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黑河流域山前绿洲灌溉农田蒸散发模拟研究 总被引:13,自引:3,他引:10
基于Penman-Monteith蒸散公式, 应用土壤-植被-大气系统水分和能量传输理论对Shuttleworth-Wallace蒸散模型的参数进行改进, 得出解析计算农田作物蒸腾和土壤蒸发的双源模型. 对黑河流域山前绿洲农田春小麦生长期土壤蒸发、作物蒸腾以及总蒸散过程进行了模拟研究. 对模型的计算结果以田间观测和水量平衡方法进行验证, 误差目标NSE=0.98, 说明该模型用于农田蒸发和蒸腾的计算是合理的. 对影响蒸发和蒸腾的主导因子净辐射、叶面积指数、土壤含水量进行了相关性分析, 得出三者的变化对土壤蒸发、作物蒸腾的影响. 通过不同时期日蒸散发量变化特征的分析, 表明土壤、冠层两个界面对能量和水汽传输的交互影响效应显著. 相似文献
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研究了灌溉系统供水计算模型.将灌区内作物概化为水稻和旱作物两种,分别以水量平衡原理和土壤水分模拟理论为基础建立稻田和旱作物灌溉供水计算模型.模型中所需要的参数如水文气象、土壤和作物参数均可通过分析历史资料或实测得到.模型系统可进行实时计算操作,并可预测下次灌溉方案,并在取得实测资料后对原预报方案进行实时修正,从而编制实时灌溉方案.模型还可研究灌溉系统内各子系统的优化供水流量和优化轮灌方案. 相似文献
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根据拉萨站1955~2006年逐日气象资料,采用标准Penman-Monteith方程和Hargreaves方法对西藏高原区拉萨的参考作物蒸发蒸腾量(ET0)进行了对比分析研究,计算结果发现在拉萨的春季和雨季采用Hargreaves方法计算的ET0存在着较大偏差.为了进一步提高Hargreaves方法在该地区的适宜性,引入了平均相对湿度因子,建立改进Hargreaves公式并进行了评价,为拉萨地区准确实用地确定作物需水量和合理的灌溉制度提供了一种简便方法和科学依据. 相似文献
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采取田间试验方法,研究了南方丘陵典型季节性干旱区节水稻基农田作物轮作与灌溉模式的需水规律和稻田水分利用率.结果表明,节水稻基农田作物轮茬与灌溉模式通过对水稻和油菜等作物产生的生长调控作用和补偿生效应,使植株蒸腾量、棵间蒸发量及稻田渗漏量大幅降低,各阶段的腾发量、需水强度和需水模系均发生显著变化,形成了稻基农田作物轮茬与灌溉模式新的需水规律.与常规双季模式相比,节水灌溉双季稻模式、水旱轮作双季稻模式、稻油轮作模式的需水强度分别减少了0.76、1.15、0.71 mm/d,渗漏强度分别减少了0.12、0.16、0.19mm/d,水分利用率提高了30.14%、47.95%、17.81%. 相似文献
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种植条件下降雨灌溉入渗试验研究 总被引:2,自引:0,他引:2
基于清水河平原头营和黑城试验场降雨(灌溉)入渗过程土壤水分运移观测试验数据的分析研究,笔者应用能量观点描述了包气带水分运移的分带性、降雨(灌溉)入渗补给地下水的水分条件和地下水入渗补给过程的基本特征。应用蒸散量模型、土壤水分通量模型,计算了作物生长期的蒸发蒸腾量、土壤贮水量的变化量、400cm深度处的土壤水分渗漏量及渗漏系数。从多年的角度分析了深层土壤水分渗漏量、渗漏系数与地下水入渗补给量和补给系数的关系。它对分析降雨(灌溉)入渗对地下水的补给过程和定量分析地下水入渗补给量、入渗补给系数具有重要价值。 相似文献
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节水灌溉对于干旱半干旱、缺水极缺水的山西来说十分重要,节水灌溉将是“九五”期间水利建设的重点。节水灌溉是一种用尽可能少的水投入获得尽可能多的农作物产量和产值的灌溉模式。节水灌溉的目的是减少从水源到田间输水系统的渗漏和蒸发损失;减少田间储水损失;采用先进灌溉技术减少作物株间蒸发量;优化作物灌溉制度减少作物的无效蒸腾。节水灌溉的技术措施是管灌、喷灌、微灌和渠道防渗、平整土地、划小畦块等。关于节水灌溉的技术问题还需要进一步的研究。 相似文献
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太行山山前平原地下水补给规律分析:以河北栾城为例 总被引:2,自引:0,他引:2
采用水均衡法与通量法对太行山山前平原(河北栾城)进行了地下水补给评价,结果表明:近20 a地下水入渗补给量为8~172mm/a(水均衡法),平均值49.3 mm/a,变化幅度大.其中2004年入渗补给量(63mm/a)比采用通量法计算结果(28.2mm/a)大一倍,表明土壤优先流对入渗补给作用显著.年入渗补给量总体上随有效降雨量增加、地下水位下降速率减少、作物实际蒸发蒸腾量减少而增加,但与有效灌溉量和灌溉量之和的相关性不显著.通过长序列地下水位与灌溉量等数据估算得到研究区侧向净补给量为125.2 mm/a,约占地下水总补给量的71.7%(175.4 mm/a),说明地下水主要以侧向补给为主.同时计算了入渗补给与侧向补给地下水的延迟时间,分别为60 a和1个月. 相似文献
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Tensiometer is one of the most popular and simple instrument for in situ and laboratory measurement of negative pressure or suction in soils. Such measurements in the top soil or root zone are useful for automated optimized irrigation scheduling for different vegetation. The top soil accommodates various salts/contaminants whose main source is storm water runoff, irrigation water and application of crop fertilizers. These salts accumulate in the soil due to evaporation. It is an established fact that tensiometer measures only soil matric suction with the help of a ceramic interface. It is believed that osmotic effect of salts present in the soil does not influence tensiometer measurements. However, there is no systematic experimental verification in the literature to understand the influence of salt laden soil on tensiometer measurements. It needs to be ascertained that the pore size of the tensiometer ceramic will not exhibit semi-permeable membrane characteristics leading to osmotic effect. Such verification is important as it would influence the irrigation scheduling of crops. It is also of interest to know whether the osmotic suction (due to the salts) would increase the water retention characteristics and hence the irrigation requirement. If so, then the tensiometer based irrigation scheduling would be an underestimate of the actual irrigation requirement of crops. To investigate these issues, the present study has performed controlled laboratory suction measurements using tensiometer in a locally available soil, contaminated with known concentration of inorganic salt solution. The total suction of the same salt laden soil has been measured using the WP4 dew point potentiameter technique. The results indicate negligible influence of salts present in the soil on tensiometer measurements. The study demonstrates the incapability of tensiometer to assess the osmotic component of salt present in the soil. This would result in the under prediction of water retention and hence irrigation requirement of the soil. 相似文献
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Dr. Jiftah Ben-Asher 《GeoJournal》1987,15(3):267-272
The potential of the saline water for irrigation against the background of the world's food shortage is reviewed. It is shown that irrigation has improved food situation wherever it has been used. However, irrigation is always associated with salinity problems. Leaching techniques and drip irrigation suggest a partial solution for the problem. The objective of this paper is to review and examine additional solutions in order to increase the use of saline water for irrigation. A quantitative approach to further research on the use of saline water for irrigation is suggested. An analytical solution to the mass-balance equation of nutrients and salt in the soil, which includes a sink term for absorption by a plant, revealed some valuable derivatives, both for planning further research in irrigation with saline water and making decisions about fertilization and soil leaching throughout the growth period of a crop. Preliminary attempts to meaningfully increase the fertilization level of crops irrigated with saline water support the approach that was developed from one of the model's derivatives. 相似文献
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通过对小麦和玉米生长期间的有效降雨量及灌溉水量、灌溉利用系数、灌溉水量及作物产量的关系分析计算 ,阐明了有效降雨量 ,充分利用有效降雨量合理进行灌溉 ,提高灌溉效益的方法。 相似文献
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内蒙古河套灌区浅层地下水化学特征和灌溉适宜性分析 总被引:1,自引:0,他引:1
随着黄河流域水资源供需矛盾加剧,我国特大型灌区——内蒙古河套灌区开始采用黄河水与地下水相结合的方式进行农业灌溉。本研究采集河套灌区内499组地下水样品和1组黄河水样品,在分析地下水和黄河水样品的水化学特征基础上,运用钠吸附比(SAR)、渗透指数(PI)、钠含量(SC)和残余碳酸钠(RSC)以及《农田灌溉水质标准(GB 5084—2021)》对地下水和黄河水的灌溉适宜性进行对比分析。结果表明,地下水与黄河水均为弱碱性水,Ca2+和HC03-为优势离子,Gibbs图显示地下水受到岩石风化淋溶和蒸发浓缩的双重影响,对灌溉适宜性影响较大的钠盐主要来自岩盐溶解。灌溉适宜性分析结果表明,从SAR、PI和RSC指标来看,地下水的灌溉适宜性较好,从SC指标来看,不适宜灌溉的地下水主要分布在灌区北部总排干和灌区南部黄河沿岸;根据农田灌溉水质标准分析,除总砷和氯化物两项指标外,其余指标适宜灌溉样品占比均高于90%,综合评价全区共231组地下水样品适宜灌溉。地下水与黄河水灌溉适宜性对比表明,黄河水的SAR和SC指标灌溉适宜性分析结果较好,地下水的PI和RSC指标灌溉适宜性分析结果较好,根据灌溉水质标准显示黄河水所有指标均适宜灌溉。本研究为日后内蒙古河套灌区合理选用灌溉水源提供数据支撑,为该区域地下水的治理与防控提供科学依据。 相似文献
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T. Asano 《GeoJournal》1987,15(3):273-282
Land application of municipal wastewater is a well established practice in many arid and semiarid countries of the world. Although irrigation with municipal wastewater is in itself an effective form of wastewater treatment, some degree of treatment must be provided to 1) protect public health, 2) prevent nuisance conditions, and 3) prevent damage to crops, soils, and ground-water. Factors affecting irrigation with reclaimed wastewater include irrigation water quality and public health and regulatory considerations. 相似文献
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