apple roots have the capacity to transfer water from local wet areas at much higher rates than normally occurs when the entire root zone is supplied with water. They are also able to shift rapidly their pattern of uptake and begin to extract water preferentially from those regions where it is more freely available. Such an ability supports the use of drip irrigation for the efficient use of scarce water resources. We conclude that the soil-to-root pathway represents a major resistance to water uptake by apple, even at the relatively high soil water pressure heads developed during parts of this experiment, during which the tree was not even under any stress.  相似文献   

14.
In general, cotton is irrigated by surface methods in Turkey although sprinkler and drip irrigation have been suggested as a means of supplying most types of crops with frequent and uniform applications of water, adaptable over a wide range of topographic and soil conditions. Recently, sprinkler irrigation systems have been introduced for cotton as a result of increased pressure to develop new irrigation technology suited to limited water supply as well as to specific topographic and soil conditions. In this study, the effects of three different irrigation methods (furrow, sprinkler and drip) on seed-cotton yield, shedding ratio and certain yield components are presented. The research was carried out in The Southeastern Anatolia Region (GAP) of Turkey from 1991 to 1994. The maximum cotton yields were 4380, 3630 and 3380 kg/ha for drip, furrow and sprinkler irrigation, respectively. Drip irrigation produced 21% more seed-cotton than the furrow method and 30% more than the sprinkler method. Water use efficiencies (WUE) proved to be 4.87, 3.87 and 2.36 kg/ha/mm for drip, furrow and sprinkler, respectively. Shedding ratios ranged from 50.8 to 59.0% (furrow), 52.9 to 64.8% (sprinkler), 50.8 to 56.8% (drip), depending on the amount of water applied. The shedding ratio for sprinkler irrigation was significantly higher than that of either furrow (P=0.10) or drip irrigation (P=0.05), resulting in lower seed-cotton yield for sprinkler irrigation. For all methods, a quadratic relationship was found between the amount of water applied and shedding ratios, with the least shedding occurring between 1000 and 1500 mm of water. Both limited and over-irrigation increased the shedding ratio for all methods. Accordingly, a lower boll number per plant and a lower seed-cotton yield were obtained from sprinkler-irrigated cotton; a significantly decreasing linear relationship between the shedding ratio and the total cotton yield and boll number per plant.  相似文献   

15.
The study was undertaken in order to quantify the effect of 12-year irrigation by drip emitters placed on one side of the tree trunk on the rooting pattern of Gloster apple trees (Malus domestica Borkh) grafted on M26 rootstock under the conditions of south-west Poland. The orchard was established in 1994 and since 1995 was drip irrigated under three treatments: V0 - without irrigation (control), V1 - intensive irrigation, and V2 - economical irrigation. In March 2007, after 12 years of irrigation, a profile trench observation method was used to map the number and the location of root distribution in clay loam (Luvisol) soil.The root system architecture was largely affected by irrigation. In case of the trees irrigated intensively (V1), the study showed asymmetry in the distribution of roots of diameter <1 mm and 1-3 mm. In V1, shallow root system, concentrated in the wetted zone developed on the irrigated side of the tree, where on the side of the tree trunk opposite the emitter trees developed significantly larger numbers of roots, which penetrated deeper soil layers. There were no statistically significant differences in the number of roots between both sides of the tree trunk under the treatment with economical irrigation (V2). Moreover, spatial roots distribution over the entire soil profile was found to be the most uniform compared to the other experimental treatments (V0 and V1). Finally, the study examined the relationship between root system and yield. Obtained results showed that in the 3-year period less frequent water application (V2) resulted in the highest yield.  相似文献   

16.
滴灌湿润比对成龄库尔勒香梨树根系分布的影响   总被引:3,自引:0,他引:3  
在充分灌溉条件下采用3种滴灌湿润比(20%、40%、60%).以漫灌为对照.研究库尔勒成龄香梨吸水根(根直径≤1 mm)在0~70 cm土层内分布的变化,探讨滴灌湿润比对根系分布的影响.结果表明,漫灌成龄库尔勒香梨树吸水根水平方向上在距树体1~2 m内从树行由内向外呈递增趋势;垂直方向上根系随深度呈递增趋势.滴灌对成龄...  相似文献   

17.
为了探明灌水频率对小滴头滴灌土壤湿润区的影响,在实验室对沙土和中壤土进行了膜下间歇滴灌试验,滴头流量分别为0.3、0.5、0.7L/h;灌水频率分别为1、2、3、4次灌完。在灌水量相同的情况下观测了土壤的湿润区运移过程和含水率分布。结果表明,小滴头流量下改变滴水频率对土壤湿润体的大小影响很小;随着灌水频率的增加,土壤湿...  相似文献   

18.
The infiltration and redistribution of soil moisture under surface drip irrigation considering hysteresis were investigated in two soils (loamy sand and silt loam) of different texture. The effect of continuous versus intermittent application of 1, 2 and 4 l/h to the soils was evaluated in terms of wetting front advance patterns and deep percolation under the root zone. For this purpose, a cylindrical flow model incorporating hysteresis in the soil water retention characteristic curve, evaporation from the soil surface, and water extraction by roots was used. The results show that, compared with continuous irrigation, pulse irrigation slightly reduces the water losses under the root zone in both cases (with and without hysteresis). Also, at the total simulation time, in both types of irrigation, hysteresis reduces significantly the water losses under the root zone. Finally, the effect of hysteresis was found to be greater at higher discharge rate (4 l/h) and consequently at higher water content at the soil surface.  相似文献   

19.
Designing drip irrigation systems involve selection of an appropriate combination of emitter discharge rate and spacing between emitters for any given set of soil, crop, and climatic conditions, as well as understanding the wetted zone pattern around the emitter. The exact shape of the wetted volume and moisture distribution will depend on many factors, including soil hydraulic characteristics, initial conditions, emitter discharge rate, application frequency, root characteristics, evaporation, and transpiration. Multi-dimensional nature of water flow, plant uptake and high frequency of water application increase the complexity in modelling soil moisture dynamics from trickle irrigation. Researchers used analytical methods, semi-analytical methods and numerical methods to Richards’ equation using certain boundary conditions to model the infiltration from point source irrigation for use in design, install, and manage of drip irrigation systems due to their merits over direct measurements. Others developed models based on Green-Ampt equation, empirical models using regression techniques/dimensional analysis techniques/moment approach techniques/artificial neural networks on this topic to describe infiltration from a point/line sources. A review on these models developed under each category is presented in this study. Other knowledge gaps identified include (a) effect of variations in initial moisture content and packing conditions, (b) precision in observing the wetting front and soil–water content, (c) validity of soil surface boundary conditions, (d) effect of crop root architecture and its withdrawal pattern for different input parameters, (e) effects of gravitational gradients, (f) stratification in the soils, and (g) impact of soil hysteresis. The review promotes better understanding of the soil water dynamics under point source trickle emitters and helps to identify topics for more emphasis in future modelling activity.  相似文献   

20.
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   

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