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宁夏回族自治区工业节水分析及规划关键问题探讨
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作者 闫国忠 《水上安全》 2023年第15期85-87,共3页
深入推进工业节水是贯彻“四水四定”和落实“节水优先”方针的重要举措,是促进全区工业经济与水资源协调发展、形成水资源利用节约高效的工业用水管理新格局的必然方向,也是突破当前水资源瓶颈制约的根本出路。以2020年为基准年,分析... 深入推进工业节水是贯彻“四水四定”和落实“节水优先”方针的重要举措,是促进全区工业经济与水资源协调发展、形成水资源利用节约高效的工业用水管理新格局的必然方向,也是突破当前水资源瓶颈制约的根本出路。以2020年为基准年,分析宁夏工业节水现状及存在的问题,对宁夏后续工业节水工作的主要任务和方向提出建议,以期为宁夏“十四五”期间的工业节水工作提供参考。 展开更多
关键词 宁夏 工业节水 节水任务
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Response of Lakes to Climate Change in Xainza Basin Tibetan Plateau Using Multi-Mission Satellite Data from 1976 to 2008 被引量:10
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作者 YI Gui-hua DENG Wei +1 位作者 LI Ai-nong ZHANG Ting-bin 《Journal of Mountain Science》 SCIE CSCD 2015年第3期604-613,共10页
Changes in the lake areas of Xainza basin in the past 33 years (1976 to 2008) were studied using Landsat data from Multispectral Scanners (1973- 1977), Thematic Mapper (1989-1992, 2007-2009), and Enhanced Themat... Changes in the lake areas of Xainza basin in the past 33 years (1976 to 2008) were studied using Landsat data from Multispectral Scanners (1973- 1977), Thematic Mapper (1989-1992, 2007-2009), and Enhanced Thematic Mapper Plus (1999-2002). The results indicated that lakes in the study area evidently expanded from 1976 to 2008, with total expansion of 1512.64km2. The mean annual air temperature presented an upward trend with certain fluctuations from 1966 to 2008. The air temperature rise rates in the cold season (o.31~C/loa) were higher than those in the hot season (0.24℃/1oa), in the Xainza station example. Precipitation exhibited evident seasonal differences. Mean annual precipitation in hot season is 281.48 mm and cold season is 32.66 mm from 1966 to 2008 in study area. Precipitation in the hot season was the major contributor to the increase in annual precipitation. Grey relational analysis (GRA) was used to study the response of lake areas to climatic factors. The mean air temperature and precipitation were selected as comoared series, and the lake areas were regarded as the reference series. The grey relational grade (GRG) between compared series and reference series were calculated through GRA. The results indicated that changes in lake areas were mainly affected by climatic factors in the hot season. Lakes in this region were classified into three grades, namely, Grades I, II, and III according to the recharge source and elevation. The GRGs of each series varied for different grade lakes: the area of Grade III lakes were the most relevant to the hot season factors, the GRGs of precipitation and air temperature were 0.7570 and 0.6606; followed by the Grade II lakes; Grade I lakes were more sensitive to the air temperature. 展开更多
关键词 LAKE Climate change Remote sensing Grey relational analysis Xainza basin TIBETANPLATEAU
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