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71.
苍盛 《黑龙江八一农垦大学学报》2010,22(1):40-44
采用考虑墙体位移模式和转角的土压力计算方法,能较好地反映挡土墙实际工作条件下的位移情况,并且能计算挡土墙任意转角下的主动土压力,避免了采用库仑主动土压力理论计算得到土压力偏小而使设计安全度降低的缺点。因此,本文提出的土压力计算方法对挡土墙的设计及验算有一定的参考价值。 相似文献
72.
An approach for precision farming under pivot irrigation system using remote sensing and GIS techniques 总被引:1,自引:0,他引:1
The current work is aimed to realizing land and water use efficiency and determining the profitability of precision farming economically and environmentally. The studied area is represented by an experimental pivot irrigation field cultivated with maize in Ismailia province, Egypt. Two field practices were carried out during the successive summer growing seasons (2008 and 2009) to study the response of maize plants single hybrid 10 (S.H.10) to traditional and precision farming practices. Traditional farming (TF) as handled by the farm workers were observed and noted carefully. On the other hand precision farming (PF) practices included field scouting, grid soil sampling, variable rate technology and its applications. After applying PF a dramatic change in management zones was noticed and three management zones (of total four) were merged to be more homogenous representing 84.3% of the pivot irrigation field.Under PF Remote Sensing and Geographic Information System techniques have played a vital role in the variable rate applications that were defined due to management zones requirements. Fertilizers were added in variable rates, so that rationalization of fertilizers saved 23.566 tonnes/experimental pivot area. Natural drainage system was improved by designing vertical holes to break down massive soil layers and to leach excessive salts. Crop water requirements were determined in variable rate according to the actual plant requirements using SEBAL model with the aid of FAO Cropwat model. Irrigation schedule of maize was adopted considering soil water retention, depletion, gross and net irrigation saving an amount of water equal to 93,718 m3 in the pivot irrigation field (153.79 acre). However costs of applying PF were much higher than TF, the economic profitability (returns-costs) achieved remarkable increase of 29.89% as a result of crop yield increment by 1000, 2100, 800 and 200 kg/acre in the management zones 1, 2, 3 and 4, respectively. Finally applying adequate amounts of fertilizers beside water control the environmental hazards was reduced to the acceptable limits. 相似文献
73.
通过水管部门组织科技人员对河套灌区调研为基础,以农业综合节水为目的,在灌区的中游永济灌域隆胜乡境内建设了节水农业示范区,面积为0.28万hm2.节水农业改造工程主要措施:渠道防渗衬砌、平地缩块.节水农业改造工程2002年竣工后,在运行中监测了3年,得出灌溉水量平均减少了12.3%;对示范区水盐动态进行了分析. 相似文献
74.
乐昌峡水利枢纽右岸高边坡风化层深厚,岩石强度弱,大坝右岸坝肩开挖后,将形成约215m的开挖边坡,边坡处于降雨强度大的地区,在施工期边坡开挖过程中的变形稳定,直接影响到碾压混凝土大坝的施工工期,十分关键.为了验算边坡开挖中和开挖后的稳定性,首先采用有限元法,对边坡开挖过程进行模拟,给出边坡的变形、屈服区等应力应变情况,利用强度折减法得到边坡的抗滑稳定安全系数,其次,用刚体极限平衡法计算安全系数,并与有限元的计算结果进行对比分析.在缺少渗流基本资料情况下,对深厚风化层的稳定状态,在极限平衡分析中,进行受降雨影响下的敏感性分析.最后对该工程提出加强观测和排水等措施,对边坡的稳定具有指导意义. 相似文献
75.
基于Hydrus-1D模型的冬小麦根系层水分渗漏分析 总被引:1,自引:0,他引:1
利用Hydrus-1D模型模拟了河北省石津灌区冬小麦水分渗漏情况。结果表明,研究区40%的灌溉降雨量和38%的总供水量流出了200cm边界层,通过设置12种方案得到初始饱和度、2次春灌水量是影响灌区渗漏的主要因素,而二水时间间隔和第一水灌水日期影响相对较小。通过设置426种方案,分别得到了不同初始饱和度时,2次春灌灌水... 相似文献
76.
77.
根系分区交替滴灌条件下葡萄根系分布特征及生长动态 总被引:7,自引:0,他引:7
采用原位取土法和根系生态监测系统连续两年研究了葡萄的根系空间分布和全生育期根系生长动态,结果表明:葡萄根系在水平方向主要分布在距离树干100 cm的范围内,占到总根系的80%以上,而且在径向方向呈指数衰减;葡萄根系在垂直方向主要分布在0~60 cm范围的土层内,占到总根系的75%以上.根系分区交替滴灌条件下干燥区与湿润区根系生长是不同的,葡萄的新生根系受到土壤水分条件的限制和自身生长的影响.在整个生育期,葡萄根系分区交替滴灌两侧根系生长均呈抛物线变化. 相似文献
78.
79.
Deficit irrigation based on drought tolerance and root signalling in potatoes and tomatoes 总被引:1,自引:0,他引:1
Christian R. Jensen Adriano Battilani Georgios Psarras Franciszek Janowiak Zorica Jovanovic Xuebin Qi Sven-Erik Jacobsen 《Agricultural Water Management》2010,98(3):403-384
Agriculture is a big consumer of fresh water in competition with other sectors of the society. Within the EU-project SAFIR new water-saving irrigation strategies were developed based on pot, semi-field and field experiments with potatoes (Solanum tuberosum L.), fresh tomatoes (Lycopersicon esculentum Mill.) and processing tomatoes as model plants. From the pot and semi-field experiments an ABA production model was developed for potatoes to optimize the ABA signalling; this was obtained by modelling the optimal level of soil drying for ABA production before re-irrigation in a crop growth model. The field irrigation guidelines were developed under temperate (Denmark), Mediterranean (Greece, Italy) and continental (Serbia, China) climatic conditions during summer. The field investigations on processing tomatoes were undertaken only in the Po valley (North Italy) on fine, textured soil. The investigations from several studies showed that gradual soil drying imposed by deficit irrigation (DI) or partial root zone drying irrigation (PRD) induced hydraulic and chemical signals from the root system resulting in partial stomatal closure, an increase in photosynthetic water use efficiency, and a slight reduction in top vegetative growth. Further PRD increased N-mineralization significantly beyond that from DI, causing a stay-green effect late in the growing season. In field potato and tomato experiments the water-saving irrigation strategies DI and PRD were able to save about 20-30% of the water used in fully irrigated plants. PRD increased marketable yield in potatoes significantly by 15% due to improved tuber size distribution. PRD increased antioxidant content significantly by approximately 10% in both potatoes and fresh tomatoes. Under a high temperature regime, full irrigation (FI) should be undertaken, as was clear from field observations in tomatoes. For tomatoes full irrigation should be undertaken for cooling effects when the night/day average temperature >26.5 °C or when air temperature >40 °C to avoid flower-dropping. The temperature threshold for potatoes is not clear. From three-year field drip irrigation experiments we found that under the establishment phase, both potatoes and tomatoes should be fully irrigated; however, during the later phases deficit irrigation might be applied as outlined below without causing significant yield reduction:
- •
- Potatoes
- °
- After the end of tuber initiation, DI or PRD is applied at 70% of FI. During the last 14 days of the growth period, DI or PRD is applied at 50% of FI.
- •
- Fresh tomatoes
- °
- From the moment the 1st truce is developed, DI is applied at 85-80% of FI for two weeks. In the middle period, DI or PRD is applied at 70% of FI. During the last 14 days of the growth period, DI or PRD is applied at 50% of FI.
- •
- Processing tomatoes
- °
- From transplanting to fruit setting at 4th-5th cluster, the PRD and DI threshold for re-irrigation is when the plant-available soil water content (ASWC) equals 0.7 (soil water potential, Ψsoil = −90 kPa). During the late fruit development/ripening stage, 10% of red fruits, the threshold for re-irrigation for DI is when ASWC = 0.5 (Ψsoil = −185 kPa) and for PRD when ASWC (dry side) = 0.4 (Ψsoil, dry side = −270 kPa).
80.
使用迭代重加权最小二乘法求解平面度误差 总被引:1,自引:0,他引:1
提出了几何误差评定的迭代重加权最小二乘(IRLS-Iterative Reweighted Least Squares)算法。该算法采用一个迭代过程求解一系列加权最小二乘问题,并在每一步迭代中按照一定的规则对权系数进行调整,使其逐步逼近最优拉格朗日乘子。对于用CMM(坐标测量机)和其他设备得到的数据,可得到平面度误差的精确值。 相似文献