期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
Optimizing water-saving irrigation schemes for rice(Oryza sativa L.)using DSSAT-CERES-Rice model
1
作者 Shikai Gao Qiongqiong Gu +3 位作者 Xuewen Gong Yanbin Li Shaofeng Yan Yuanyuan Li 《International Journal of Agricultural and Biological Engineering》 SCIE 2023年第2期142-151,共10页
Rice is one of the major crops in China,and enhancing the rice yield and water use efficiency is critical to ensuring food security in China.Determining how to optimize a scientific and efficient irrigation and draina... Rice is one of the major crops in China,and enhancing the rice yield and water use efficiency is critical to ensuring food security in China.Determining how to optimize a scientific and efficient irrigation and drainage scheme by combining existing technology is currently a hot topic.Crop growth models can be used to assess actual or proposed water management regimes intended to increase water use efficiency and mitigate water shortages.In this study,a CERES-Rice model was calibrated and validated using a two-year field experiment.Four irrigation and drainage treatments were designed for the experiment:alternate wetting and drying(AWD),controlled drainage(CD),controlled irrigation and drainage for a low water level(CID1),and controlled irrigation and drainage for a high water level(CID2).According to the indicators normalized root mean square error(NRMSE)and index of agreement(d),the calibrated CERES-Rice model accurately predicted grain yield(NRMSE=6.67%,d=0.77),,shoot biomass(NRMSE=3.37%,d=0.77),actual evapotranspiration(ETa)(NRMSE=3.83%,d=0.74),irrigation volume(NRMSE=15.56%,d=0.94),and leaf area index(NRMSE=9.69%,d=0.98)over 2 a.The calibrated model was subsequently used to evaluate rice production in response to the four treatments(AWD,CD,CID1,and CID2)under 60 meteorological scenarios which were divided into wet years(22 a),normal years(16 a),and dry years(22 a).Results showed that the yield of AWD was the largest among four treatments in different hydrological years.Relative to that of AWD,the yield of CD,CID1,and CID2 were respectively reduced by 5.7%,2.6%,8.7%in wet years,9.2%,2.3%,8.6% in normal years,and 9.2%,3.8%,3.9% in dry years.However,rainwater use efficiency and irrigation water use efficiency were the greatest for CID2 in different hydrological years.The entropy-weighting TOPSIS model was used to optimize the four water-saving irrigation schemes in terms of water-saving,labor-saving and high-yield,based on the simulation results of the CERES-Rice model in the past 60 a.These results showed that CID1 and AWD were optimal in the wet years,CID1 and CID2 were optimal in the normal and dry years.These results may provide a strong scientific basis for the optimization of water-saving irrigation technology for rice. 展开更多
关键词 CERES-Rice controlled irrigation and drainage water-saving long-term weather data water use efficiency
原文传递
基于物联网技术的温室大棚喷灌系统电路设计 被引量:3
2
作者 梁毅 杨建国 《智慧农业导刊》 2022年第20期20-22,共3页
为节约温室大棚内作物生长所需的人力资源和水资源,设计一款高效、便利并且可以实时远程操控的智能喷灌系统。系统利用湿度传感器对当前土壤的湿度进行监测,并通过变送后,输出标准的RS485信号和4~20 mA标准电流信号,以实时显示土壤的湿... 为节约温室大棚内作物生长所需的人力资源和水资源,设计一款高效、便利并且可以实时远程操控的智能喷灌系统。系统利用湿度传感器对当前土壤的湿度进行监测,并通过变送后,输出标准的RS485信号和4~20 mA标准电流信号,以实时显示土壤的湿度及自动控制水泵动作,实现自动浇灌。同时,也可以使用手机APP软件,远程控制Wi-Fi模块上的继电器,继而控制水泵动作,实现对大棚内作物的喷淋和灌溉,满足作物生长对水分的需求。 展开更多
关键词 物联网技术 传感器 喷灌系统 wi-Fi模块 远程控制
下载PDF
“薄、浅、湿、晒”与节水控灌两种灌溉模式对水稻耗水量和产量的影响 被引量:5
3
作者 罗维钢 黄忠华 +1 位作者 李春力 吴家法 《广西水利水电》 2020年第5期1-4,共4页
开展稻田"薄、浅、湿、晒"(TW)和节水控灌(WI)试验,研究不同灌溉模式对水稻耗水量和产量的影响。结果发现:1.在水稻各生长期中,TW分蘖后期耗水量显著低于WI(P<0.05,下同),其他时期的水分消耗量与WI相近,彼此差异不大。2.TW... 开展稻田"薄、浅、湿、晒"(TW)和节水控灌(WI)试验,研究不同灌溉模式对水稻耗水量和产量的影响。结果发现:1.在水稻各生长期中,TW分蘖后期耗水量显著低于WI(P<0.05,下同),其他时期的水分消耗量与WI相近,彼此差异不大。2.TW和WI的穗长、粒长、千粒重及稻谷产量等指标均非常接近,没有显著性差异;由于TW总耗水量低于WI,因而其稻谷的水分利用效率显著高于WI。试验结果表明,相比于节水控灌,"薄、浅、湿、晒"灌溉模式更有利于降低稻田耗水量,提高水稻的水分利用效率。 展开更多
关键词 “薄、浅、湿、晒” 节水控灌 灌溉模式 耗水量 产量 水稻
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部