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1.
为探讨农田在不同调控措施下的土壤水蒸发量,以衡水试验场为例,以土壤水流动系统为指导,设计沟播盖腐熟秸秆、沟播不盖秸秆、盖膜穴播、平播对照4种不同调控措施下的田间试验,运用土壤水分均衡原理和土壤水分通量法,计算了不同调控措施下的土壤水蒸发量.结果表明,盖膜穴播田块的土壤水蒸发量最小,沟播盖腐熟秸秆次之,沟播不盖秸秆最大,说明盖膜穴播的土壤水分调控效果最好,而秸秆覆盖的效果优于不盖秸秆.  相似文献   

2.
To study the effect of straw mulching on soil water evaporation, it is necessary to measure soil water evaporation under different conditions of straw mulching during the soil thawing period. A field experiment was conducted in winter, and soil evaporation was measured using a microlysimeter on bare land (LD) and 4500 (GF4500), 9000 (GF9000) and 13500 \(\hbox {kg/hm}^{2}\) (GF13500) straw mulch. The influence of different quantities of straw mulch on soil water evaporation during the thawing period was analyzed using the Mallat algorithm, statistical analysis and information cost function. The results showed that straw mulching could delay the thawing of the surface soil by 3–6 d, decrease the speed at which the surface soil thaws by 0.40–0.80 cm/d, delay the peak soil liquid water content, increase the soil liquid water content, reduce the cumulative evaporation by 2.70–7.40 mm in the thawing period, increase the range of soil evaporation by 0.04–0.10 mm in the early stage of the thawing period, and reduce the range of soil evaporation by 0.25–0.90 mm in the late stage of the thawing period. Straw mulching could reduce the range of and variation in soil evaporation and can reduce the effect of random factors on soil evaporation. When the amount of straw mulch exceeded 9000 \(\hbox {kg/hm}^{2}\), the effect of increasing the amount of straw mulch on daily soil water evaporation was small.  相似文献   

3.
The mulching of agricultural fields and gardens with stones, pebbles, volcanic ash and similar lithic materials is a variant agricultural strategy uniquely suited to the constraints of a dryland environment. While the agricultural literature contains reports on limited experiments with stone or gravel mulch, data regarding the employment of lithic mulch are lacking. This paper works to bridge this gap by comparing empirical data collected from prehistoric pebble-mulch gardens in the Galisteo Basin (New Mexico) to contemporary agricultural experiments with lithic mulch. Such past-present and experimental-real world comparisons allow us to more fully address the effectiveness of lithic mulching as an agricultural strategy. It is affirmed that lithic mulch is applied to garden plots, especially during periods of drought, in order to reduce soil erosion from wind and water, increase soil temperature to extend the growing season, increase water infiltration, and reduce the evaporative loss of water from wind and sun. The cumulative effect of this soil and water conserving technique is an increase in crop biomass and crop yield.  相似文献   

4.
Recharge and discharge, such as rainfall infiltration and evapotranspiration in vertical direction, are major processes of water cycle in the shallow groundwater area of the North China Plain. During these processes, soil water movement in the unsaturated zone plays an important role in the transformation from rainfall infiltration to groundwater. The soil water movement models were developed by using HYDRUS-1D software at two typical experimental sites in Cangzhou (CZ) and Hengshui (HS) with different soil, vegetation and similar climate conditions. As shown in the results, the comparison in precipitation infiltration features between the two sites is distinct. The soil water experiences strong evaporation after precipitation infiltration, which accounts for 63% of the total infiltration at the HS site where the soil is homogenous. It is this strong evaporation effect that leads to slight increase of soil water storage. At the CZ site, where the soil is heterogeneous, the evaporation effect exists from July to October of the simulation period. The total evaporation accounts for 33% of the total infiltration, and the evaporation rate is slow. At the end of the simulation period, the soil water storage increases and the water table decreases, indicating a strong storage capacity at this site.  相似文献   

5.
自然界水循环中的水量平衡原理与干旱研究   总被引:1,自引:1,他引:0  
颜开  余平佬  熊珊珊 《水文》2011,31(2):38-41
概述了国际、国内干旱研究概况。指出区域多年平均降水量的多少,反映了区域中水资源对生态、经济发展承载力的大小。农业生产中把防止土壤蒸发措施叫抗旱;水利建设中拦河筑坝、引水灌溉、凿井汲水,叫兴修水利抗旱救灾。因此干旱的实质是径流消退、土壤蒸发自然衰减并达到区域内水资源对生态和经济发展的承载能力下降到某一限度或阀值的称谓,如人们感官中的小旱、大旱等。根据径流消退公式和土壤蒸发衰减曲线,参照大风、地震研究方法,输入降水、逐日蒸发观测值,即可成功实现统一干旱标准的实时旱情监测。  相似文献   

6.
随着西北旱区生态恢复工程的实施,该区生态环境持续改善,植被盖度不断增加。但植被冠层截留与蒸腾耗水加剧了包气带水分的亏空程度,减小了降雨对地下水的补给。采用原位试验方法,分析了植被覆盖区和裸土区不同深度土壤水势的变化规律。结果表明,受蒸发和蒸腾的共同作用,植被覆盖区平均土壤水势(-74k Pa)远低于裸土区(-16k Pa),且变化剧烈,土壤水以向上运动为主。而裸土区土壤水势高,变化小,40cm以下土壤水向下运移,因此可以持续补给地下水。采用Hydrus-1D软件进行了长序列土壤水数值模拟,定量分析了植被盖度增加与地下水补给的关系。数值模拟结果表明,在裸土条件下,降雨对地下水的补给量介于82~333mm/a之间,平均值为197mm/a,平均降水入渗补给系数为0.53。而在植被覆盖的情况下,地下水的补给量几乎为0。最后,从植被蒸腾耗水和冠层降水截留2个方面讨论了旱区植被盖度增加对降雨入渗补给地下水的影响,提出了旱区水与生态和谐发展的建议。  相似文献   

7.
To reveal the influencing effect of the long-term straw mulching on the soil moisture, this paper employed the field experiment data in 2010 of a typical area of Taihang Mountains plain, observed the soil moisture dynamic regularities under different mulching patterns by virtue of depressimeter and neutron probe, analyzed the characteristics of soil water content and storage in different depths and seasons under the long-term straw mulching. The results showed that the long-term straw mulching can keep the soil moisture conservation of the deep, while decreased the shallow. (1) The long-term straw mulching can changed the type of soil water movement. If no straw mulching, the type is mainly evaporation-infiltration. And with straw mantle the type would change into infiltration. The number of zero flux plane would be reduced or absent. (2) The long-term straw mulching can increase the soil water reserves of the whole soil profile with the depth between 0 cm and 220 cm. But the soil water content of the layer from 30 cm to 80 cm decreased and the soil water content of the layer from 80 cm to 220 cm increased instead., The effect of soil moisture conservation on winter wheat is not obvious; (3) With no straw mulching, the depth of infiltration recharge by rainfall or irrigation is shallower than 80 cm. In a straw mulching, the influence depth is can extend to 120 cm; (4) With no straw mulching , there is a deep layer on the depth of 220 cm between March and June, while this layer will disappear with a long-term straw mulching.  相似文献   

8.
膜下滴灌微区环境对土壤水盐运移的影响   总被引:1,自引:0,他引:1       下载免费PDF全文
基于膜下滴灌特有的"膜中"、"膜间"、"膜边"、"膜外"微区环境,利用2011—2013年田间对比试验方法获取的5 960个数据,运用柯布-道格拉斯模型,构建膜下滴灌环境土壤层次、灌水定额、土壤水分、气温、蒸发综合因素与土壤水盐关系及影响效应分析模型.结果表明,在气候干旱、蒸发强烈灌区,地膜覆盖与滴灌结合的地表介面灌溉形式下,土壤水盐具有水平方向由"膜中"向"膜边"地表裸露区定向迁移,垂直方向土壤水盐则由下向上层运移且趋于"膜外"边界积累的趋势,尤其是气温与蒸发因素交互作用,推进膜下滴灌土壤水盐在地膜覆盖与土壤裸露区域空间运移,研究结果进一步揭示了膜下滴灌"土壤水盐定向迁移"形成机理,为膜下滴灌土壤水盐地表排放模式应用提供了依据.  相似文献   

9.
冻结-冻融过程中水分运移机理   总被引:9,自引:1,他引:9  
为研究冻结-冻融过程中水分运移机理,在天山北麓平原通过人为控制潜水不同埋深条件下的模拟试验和田间土壤水分运移观测试验,分析了土壤水势分布和土壤含水量分布特征,发现冻结过程不同潜水埋深条件下的土壤水分运移机理、土壤水与潜水之间的相互转化关系有明显差异.在冻结过程中,潜水浅埋条件下,冻结层下界面与潜水面之间土壤水分运移状态呈上渗型,土壤水向冻结层下界面处运移、积累,同时引起潜水蒸发损耗使潜水位下降,表现出地下水向土壤水转化的基本特征.潜水深埋区,土壤水分运移状态呈上渗-入渗型,同样土壤水向冻结层下界面处运移、积累,同时潜水得到一定的入渗补给并使潜水位上升,表现为土壤水向地下水转化的特征.冻融过程中对于不同潜水埋深,由原来各自的土壤水分运移状态均逐渐转变为入渗型,形成潜水入渗补给,表现为土壤水向地下水转化的特征.冻融期是土壤水资源、地下水资源形成的重要时期,对于干旱少雨的西北地区而言,冻融水的形成、运移和入渗补给地下水具有重要的生态环境意义.  相似文献   

10.
田间试验研究了不同覆盖措施对冬小麦农田土壤含水量及小麦生长状况和水分利用效率的影响.试验包括4个处理:作物生育期秸秆覆盖600 kg/ha(M600)、秸秆覆盖300 kg/ha(M300)、地膜覆盖(PM)和无覆盖处理(CK).结果表明:覆盖处理下的土壤贮水量均高于不覆盖,M600处理能显著增加土壤含水量(0~1m和...  相似文献   

11.
李青华  穆艳  王延平 《地球科学》2019,44(8):2818-2828
以黄土丘陵沟壑区的典型代表米脂为研究区,选取苹果林地生态系统为研究对象,揭示苹果林地的蒸腾蒸发耗散规律及其影响机制,为指导有限水资源条件下苹果产业发展科学布局、优化管理措施及充分挖掘苹果林地的生产潜力提供科学依据.运用热扩散茎流计(TDP)、小型蒸发皿测定了组成苹果林地蒸散的果树蒸腾量和土壤蒸发量,运用水量平衡公式计算了冠层截留量,分析了各气象因子与蒸腾速率的关系,并评估了苹果林地的蒸散量,以期正确认识和评价苹果林地生态水文效应.不同生育期的日均蒸腾速率大小依次为果实膨大期>果实着色期>新梢生长及幼果发育期>萌芽开花期,小时尺度下,不同生育期蒸腾速率到达峰值的时间不同.不同天气条件下,晴天状况下树干蒸腾量明显大于阴天,影响苹果林地蒸腾速率的主要气象因子为太阳辐射和空气温度.果实膨大期及果实着色期为果树耗水的主要时期.降水对蒸腾的影响表现出滞后效应.植被蒸腾量、土壤蒸发量、冠层截留量对蒸散的贡献率由大到小依次为58.9%、26.8%、14.3%.试验期间,降水量大于蒸散量,果园水分收支略有盈余,不同月份土壤水分收支情况不同,应加强萌芽开花期、新梢生长及幼果发育期果园的水分管理.   相似文献   

12.
对于岩质边坡而言,生态边坡防护技术的关键在于植被的形成。为保证植物的生长,客土应同时具备良好的持水性 与渗透性。文章通过室内渗透实验以及蒸发实验研究了不同黄土、硅藻土、秸秆配比条件下渗透性及持水性的耦合关系。 结果表明硅藻土与秸秆的添加能有效降低混合土密度,有利于减小混合物的自重应力、提高边坡稳定性。硅藻土和秸秆单 独掺入时混合土的渗透系数呈指数形式增加,在同等材料用量时,硅藻土对于渗透系数的提高更有效,但当硅藻土和秸秆 以相近的比例掺入时,彼此之间没有形成相互增益,而是此消彼长。硅藻土及秸秆的添加均能增加混合土的持水性,但总 体上使用硅藻土的效果优于秸秆。添加硅藻土、秸秆能够延长土壤的定常蒸发阶段,极大提高了黄土的抗旱能力。  相似文献   

13.
对于岩质边坡而言,生态边坡防护技术的关键在于植被的形成。为保证植物的生长,客土应同时具备良好的持水性 与渗透性。文章通过室内渗透实验以及蒸发实验研究了不同黄土、硅藻土、秸秆配比条件下渗透性及持水性的耦合关系。 结果表明硅藻土与秸秆的添加能有效降低混合土密度,有利于减小混合物的自重应力、提高边坡稳定性。硅藻土和秸秆单 独掺入时混合土的渗透系数呈指数形式增加,在同等材料用量时,硅藻土对于渗透系数的提高更有效,但当硅藻土和秸秆 以相近的比例掺入时,彼此之间没有形成相互增益,而是此消彼长。硅藻土及秸秆的添加均能增加混合土的持水性,但总 体上使用硅藻土的效果优于秸秆。添加硅藻土、秸秆能够延长土壤的定常蒸发阶段,极大提高了黄土的抗旱能力。  相似文献   

14.
流域绿水研究的关键科学问题   总被引:5,自引:0,他引:5  
阐述了开展流域绿水研究的重要意义,分析了流域绿水研究的关键科学问题:①绿水量的测算方法与尺度转换;②流域绿水流的形成、转化及其生态水文响应机理;③流域绿水资源评价与管理。指出流域水资源评价与管理要以降水为基本水资源,综合考虑蓝水和绿水两部分,协调流域上、中、下游生态、生产和生活用水,充分开发利用非生产性绿水资源,平衡自然生态和人类用水。  相似文献   

15.
黄土区坡地土壤水分运动与转化机理研究进展   总被引:56,自引:2,他引:56       下载免费PDF全文
土壤水分是作物生长、植被恢复以及生态环境建设的主要限制性因素.从降雨入渗及再分布、土壤水量转化以及土壤水分动态变化等几方面概述了黄土区坡地土壤水分运动与转化研究进展,认为应该把坡面土壤—植物—大气作为一个物理上的连续统一体,以大气水、地表水、植物水和土壤水相互转化过程和机制为基础,研究坡面土壤—植被—大气界面水分运动和转化规律,为植被恢复重建提供理论依据.  相似文献   

16.
以广西膨胀土为研究对象,考虑植被的影响,进行了现场渗透和植被根系加筋作用力学试验,并在试验结果的基础上,对膨胀土堑坡的植被防护作用进行数值模拟。研究结果表明,植被根系的加筋作用和植被的蒸发、蒸腾作用是从两个不同的方面维持边坡稳定的,并且在降雨过程中的发挥过程有着先后的顺序。根系的加筋作用增强了土体的强度,植被的蒸发、蒸腾作用阻止了土体强度的进一步衰减。此外,植被覆盖下土体的吸湿与脱湿过程应采用不同的渗透曲线,由于植被防护在施工后未长成的一段时间内十分脆弱,所以对生长期内的植被根系力学特性进行研究具有重要意义。项目研究成果可为膨胀土地区堑坡植被防护设计和施工的发展和应用提供有益参考。  相似文献   

17.
地下水浅埋区土壤水的矿化度变化规律及其影响因素浅析   总被引:7,自引:0,他引:7  
土壤水的研究对农田水利、水文地质、生态与环境等都具有很重要的意义 ,本文概略介绍了在黄河三角洲地区开展包气带水分运移试验研究过程中 ,野外获取土壤水的方法及设备。在对水样分析结果进行总结的基础上 ,对试验点土壤水的矿化度变化规律及其影响因素进行了初步的分析。主要结论为 ,在地下水浅埋区 ,地下水与土壤水矿化度变化关系密切 ;蒸发作用与蒸腾作用对土壤水矿化度的影响效果是不同的 ,蒸发作用使上层土壤水的矿化度加大 ,而植被在其生长期降低土壤水的矿化度 ;地下水、植被和土壤性质是影响土壤水矿化度的重要因素  相似文献   

18.
In Mediterranean coastal catchments, water management for preservation of pine forests and other natural areas faces particular challenges. Limited rainfall, water consumption by vegetation as well as subsidence, drainage and salt water intrusion all play an important role. Traditionally forest and water management are carried out independent of one another and do not consider water budget calculations. We show with this study that is very important to have quantitative information of all the components of the water budget as well as the size of the fresh water lenses in the aquifer to be able to integrate the water- and forest management. We use an integrated hydrologic-ecologic methodology based on easily attainable data to assess the monthly water budget of a coastal catchment, Marina Romea (Ravenna, Italy). We present detailed monthly water table records, rainfall data, drainage data, tree density and tree perimeter and use published sap flow measurements of single pine trees (Pinus Pinea) to quantify the actual transpiration of single pine trees in different periods of the year. Transpiration amounts to 10–30 l per day per tree. These values are confirmed by independent estimates of tree transpiration based on our water budget calculations: 9–34 l/tree/day. Because typically there are so many trees in planted pine forests, the total transpiration rates over the whole watershed take up a large percentage (up to 200 %) of the precipitation. In Marina Romea, four monitoring periods out of twelve, the tree transpiration is larger than precipitation. In nine monitoring periods, drainage in the watershed is larger than precipitation or tree water transpiration. The measurements and calculations show that not much freshwater is left to recharge the fresh water lens underneath Marina Romea. Monthly monitoring of groundwater table elevation and salinity in the pine forest of Marina Romea from March 2007 to February 2008 shows that the groundwater table strongly fluctuates and groundwater salinity is constantly very high (up to 17.7 g/l). Analytical calculations based on the Ghyben Herzberg Dupuit principle suggest that even a small continuous annual recharge of 15 mm could form a 2-m deep freshwater lens in the unconfined aquifer. This freshwater lens is not present in the study area and this is due to the fact that tree water transpiration and drainage take out most of the fresh water coming into the watershed. In catchments like Marina Romea, water consumption by the (natural) vegetation and seasonal differences as well as the fact that fresh water lenses are limited in salty surroundings should be taken into account in water and forest management.  相似文献   

19.
地表-地下水系统水、热迁移转化与裸土蒸发机理研究对于水量平衡以及地表能量转化具有重要意义。以鄂尔多斯盆地风沙滩地区为研究区,基于原位蒸渗仪长期观测,结合数值模拟,选择2种地下水位初始埋深分别为80 cm(浅埋深)和290 cm(深埋深)的情景,研究了变饱和带水热迁移转化的动力学过程以及对裸土蒸发的影响。结果表明:变饱和带土壤水的运动规律受水头梯度和温度梯度的共同驱动,且在不同水位埋深条件下呈现不同的运动方式;浅埋深条件下,受水头梯度的作用,土壤的毛细上升高度能够到达地表,蒸发条件下土壤水在毛细力驱动下向上运移,土壤内部不存在零通量面,温度对水分运动的影响较小,发现当地下水位埋深小于毛细上升高度时,地下水在毛细力作用下直接贡献土壤蒸发;深埋深条件下,水头和温度是土壤水运动过程的关键因素,位于地表以下18 cm以浅土壤内部出现孤立的零通量面,阻止了土壤水的向上运移,导致蒸发量减小。当地下水位埋深大于毛细上升高度的1.6倍时,地下水不再直接参与土壤蒸发,但会间接地影响包气带的水分转化;因此模拟期间浅埋深的裸土累积蒸发量约为深埋深累积蒸发量的4倍。  相似文献   

20.
降水模拟实验证明,鄂尔多斯北部沙土层单次降水入渗最大深度小于1 m,降水在土壤中受到蒸发后排泄到大气中。实验证实,只有当土壤含水率达到最大田间持水率,吸附在土颗粒表面的薄膜水才能克服电磁引力转化为重力水,在重力的作用下继续下渗。鄂尔多斯北部的年降水量小而蒸发量大,降水入渗土壤不能形成累积效应,无法形成连续下渗的重力水流。同位素示踪分析表明,土壤水主要来源于地下潜水,结合土壤含水率与TDS分析证实,地下水是通过薄膜水与蒸发-凝结方式补给到土壤水中,薄膜水从高温区向低温区流动,对于等温的薄膜水而言,薄膜水从厚层向薄层流动。同位素分析表明,都思兔河流域的河水、泉水、井水、湖泊、土壤水接受相同的外源水补给。鄂尔多斯盆地降水比地表水与地下水明显富集重同位素,不符合补给区降水同位素特征。鄂尔多斯盆地地下水分水岭与基底断裂带重合,据此推断,外源水以深循环方式通过基底断裂带补给鄂尔多斯盆地,在干旱地区形成自流井群。  相似文献   

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