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91.
随着国内城市化的推进,市政工程的给排水工程越发显得重要。传统的给排水施工技术已经无法满足城市发展要求,社会对给排水的施工质量提出了更高地要求。文章结合当前给排水施工管理现状,对给排水施工的施工管理各方面进行简要探析。 相似文献
92.
R. W. Skaggs M. A. Brevé A. T. Mohammad J. E. Parsons J. W. Gilliam 《Irrigation and Drainage Systems》1995,9(3):259-277
The design and management of drainage systems should consider impacts on drainage water quality and receiving streams, as well as on agricultural productivity. Two simulation models that are being developed to predict these impacts are briefly described. DRAINMOD-N uses hydrologic predictions by DRAINMOD, including daily soil water fluxes, in numerical solutions to the advective-dispersive-reactive (ADR) equation to describe movement and fate of NO3-N in shallow water table soils. DRAINMOD- CREAMS links DRAINMOD hydrology with submodels in CREAMS to predict effects of drainage treatment and controlled drainage losses of sediment and agricultural chemicals via surface runoff. The models were applied to analyze effects of drainage intensity on a Portsmouth sandy loam in eastern North Carolina. Depending on surface depressional storage, agricultural production objectives could be satisfied with drain spacings of 40 m or less. Predicted effects of drainage design and management on NO3-N losses were substantial. Increasing drain spacing from 20 m to 40 m reduced predicted NO3-N losses by over 45% for both good and poor surface drainage. Controlled drainage further decreases NO3-N losses. For example, predicted average annual NO3-N losses for a 30 m spacing were reduced 50% by controlled drainage. Splitting the application of nitrogen fertilizer, so that 100 kg/ha is applied at planting and 50 kg/ha is applied 37 days later, reduced average predicted NO3-N losses but by only 5 to 6%. This practice was more effective in years when heavy rainfall occurred directly after planting. In contrast to effects on NO3-N losses, reducing drainage intensity by increasing drain spacing or use of controlled drainage increased predicted losses of sediment and phosphorus (P). These losses were small for relatively flat conditions (0.2% slope), but may be large for even moderate slopes. For example, predicted sediment losses for a 2% slope exceeded 8000 kg/ha for a poorly drained condition (drain spacing of 100 m), but were reduced to 2100 kg/ha for a 20 m spacing. Agricultural production and water quality goals are sometimes in conflict. Our results indicate that simulation modeling can be used to examine the benefits of alternative designs and management strategies, from both production and environmental points-of-view. The utility of this methodology places additional emphasis on the need for field experiments to test the validity of the models over a range of soil, site and climatological conditions. 相似文献
93.
94.
农村电力排灌站电气设备主要是利用电力进行农业用水资源调配的水利设施。笔者根据自身工作经验,主要对农村电力排灌站电气设备最优配置进行了一番分析与研究。 相似文献
95.
水田灌排一体化系统的开发与应用 总被引:1,自引:0,他引:1
分析国内外农业灌溉和排水领域发展的研究现状和目前常见的灌排装置的特点,针对中国灌溉排水研究领域对节水灌溉、控制排水设施的迫切需求,提出了水田灌排一体化系统的设计方案.该系统能根据农作物不同时期对水位的需求,充分利用灌溉和降雨的水量,较为精确地控制水田的灌溉和排水水位,解决了原有灌排设备无法同时实现灌溉和排水自动控制的难题.实际应用结果表明,水田灌排一体化系统试验区和对照区相比,降雨量增加利用150 mm,降雨利用率提高21%,减少灌水量21%;水稻亩产量增加4.3%;提高肥料的利用效率,减少农业面源污染.该系统结构简单、操作方便,具有可观的经济、生态效益和广阔的应用前景. 相似文献
96.
97.
农田水利工程专业国家自然科学基金2001~2003年资助情况简要分析 总被引:1,自引:0,他引:1
农田水利工程专业国家自然科学基金近3年的资助情况表明:农田水利工程专业的基础研究队伍以35~45岁的青年学者为主,在水利学科中,其研究队伍较小、整体实力不强,与国家目标的需求尚存在一定的差距。从研究内容来看,节水灌溉技术机理及相关研究、提高水分利用效率(WUE)的机理研究与水肥耦合关系研究仍占据着主导地位;尺度效应与空间变异性研究、水资源利用的生态环境效应研究已日益引起广泛关注,正在成为新的研究热点;有关溶质运移(包括水盐运动、污水灌溉等)的基础理论研究仍然是重要的研究方向;农田排水研究已逐步冷清。农田水利的研究方法仍以物理实验和数值模拟为主,部分研究者已开始尝试将地质统计学、分形理论、人工神经网络模型、随机微分方程等数学方法及水文模型、遥感(RS)、地理信息系统(GIS)、数字高程模型(DEM)等其它学科的研究方法引入农田水利问题的研究之中,农田水利与化学、生物学和农学等学科的结合与交叉正在逐步加强。 相似文献
98.
淮北平原涝渍兼治的组合排水工程形式 总被引:2,自引:0,他引:2
由于淮北平原砂姜黑土区的气候、地形、地貌、水文地质、土壤等多方面原因,致使旱、涝、渍频繁,且涝渍灾害往往是紧密相连,先涝后渍,涝渍相随.造成大面积减产.甚至绝收,旱、涝、渍灾害一直困扰着本区的农业发展。通过试验及调查,从治理涝渍效果、提高农业产量、投入产出等方面进行综合分析,提出了几种适宜于本区的组合排水形式。 相似文献
99.
John?W.?HornbuckleEmail author Evan?W.?Christen James?E.?Ayars Richard?D.?Faulkner 《Irrigation and Drainage Systems》2005,19(2):145-159
Recent community based actions to ensure the sustainability of irrigation and protection of associated ecosystems in the Murrumbidgee Irrigation Area (MIA) of Australia has seen the implementation of a regional Land and Water Management Plan. This aims to improve land and water management within the irrigation area and minimise downstream impacts associated with irrigation. One of the plan objectives is to decrease current salt loads generated from subsurface drainage in perennial horticulture within the area from 20 000 tonnes/year to 17 000 tonnes/year. In order to meet such objectives Controlled Water table Management (CWM) is being investigated as a possible ‘Best Management Practice’, to reduce drainage volumes and salt loads.During 2000–2002 a trial was conducted on a 15 ha subsurface drained vineyard. This compared a traditional unmanaged subsurface drainage system with a controlled drainage system utilizing weirs to maintain water tables and changes in irrigation scheduling to maximize the potential crop use of a shallow water table. Drainage volumes, salt loads and water table elevations throughout the field were monitored to investigate the effects of controlled drainage on drain flows and salt loads.Results from the experiment showed that controlled drainage significantly reduced drainage volumes and salt loads compared to unmanaged systems. However, there were marked increases in soil salinity which will need to be carefully monitored and managed. 相似文献
100.
本文针对湖北省省直农场的具体情况开展了高标准农田水利建设定型化研究,为同类地区的高标准农田水利建设探索新的途径。 相似文献