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寒地水稻生育智慧调控技术原理 被引量:2
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作者 杜明 解保胜 +1 位作者 刘美秋 刘晓欢 《现代化农业》 2022年第8期40-45,共6页
针对寒地气候特点和品种特点,制定水稻生长发育和农事活动标准。在寒地特定的水稻生产模式下,以水稻器官同伸、叶龄模式、群体质量等稻作理论为依据,应用现代智能手段,进行水稻生育诊断和预测。根据诊断与预测结果,给出相应的调控措施... 针对寒地气候特点和品种特点,制定水稻生长发育和农事活动标准。在寒地特定的水稻生产模式下,以水稻器官同伸、叶龄模式、群体质量等稻作理论为依据,应用现代智能手段,进行水稻生育诊断和预测。根据诊断与预测结果,给出相应的调控措施。并应用现代传媒手段进行推广发布,达到标准化、智能化生产和优质高产的目的。这是寒地水稻生育智慧调控技术的核心和依据。本文重点介绍了寒地水稻生育智慧调控技术的信息化技术和农艺技术是如何相结合,阐述了智慧化种植模式选择;品种和主要生产资料的智慧化采购;寒地水稻生长发育标准和农事活动标准的自动发布及种植者的准确获取;适时发布不同生育阶段诊断方法和预测信息,并给出相应的调控措施;在产后对种植者的数据的收集和分析,给出下一年度的种植计划。 展开更多
关键词 寒地水稻 标准种植 生育诊断 智慧调控
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雨水调蓄池智慧调控技术研究与成效分析 被引量:3
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作者 战楠 于磊 +4 位作者 黄俊雄 孟庆义 张书函 高琳 高小晨 《北京师范大学学报(自然科学版)》 CAS CSCD 北大核心 2024年第5期764-773,共10页
随着北京市海绵城市建设全域化推进,雨水调蓄池在城市雨水管理中得到日益广泛的应用,成为全市最主要的源头设施类型之一.但其具有数量众多、单个设施调蓄容积量小、位置分散的特征,以及存在未实现联动运行、自动化运行能力不足等问题.... 随着北京市海绵城市建设全域化推进,雨水调蓄池在城市雨水管理中得到日益广泛的应用,成为全市最主要的源头设施类型之一.但其具有数量众多、单个设施调蓄容积量小、位置分散的特征,以及存在未实现联动运行、自动化运行能力不足等问题.本文基于海绵设施精细化管控需求,研发以数值模拟、逻辑算法为核心,耦合在线感知、物联设备的雨水调蓄池智慧化调控技术,设计符合实际运行场景的调度策略.研究结果表明,智慧化调控技术应用,实现排水管网峰值削减率达4.5%~100%,片区流量峰值削减率可达11.81%.技术成果有效促进雨水调蓄池效益提升,为源头调蓄设施智慧化运行管理提供新思路. 展开更多
关键词 调蓄设施 智慧调控 数值模型
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智慧茶园技术集成与应用 被引量:21
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作者 疏再发 吉庆勇 +3 位作者 金晶 周慧娟 郑生宏 何卫中 《中国茶叶》 2022年第3期10-16,20,共8页
随着以物联网、大数据以及云计算为代表的智能化农业的蓬勃发展,作为其中重要组成的智慧茶园也在新兴和崛起。文章主要通过茶园监控系统、茶园气象监测系统、茶园土壤监测系统、茶园病虫害监测系统、茶园测绘监测系统、茶园遥感识别系... 随着以物联网、大数据以及云计算为代表的智能化农业的蓬勃发展,作为其中重要组成的智慧茶园也在新兴和崛起。文章主要通过茶园监控系统、茶园气象监测系统、茶园土壤监测系统、茶园病虫害监测系统、茶园测绘监测系统、茶园遥感识别系统等茶园智能监测模块,集成茶园水肥自动灌溉系统、茶园无人机飞防技术、茶园防霜设施、茶园轨道运输机、智能采茶机器人等智慧茶园调控模块,以综述智慧茶园技术集成与应用。利用智慧茶园管理系统的大数据及云计算有机实现茶园智能监测、智慧调控,通过精炼各种技术的合理搭配打造智慧茶园建设模板,有的放矢应用于当前智慧茶园建设,并展望“十四五”期间及以后智慧茶园的发展方向。 展开更多
关键词 智慧茶园 智能监测 智慧调控 建设模板
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Layout configuration and joint scheduling optimization of green-grey-blue integrated system for urban stormwater management:Current status and future directions
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作者 DUAN Tingting LI Pengfeng +4 位作者 KHU Soonthiam HUANG Peng TIAN Tengfei LIU Qian ZHANG Yuting 《水利水电技术(中英文)》 北大核心 2025年第7期77-108,共32页
[Objective]Under the combined impact of climate change and urbanization,urban rainstorm flood disasters occur frequently,seriously restricting urban safety and sustainable development.Relying on traditional grey infra... [Objective]Under the combined impact of climate change and urbanization,urban rainstorm flood disasters occur frequently,seriously restricting urban safety and sustainable development.Relying on traditional grey infrastructure such as pipe networks for urban stormwater management is not enough to deal with urban rainstorm flood disasters under extreme rainfall events.The integration of green,grey and blue systems(GGB-integrated system)is gradually gaining recognition in the field of global flood prevention.It is necessary to further clarify the connotation,technical and engineering implementation strategies of the GGB-integrated system,to provide support for the resilient city construction.[Methods]Through literature retrieval and analysis,the relevant research and progress related to the layout optimization and joint scheduling optimization of the GGBintegrated system were systematically reviewed.In response to existing limitations and future engineering application requirements,key supporting technologies including the utilization of overground emergency storage spaces,safety protection of underground important infrastructure and multi-departmental collaboration,were proposed.A layout optimization framework and a joint scheduling framework for the GGB-integrated system were also developed.[Results]Current research on layout optimization predominantly focuses on the integration of green system and grey system,with relatively fewer studies incorporating blue system infrastructure into the optimization process.Moreover,these studies tend to be on a smaller scale with simpler scenarios,which do not fully capture the complexity of real-world systems.Additionally,optimization objective tend to prioritize environmental and economic goals,while social and ecological factors are less frequently considered.Current research on joint scheduling optimization is often limited to small-scale plots,with insufficient attention paid to the entire system.There is a deficiency in method for real-time,automated determination of optimal control strategies for combinations of multiple system facilities based on actual rainfall-runoff processes.Additionally,the application of emergency facilities during extreme conditions is not sufficiently addressed.Furthermore,both layout optimization and joint scheduling optimization lack consideration of the mute feed effect of flood and waterlogging in urban,watershed and regional scales.[Conclusion]Future research needs to improve the theoretical framework for layout optimization and joint scheduling optimization of GGB-integrated system.Through the comprehensive application of the Internet of things,artificial intelligence,coupling model development,multi-scale analysis,multi-scenario simulation,and the establishment of multi-departmental collaboration mechanisms,it can enhance the flood resilience of urban areas in response to rainfall events of varying intensities,particularly extreme rainfall events. 展开更多
关键词 excessive rainfall runoff green-grey-blue integrated system emergency response intelligent control optimization framework multi-departmental collaboration climate change flood
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