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针对比转速为74~112的5台内混式自吸离心泵,采用3种不同直径吸水管和6种不同隔舌间隙,对其规定高度自吸时间和极限真空度进行了较全面的试验研究,并对试验结果进行了综合分析。结果表明,对于内混式自吸离心泵,规定高度自吸时间总体上随吸水管内初始存气量的增加而成线性递增,而极限真空度与吸水管内的初始存气量无关;当隔舌间隙为1~6 mm时,隔舌间隙越小,自吸性能越好;泵的额定流量越大,自吸性能受隔舌间隙的影响越大。该研究对内混式自吸离心泵的水力设计、部分结构参数的确定以及自吸性能的进一步提高具有较重要的意义。 相似文献
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Field experiment was carried out to investigate the effect of soil matric potential (SMP) on tomato yield, evapotranspiration (ET), water use efficiency (WUE) and irrigation water use efficiency (IWUE) under drip irrigation condition in North China Plain. The experiment included five treatments, which controlled SMP at 0.2 m depth immediately under drip emitter higher than −10 (S1), −20 (S2), −30 (S3), −40 (S4) and −50 kPa (S5), respectively, after tomato plant establishment. The results showed that different SMP affected irrigation amount and tomato ET. Irrigation amount decreased from 185 mm (S1) to 83.6 mm (S5) in 2004, and from 165 mm (S1) to 109 mm (S5) in 2005, respectively. The ET decreased from 270 mm (S1) to 202 mm (S5) in both years. However, it was found that SMP did not affect the tomato yield significantly, for the range of SMP investigated. Both WUE and IWUE increased as SMP decreased. The maximum WUE (253 and 217 kg/ha mm) and IWUE (620 and 406 kg/ha mm) were for S5 in 2 years, whereas the minimum WUE (178 and 155 kg/ha mm) and IWUE 261 and 259 kg/ha mm) were for S1 in 2004 and 2005. Based on the above results, therefore, it is recommended that if the tomatoes are well irrigated (SMP is higher than −20 kPa) during establishment, controlling SMP higher than −50 kPa at 0.2 m depth immediately under drip emitter can be used as an indicator for drip irrigation scheduling during following period of tomato growth in North China Plain. 相似文献
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负压供水下盆栽大豆叶片的光合生理研究 总被引:1,自引:0,他引:1
试验采用一种自制装置,在负压灌溉原理的基础上,通过设置一系列供水吸力梯度,结合盆栽方式对大豆叶片叶绿素含量、光合及荧光参数的变化进行了研究.结果表明:供水吸力增加,土壤重量含水量下降,大豆叶片叶绿素a(Chl a)、叶绿素b(Chl b)含量降低,类胡萝卜素(Car)含量增加; 吸力处理在50~70 hPa时光合参数均保持在较高的水平,气孔限制是光合速率(P n)下降的主要原因,120、140 hPa处理时非气孔限制起主要作用;随着光强(PAR)的增加,电子传递速率(ETR)增加,实际光量子产量(Yield)与光化学淬灭(qP)下降,非光化学淬灭(qN)上升,4个处理中50 hPa吸力下的大豆叶片活性较高. 相似文献
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《Communications in Soil Science and Plant Analysis》2012,43(1-2):258-264
The improvement of water and nutrient efficiency leads to a production model that is more sustainable with less water, fewer fertilizer inputs, and less environmental damages. High-technology fertigation equipment permits high precision in the nutrient solution application. Besides, the field measurement of soil water content by tensiometers and the extraction of soil solutions by suction cups allow a dynamic methodology management in agreement with real crop requirements. This trial was carried out to compare this dynamic fertigation management method (using tensiometers and suction cups) for tomato crops (Lycopersicum sculentum Mill. Forteza) under Mediterranean greenhouse conditions with other methods: the local traditional model, based only on technical consulting, and the classical model, by means of estimation of Kc and nutrient extractions references. The parameters studied were tomato yield, water, and fertilizer amounts applied during the cultivation as well as water- and fertilizer-use efficiency. The water used to prepare the nutrient solution was classified as C4-S3 following the Riverside classification system. Plants were grown from 15 August to 20 April. The results show that the supply of fertilizers during the cultivation has been significantly lower with classical and dynamic models. Dynamic method shows greater efficiencies for all the elements, except for potassium, and also decreases the water consumption, not affecting total yield. 相似文献
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扇吸式太阳能杀虫灯在鲜食玉米田的应用效果及对节肢动物生物多样性的影响 总被引:1,自引:0,他引:1
为明确扇吸式杀虫灯在鲜食玉米田间的应用效果及对节肢动物生物多样性的影响,采用抽样鉴定方法调查扇吸式杀虫灯的诱虫谱,通过田间试验调查其对主要害虫亚洲玉米螟Ostrinia furnacalis的控制范围和防控效果,并采用黄板、糖醋酒液和陷阱法取样调查其对玉米田间节肢动物生物多样性的影响。结果表明,扇吸式杀虫灯在鲜食玉米田可诱集9目40科的昆虫,对亚洲玉米螟的有效控制距离在60 m左右,单灯控制面积约1.1 hm2。在大喇叭口期,灯光防控处理对亚洲玉米螟的株防效为25.83%,显著低于化学防控处理的76.74%;在乳熟期,化学防控处理的虫孔减退率为75.29%,显著高于灯光防控处理的21.18%,灯光防控处理、化学防控处理和对照的茎秆活虫数、虫孔隧道长度和雌穗防效差异均不显著。距灯80 m范围内不同距离的主要害虫与天敌种群数量基本一致,玉米不同生育期节肢动物群落多样性指数、均匀性指数、优势集中性指数和相似系数变化较大,但在同一生育期不同距离间均无显著差异,说明田间节肢动物群落主要受玉米生育期的影响,扇吸式杀虫灯对田间主要害虫和天敌种群无显著影响。表明扇吸式杀虫灯对亚洲玉米螟的防治效果有限,对田间节肢动物多样性无显著影响,可作为鲜食玉米田防治亚洲玉米螟的辅助手段,但无法替代化学防治。 相似文献
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Urinations of ruminants on grazed pastures increase the risk of nitrate leaching. The study investigated the effect of reducing the length of the grazing season on nitrate leaching from a coarse sandy, irrigated soil during 2006–2007 and 2007–2008. In both years, precipitation was above the long‐term mean. The experiment was initiated in a 4‐yr‐old grass‐clover sward in south Denmark. Three treatments were as follows grazing only (G), spring cut followed by grazing (CG) and both spring and autumn cuts with summer grazing (CGC). Nitrate leaching was calculated by extracting water isolates from 80 cm depth using ceramic suction cups. Because of considerable variation in measured nitrate concentrations, the 32 installed suction cups per treatment were insufficient to reveal differences between treatments. However, weighted nitrate leaching estimations for G, CG and CGC showed estimated mean nitrate N concentrations of 23, 19 and 13 mg/L for an estimated proportion area occupied by urine patches of 0.33, 0.26 and 0.16, respectively. Thus, N concentrations in G and CG exceeded the EU limit of 11.3 mg N/L. Under the prevailing conditions, the time of urination did not appear important. The estimated background leaching calculated from suction cups presumably not situated under urine patches resulted in mean nitrate N concentrations of 2.6 mg/L. 相似文献
10.
Nitrate leaching in a silage maize field under different irrigation and nitrogen fertilizer rates 总被引:4,自引:0,他引:4
Mahdi Gheysari Seyed Majid Mirlatifi Mehdi Homaee Gerrit Hoogenboom 《Agricultural Water Management》2009,96(6):946-954
Quantification of the interactive effects of nitrogen (N) and water on nitrate (NO3) loss provides an important insight for more effective N and water management. The goal of this study was to evaluate the effect of different irrigation and nitrogen fertilizer levels on nitrate-nitrogen (NO3-N) leaching in a silage maize field. The experiment included four irrigation levels (0.7, 0.85, 1.0, and 1.13 of soil moisture depletion, SMD) and three N fertilization levels (0, 142, and 189 kg N ha−1), with three replications. Ceramic suction cups were used to extract soil solution at 30 and 60 cm soil depths for all 36 experimental plots. Soil NO3-N content of 0-30 and 30-60-cm layers were evaluated at planting and harvest maturity. Total N uptake (NU) by the crop was also determined. Maximum NO3-N leaching out of the 60-cm soil layer was 8.43 kg N ha−1, for the 142 kg N ha−1 and over irrigation (1.13 SMD) treatment. The minimum and maximum seasonal average NO3 concentration at the 60 cm depth was 46 and 138 mg l−1, respectively. Based on our findings, it is possible to control NO3 leaching out of the root zone during the growing season with a proper combination of irrigation and fertilizer management. 相似文献