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视图增量的同步计算方法
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作者 杜威 邹先霞 《小型微型计算机系统》 CSCD 北大核心 2011年第12期2400-2404,共5页
为有效降低视图增量计算的代价,提出了净化操作和主外码约束的优化同步计算方法.数据源基表的更新操作可能对同一元组多次反复的修改,而在视图增量的维护中并不需要反映基表的整个更新过程,而只是维护某个时间的状态一致,因而利用净化... 为有效降低视图增量计算的代价,提出了净化操作和主外码约束的优化同步计算方法.数据源基表的更新操作可能对同一元组多次反复的修改,而在视图增量的维护中并不需要反映基表的整个更新过程,而只是维护某个时间的状态一致,因而利用净化操作减少了计算的数据量.数据源基表间的主外码约束使得部分增量子查询的结果为空,减少这样的增量子查询提高了计算的效率.实验分析表明优化后的同步计算方法有效地降低了计算和维护代价. 展开更多
关键词 实化视图 同步计算 净变化量 主外码约束
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现金流量的五种状态
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作者 杨方文 《经济论坛》 北大核心 2003年第16期49-50,共2页
关键词 现金流 净变化量 经营现金流 非付现成本
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“协同作用”在专利审查中的考量
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作者 朱金虎 南楠 《中国发明与专利》 2014年第10期101-105,共5页
协同作用经常在专利申请或申请人答复专利审查意见通知书时被提及,而协同作用作为由《协同学》而引申出的概念,审查人员对其具体的实质含义的准确理解对建立协同作用与预料不到技术效果之间的关联性具有重要的作用,本文分析了《协同学... 协同作用经常在专利申请或申请人答复专利审查意见通知书时被提及,而协同作用作为由《协同学》而引申出的概念,审查人员对其具体的实质含义的准确理解对建立协同作用与预料不到技术效果之间的关联性具有重要的作用,本文分析了《协同学》中的协同的具体含义并分析了协同作用与预料不到的技术效果之间的关联性,从而为协同作用在专利审查中的考量提供一定的借鉴。 展开更多
关键词 协同作用 预料不到的技术效果 净变化量 功能
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基于GIS的长白山保护区林地时空变化图制作方法研究
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作者 柴新宇 《黑龙江科学》 2022年第2期29-33,共5页
以间隔25年的两期长白山保护区土地覆被栅格数据为基础,在ArcGIS10.6软件的支持下,提取出第一期和第二期长白山保护区土地覆被数据,运用转移矩阵模型和净变化量模型,对长白山保护区的土地覆被数据进行处理,研究长白山保护区林地的变化... 以间隔25年的两期长白山保护区土地覆被栅格数据为基础,在ArcGIS10.6软件的支持下,提取出第一期和第二期长白山保护区土地覆被数据,运用转移矩阵模型和净变化量模型,对长白山保护区的土地覆被数据进行处理,研究长白山保护区林地的变化情况。结果表明,林地面积呈现增长趋势,发生转移变化的位置主要集中在研究区的西南和东南部,可以看出该保护区在这25年内林地保护取得了一定的成效。 展开更多
关键词 长白山保护区 转移矩阵 净变化量 林地 ARCGIS
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Eco-compensation in Guanting Reservoir Watershed Based on Spatiotemporal Variations of Water Yield and Purification Services 被引量:6
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作者 WEN Yihui LIU Guihuan WU Rui 《Journal of Resources and Ecology》 CSCD 2018年第4期416-425,共10页
Guanting Reservoir(GR) is one of the most important water sources for Beijing and neighboring regions.Due to water pollution,it was withdrawn from the system to supply Beijing drinking water;however,after a thorough... Guanting Reservoir(GR) is one of the most important water sources for Beijing and neighboring regions.Due to water pollution,it was withdrawn from the system to supply Beijing drinking water;however,after a thorough treatment process,GR was made a reserve water source since 2007.To develop a comprehensive and quantitative analysis of water yield and purification services in the GR watershed,this study selected two time periods:the period when GR was withdrawn from the system supplying local drinking water and the period that it has been designated a reserve water source.The In VEST model was used to evaluate the quantities of water yields,and total nitrogen and total phosphorus outputs from 1995 to 2010 Additionally,the spatiotemporal variations of water yield services and water quality purification services in the GR watershed were analyzed.The results showed that water yield services in the GR watershed first weakened and then became stronger,but weakened overall during the years 1995 to 2010.Water yield capacity in the basin decreased from 1.89×10^9 m3 in 1995 to 1.43×10^9 m3 in 2010(a drop of 24.0% in total).Water quality purification services also showed the same tendency.Total nitrogen output decreased from 4028.7 t in 1995 to 3611.4 t in 2010,while total phosphorus decreased from 379.7 t in 1995 to 354.0 t in 2010.Nitrogen and phosphorus purification services were enhanced by 10.4% and 6.8%,respectively.Changes in the climate and land use were the main factors which lead to the changes in the water yield service in the GR watershed.Policies intended to protect water resource have matched the varying trends of water quality purification services during different periods.On one hand,the research results provide a foundation to identify key fields for eco-compensation in the Guanting Reservoir basin.On another hand,the ecosystem service value will increase on the basis of eco-compensation criteria through setting the scenarios of returning farmland to forest and ecological protection.This method directly reflects increases in ecosystem service values that have occurred since measures to protect the ecological environment have been implemented.This method is more persuasive and feasible than using eco-compensation criteria based on regional ecosystem service values determined by land use/coverage type.It can provide a new way to assess eco-compensation in the Guanting Reservoir basin and other regions. 展开更多
关键词 GR watershed INVEST model spatiotemporal variations water quality purification water yield
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