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1.
河套灌区农田地下水埋深普遍较浅且年内波动较大,明确不同膜下滴灌条件下深层土壤水分对根区的补给作用及作物根系吸水的响应差异有利于膜下滴灌技术的完善和推广。本研究开展了连续2 a(2017—2018年)的春玉米田间试验,设置3个膜下滴灌灌溉水平,分别控制土壤基质势下限为-10 kPa(S1)、-30 kPa(S3)和-50 kPa(S5)。利用HYDRUS-2D模型模拟0~120 cm深度土壤含水量、根层下边界(100 cm深度处)水分通量和作物根系吸水速率。结果表明,经过率定后的HYDRUS-2D模型对0~120 cm深度土壤含水量模拟结果的根均方差(RMSE)和决定系数(R~2)分别为0.039~0.042 cm~3·cm~(-3)和0.78~0.73,模拟结果可靠。膜下滴灌农田100 cm和120 cm深度处土壤含水量较高且处理间差异不大,说明不同滴灌条件对于100 cm以下深层土壤含水量影响较小;但不同处理显著影响根区下边界的水分通量和根系吸水速率。基质势下限控制水平越低,深层土壤水分对于根区的补给量(毛管上升)越大,S1、S3、S5生育期内累积补给量在31.9~49.6 mm之间。S5处理根系吸水速率较低,根系吸水受到显著抑制,从而造成作物生长指标和产量显著低于S1和S3处理(P0.05);而S1和S3之间籽粒产量差异不显著。综上,在本研究所设置的3个滴灌处理中,S3生育期内灌溉定额为240~300 mm,既较S1显著减少灌水量、提高水分利用效率,又具有较好的根系活力,有效利用深层土壤水分,因此建议该地区春玉米膜下滴灌的灌水下限为-30 kPa。  相似文献   

2.
利用埋在滴头正下方0.2m深度的真空表负压计,通过控制土壤基质势下限(-5,-10,-15,-20,-25kPa),研究盐碱地覆膜滴灌条件下土壤基质势对糯玉米(中糯1号)的生长、产量形成过程和灌溉水利用效率的影响。2005和2006年的试验结果表明:糯玉米的株高、茎粗、叶面积指数、地上部分干物质积累量、叶绿素含量等都随着土壤基质势的升高而增加,土壤基质势越高,糯玉米鲜食果穗产量越高,果穗性状也越好;土壤基质势在-5kPa时,糯玉米产量最高;土壤基质势在-10~-15kPa时,灌溉水利用效率最高。  相似文献   

3.
滴灌条件下马铃薯耗水规律及需水量的研究   总被引:8,自引:0,他引:8  
通过田间试验,用水量平衡法和蒸渗仪实测了不同滴灌灌水控制方式下的马铃薯耗水量。结果发现,在滴灌条件下,马铃薯水分腾发量(ET)受土壤基质势下限的影响要比灌水频率大。在土壤基质势高于-25kPa时,ET主要受气象因素的影响;土壤基质势降低时,会导致马铃薯腾发量的下降;当土壤基质势低于-45kPa时,马铃薯就会受到明显的水分胁迫,引起腾发量大幅度下降。大于或等于1次/4d滴灌灌水频率对马铃薯的腾发量影响不明显;但当滴灌灌水频率为1次/6d或1次/8d时,由蒸渗仪测得的马铃薯腾发量明显低于更高频率处理。可以用-25kPa水势处理下的腾发量作为滴灌马铃薯的参照腾发量。研究表明,20cm蒸发皿的蒸发量与马铃薯腾发量之间有非常好的相关性,用20-cm蒸发皿的蒸发量作为灌溉计划的参考量是可行的。  相似文献   

4.
通过对甘肃河西地区膜下滴灌春玉米种植条件下土壤水分、盐分的观测,分析了膜下滴灌春玉米生育期土壤水分、盐分动态变化及其产量和水分利用效率。结果表明:不同生育期,同一土层深度,土壤水分含量高低分布与土壤盐分含量高低分布相反,均表现出土壤不同深度盐分含量高的区域相应水分含量低,滴灌带之间土壤盐分积累较滴头之间显著;灌水定额480 m~3·hm~(-2)处理,灌溉水分在土层纵向运移显著,深层渗漏明显,灌水定额420 m~3·hm~(-2)处理,灌溉水在土壤不同深度横向层面运移显著,有利于作物吸收利用;膜下滴灌能够在滴水过程中明显降低土壤表层0~40 cm盐分含量,土壤下层40~100 cm为盐分聚集区域;灌水定额420 m~3·hm~(-2)处理,春玉米产量构成和水分利用效率较高。从作物生长水盐环境及高效节水的角度出发,灌水定额420 m~3·hm~(-2)处理的效益最优。  相似文献   

5.
华北平原滴灌条件下土壤水势对萝卜生长的影响   总被引:9,自引:1,他引:9  
通过控制滴灌滴头下20cm深处土壤水势下限(-15kPa,N1;-25kPa,N2;-35kPa,N3;-45kPa,N4;-55kPa,N5),研究了不同处理土壤水势随时间和空间的变化规律,以及不同土壤水势处理对萝卜叶面积指数、叶绿素含量、周径膨大、干重积累等生长参数的影响,并对各处理间产量、水分利用效率进行了比较,发现在华北平原下半年降雨较多的情况下种植秋萝卜:(1)不同土壤水势处理对萝卜的生长发育没有明显影响;(2)不同处理水分利用效率不同:N5>N4>N3>N2>N1;(3)滴灌条件下,不同土壤水势处理萝卜的平均重量和产量都高于地面灌溉。  相似文献   

6.
针对南疆地区水资源短缺、棉田水分利用效率低等问题,研究膜下滴灌条件下土壤水分下限调控对棉花生长、产量、品质和水分利用效率的影响。以棉花品种新陆中66号为材料,以田间持水量(FC)为土壤水分上限,棉花生育期设置85%FC(T1)、75%FC(T2)、65%FC(T3)、55%FC(T4)和45%FC(T5)5个土壤水分下限来调控土壤水分。结果表明:土壤水分下限的提升对株高和生物量有明显的促进作用, 土壤水分下限从 45%FC增至85%FC,棉花株高和生物量分别增加了25.80%和25.38%;随着土壤水分下限的降低,灌溉定额减少,T1处理灌溉定额最大(378 mm),T2、T3、T4、T5处理与之相比分别节水11.64%、33.07%、33.95%、46.83%;随着土壤水分下限的提升,棉花产量逐渐增大,但土壤水分下限过高,棉花单株有效铃数降低,产量增加不再明显,水分利用效率较低;土壤水分下限为75%FC时棉花单株有效铃数、单铃重增加,产量和水分利用效率分别达到7 146.4 kg·hm-2和1.40 kg·m-3;土壤水分调控对棉花纤维品质有显著影响,土壤水分下限越低,马克隆值越大,成熟度指数越高,断裂比强度和断裂伸长率减少,采用主成分分析法得出T2为棉花品质综合较优的处理。因此,建议在膜下滴灌方式下南疆盐碱地区棉花土壤水分下限控制在75%FC为宜,非生育期进行冬灌淋盐,冬灌定额为300 mm,生育期灌溉定额为334 mm,整个生育期灌水12次,灌水周期为8 d。  相似文献   

7.
不同节水措施对马铃薯生长及水分利用的影响   总被引:11,自引:0,他引:11  
结合地膜、保水剂和滴灌系统,研究其在不同土壤基质势下对马铃薯生长及水分利用的影响。结果发现:土壤20 cm处不同土壤基质势下,露地未施保水剂处理有较好的生长势和较高产量,地膜覆盖并施用保水剂处理能提高大中薯率、商品薯率和灌溉水利用率;土壤基质势在-20 kPa及-25 kPa下,马铃薯生长势、产量及块茎商品性差异不大,但较低的土壤基质势会削弱保水剂的保水性能。试验结果表明:晚播春马铃薯不适宜在整个生育期内覆盖地膜,采用保水剂与滴灌系统相结合可以达到节水增产的目的。  相似文献   

8.
为探索干旱地区有利于春小麦生长和提高产量的大田滴灌灌水模式,以春小麦永良4号为试验材料,在不同生育期(苗期~分蘖,拔节~孕穗,抽穗~开花,灌浆~成熟)设置5个土壤水分下限W1(55%、60%、55%、50%),W2(60%、65%、60%、55%),W3(65%、70%、65%、60%),W4(70%、75%、70%、65%)和充分灌溉(CK)(75%、80%、75%、70%),研究了不同生育期土壤水分调控对河西地区滴灌春小麦生长、产量和水分利用效率的影响。结果表明:一定施肥水平下,随着土壤水分下限的提高,各处理株高、叶面积指数均不断增大,在成熟期充分灌溉(CK)处理分别比W4处理高2.19%和7.93%;不同水分下限处理条件下,春小麦干物质的总积累量和成熟期干物质向籽粒的分配量均为W4处理最大,比CK分别显著高5.63%和17.14%;各处理春小麦产量和水分利用效率随着土壤水分下限的增加均呈先增加后减小的变化趋势,其中W4处理的水分利用效率比W3处理降低2.82%,但其产量分别比W3、CK处理增加7.53%和4.07%。从节水增产的角度考虑,W4处理可作为基于本试验条件下较适宜的水分处理。  相似文献   

9.
民勤绿洲膜下滴灌洋葱节水高产灌溉制度   总被引:2,自引:0,他引:2  
通过TDR土壤水分测定仪结合PC-2S土壤墒情监测系统及作物生理生态指标常规测定方法测定了膜下滴灌洋葱不同灌水处理下土壤水热动态、生长动态、产量效应、水分利用效率、耗水规律及经济效益,并结合TRM-ZS3全自动气象站气象数据比较不同滴灌处理的优越性,分析了不同灌水处理对水热变化、产量、灌溉水利用、耗水特性及效益的影响。研究表明,膜下滴灌土壤水热变化均匀、利用率高,有利于洋葱生长;适宜的滴灌定额条件下(T4)洋葱单株重、横茎及纵茎均较大,产量较对照(CK)增加8.65%,节水21.6%,灌溉定额降低120 mm,生育期耗水降低136.9 mm,水分利用效率提高37.31%,水分生产力达27.0元·m~(-3),净收入增加13.8%。与对照覆膜畦灌相比,滴灌处理生育期耗水强度较对照均降低0.8 mm·d~(-1)以上,能有效降低棵间无效蒸发损失,减少生育期耗水,改善土壤水热状况,提高作物产量、水分利用效率和经济效益,是一种经济可行、易于推广的节水方法。  相似文献   

10.
民勤沙漠绿洲膜下滴灌洋葱灌溉试验研究初探   总被引:2,自引:0,他引:2  
在民勤沙漠绿洲进行了洋葱膜下滴灌灌溉试验研究,结果表明:膜下滴灌适当减少灌水可以促使洋葱更多的利用土壤底墒,灌水相对较少的处理T2底墒利用率最高,分别比T1、T3、对照CK高10.73%、9.85%和9.92%。膜下滴灌不同灌水处理以灌水最多的T3洋葱产量最高,水分利用效率也最高;灌水最多的常规灌溉CK水分利用效率最低,分别比T1、T2、T3低35.28%、55.21%、58.79%。膜下滴灌条件下适当增加灌水量在一定程度上可增加洋葱产量,当灌水量在一定范围内,洋葱产量和水分利用效率均会显著提高。  相似文献   

11.
ABSTRACT (14)C-labeled chlamydospores of Fusarium solani f. sp. phaseoli were exposed to soil at 5, 15, 25, or 30 degrees C at pH 5 or 8 and water potential of -1 kPa or to soil at 0, -1, or -10 kPa at 25 degrees C at pH 6.9. Total carbon loss was greatest at 25 or 30 degrees C at pH 8 and -1 kPa. (14)CO(2) from respiration of chlamydospores and from soil microbes utilizing chlamydospore exudates accounted for the largest share of total carbon loss under all conditions. (14)(CO)(2) from soil microbial metabolism of (14)CO(2) exudates of chlamydospores was greatest in soil at 15, 25, and 30 degrees C, pH 8, and at either -1 or -10 kPa. Chlamydospore germinability in the absence of a C source (nutrient independence), viability in potato-dextrose broth, and virulence to kidney bean declined rapidly after exposure to soil at high temperatures (25 and 30 degrees C), pH 8, and the higher matric potentials (0 to-1 kPa). By contrast, germinability remained high (>50%), as did virulence, in soil at 5 degrees C and -10 kPa even after 70 days of incubation. Carbon loss was inversely correlated with germinability, viability, and virulence after exposure to soil at different pH levels, temperatures, and matric potentials.  相似文献   

12.
Wheat growth in response to soil water deficit play an important role in yield stability. A field experiment was conducted for winter wheat (Triticum aestivum L.) during the period of 2002-2005 to evaluate the effects of limited irrigation on winter wheat growth. 80%, 70%, 60%, 50% and 40% of field capacity was applied at different stages of crop growth. Photosynthetic characteristics of winter wheat, such as photosynthesis rate, transpiration rate, stomatal conductance, photosynthetically active radiation, and soil water content, root and shoot dry mass accumulation were measured, and the root water uptake and water balance in different layer were calculated. Based on the theory of unsaturated dynamic, a one-dimensional numerical model was developed to simulate the effect of soil water movement on winter wheat growth using Hydrus-1 D. The soil water content of stratified soil in the experimental plot was calculated under deficit irrigation. The results showed that, in different growing periods, evapotranspiration, grain yield, biomass, root water up- take, water use efficiency, and photosynthetic characteristics depended on the controlled ranges of soil water content. Grain yield response to irrigation varied considerably due to differences in soil moisture contents and irrigation scheduling between seasons. Evapotranspiration was largest in the high soil moisture treatment, and so was the biomass, but this treatment did not produce the highest grain yield and root water uptake was relatively low. Maximum depth of root water uptake is from the upper 80 cm in soil profile in jointing stage and dropped rapidly upper 40 cm after heading stage, and the velocity of root water uptake in latter stage was less than that in middle stage. The effect of limited irrigation treatment on photosynthesis was complex owing to microclimate. But root water uptake increased linearly with harvest yield and improvement in the latter gave better root water uptake under limited irrigation conditions. Appropriately controlled soil wate  相似文献   

13.
Efficient water delivery systems such as drip irrigation can contribute towards increasing crop yield potential, improving crop water and fertilizer use efficiency. However, critical management considerations such as subsurface drip irrigation are necessary to attain improved irrigation efficiencies and production benefits particularly under arid regions. The objective of this study was to determine the effect of two irrigation methods, surface and subsurface drip irrigation combined with four irrigation levels, 100, 80, 60 and 40% of crop evapotranspiration on yield and yield components of potato grown on sandy soil. The field experiments were conducted in the years 2008 and 2009. In terms of soil water availability to plants, subsurface drip provided more favorable growth conditions for plant growth and maintained higher soil water content at the root zone, which resulted in a significant higher potato yield compared to surface drip irrigation. The difference between the two irrigation methods on yield components was concentrated on the mean tuber weight per plant, while no significant difference was found on the tuber number per plant. Reducing the amounts of applied water significantly decreased total potato yield and its components. Under subsurface drip irrigation, reducing amounts of applied water to 80% ETc gave comparable yield and yield components to surface drip at full irrigation supply, indicating that 20% irrigation water can be saved without affecting the potato yield. At all irrigation levels, subsurface drip recorded higher water use efficiency (WUE) over surface drip. Maximum value was observed at 40% ETc. Fertilizer use efficiency (FUE) was also higher under subsurface drip and reduced significantly under both irrigation methods with increasing water deficit. These results suggested that subsurface drip offers the potential of better water management with respect to saving and distribution of water in the root zone and to obtain maximum yield accompanied by highest water and FUE.  相似文献   

14.
灌溉方法对温室栽培番茄产量及水分利用效率的影响   总被引:2,自引:0,他引:2  
用温室小区栽培试验的方法,研究滴灌、渗灌、沟灌三种灌溉方法对番茄养分吸收、产量及水分利用效率的影响;结果表明,温室番茄栽培采用渗灌灌溉,在其它条件相同的情况下,1 m3灌溉用水生产出的番茄数量是沟灌的1.9倍、滴灌的1.2倍,滴灌则是沟灌的1.6倍;在番茄生长的整个生育期内,滴灌土壤水吸力平均值最大为24.20 k Pa,渗灌次之为23.11 k Pa,沟灌最小为22.01 k Pa;土壤温度表现出一定差异,但差异相对较小。沟灌处理番茄果实氮素含量高于滴灌和渗灌,而滴灌能够促进番茄的营养器官对氮素的吸收。渗灌和滴灌能有效地调控耕层土壤水分,有利于土壤养分供应,具有明显的节水、增产效果,是理想的设施番茄栽培灌溉模式。  相似文献   

15.
用温室小区试验的方法,通过对番茄株高和茎粗、果实品质和产量以及水分生产效率进行比较,探讨了温室栽培茄果类地下滴灌灌水控制下限的适宜取值范围。结果表明:在壤质土壤的试验地上,当地下滴灌管埋深为30 cm、计划湿润层深为15 cm~45 cm(厚度30 cm)、湿润比取0.7、灌水控制上限取田间持水量时,将土壤水吸力30 kPa作为控制灌水的下限,有利于番茄植株生长发育,可以达到高产、优质、节水的目的。  相似文献   

16.
膜下滴灌布置方式对土壤水盐运移和产量的影响   总被引:3,自引:0,他引:3  
以棉花主要根系层各生育期保持适宜土壤含水率为灌水目标,设置一膜单管四行和一膜双管四行两种毛管布置方式,以TRIME-T3管式TDR测定土壤含水率指示灌水,开展膜下滴灌大田试验,研究了干旱区膜下滴灌棉田土壤水盐运移规律及分布特征,并对不同滴灌模式下的棉花产量和灌溉水生产效率进行评价。结果表明:膜下滴灌单、双管布置棉花生育期内灌溉定额分别为390、550 mm;双管布置在10~40 cm棉花主要根系层形成适宜作物生长的淡化脱盐区,生育期内棉花主要根系层土壤含水率处于适宜的范围,灌水均匀度高,控盐效果好,棉花生长不受水盐胁迫;单管布置盐分随水分运移至湿润锋边缘至外行,棉花主要根系层有积盐的趋势,加上滴头流量大,不利于淡化脱盐区的形成。膜下滴灌毛管布置方式决定土壤水盐分布特征,进而影响植株对水分和养分的吸收,单、双管布置棉花产量分别为5 355、6 075 kg·hm~(-2),灌溉水生产效率分别为1.38、1.11 kg·m~(-3),单管布置灌溉水生产效率较高。  相似文献   

17.
无压灌溉日光温室番茄作物-皿系数研究   总被引:1,自引:0,他引:1  
以-25 kPa作为土壤水势临界值,将作物-皿系数(Kcp)设为0.2,0.4,0.6,0.8,1.0,1.2六个处理, 研究了不同灌溉水量时的番茄产量、品质和灌溉水利用效率.通过经济效益评价,研究了杨凌地区无压灌溉温室番茄获得最高经济效益时的作物-皿系数.通过张力计读数变化规律,研究了利用张力计测量无压灌溉湿润体内土壤水势的特点.研究结果表明,Kcp为0.2~0.8时, 灌溉水量的增加对番茄产量影响不大;Kcp为1.0~1.2时,灌溉水量的增加能显著提高番茄产量和果实大小;Kcp为0.2时的灌溉水量能极显著提高番茄的灌溉水利用效率.在综合考虑了杨凌地区水价、番茄使用目的和市场价格波动规律后,Kcp取值1.2能获得最高的经济效益.作物-皿系数法计算灌溉水量时的滞后性特点和张力计埋设位置,是判断利用张力计监测土壤水势临界值方法有效性的两个重要因素.  相似文献   

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