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赣江下游河道适宜生态需水量计算 被引量:1
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作者 鄢笑宇 吴向东 +1 位作者 何力 刘鑫 《江西水利科技》 2023年第6期427-431,共5页
受气候变化及人类活动的影响,赣江下游河道生产生活与生态用水的矛盾日益增加。本研究采用Tennant法和生态流量阈值法分别计算外洲断面生态需水量,并采用基于四大家鱼为生态保护目标的湿周法进行筛选比对,确定赣江下游适宜和较适宜的生... 受气候变化及人类活动的影响,赣江下游河道生产生活与生态用水的矛盾日益增加。本研究采用Tennant法和生态流量阈值法分别计算外洲断面生态需水量,并采用基于四大家鱼为生态保护目标的湿周法进行筛选比对,确定赣江下游适宜和较适宜的生态需水过程。结果表明:Tennant法和生态流量阈值法计算得到的年均适宜生态需水量分别为845.44m3/s、1041.30m3/s,占外洲断面多年平均径流的40%左右;年均较适宜生态需水量为626.60m3/s、561.16m3/s,占外洲断面多年平均径流的27%左右,为赣江下游适宜生态需水量的预留提供依据。 展开更多
关键词 TENNANT 生态流量阈值 适宜生态需水量 生态保护目标
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珠海市城市生态环境质量评价及问题分析 被引量:7
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作者 栾勇 陈绍辉 +2 位作者 尹忠东 高世明 周心澄 《水土保持研究》 CSCD 北大核心 2008年第1期186-189,共4页
城市生态环境问题近年来越来越受到人们的关注,对城市生态环境现状进行评价研究也显得尤为重要。对珠海运用碳氧平衡法、生态阈值法、氧气需求法等城市生态指标的计算方法对珠海市的生态绿化现状进行分析研究,并提出珠海城市生态规划建... 城市生态环境问题近年来越来越受到人们的关注,对城市生态环境现状进行评价研究也显得尤为重要。对珠海运用碳氧平衡法、生态阈值法、氧气需求法等城市生态指标的计算方法对珠海市的生态绿化现状进行分析研究,并提出珠海城市生态规划建议,以不断改善城市生态环境,提高城市生态效益。 展开更多
关键词 生态环境 生态控制性指标 珠海市 碳氧平衡 氧气需求 生态阈值法
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Variation in the methods leads to variation in the interpretation of biodiversity-ecosystem multifunctionality relationships 被引量:8
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作者 Xin Jing Case M.Prager +3 位作者 Aimée T.Classen Fernando T.Maestre Jin-Sheng He Nathan J.Sanders 《Journal of Plant Ecology》 SCIE CSCD 2020年第4期431-441,共11页
Aims Biodiversity is often positively related to the capacity of an ecosystem to provide multiple functions simultaneously(i.e.multifunctionality).However,there is some controversy over whether biodiversity–multifunc... Aims Biodiversity is often positively related to the capacity of an ecosystem to provide multiple functions simultaneously(i.e.multifunctionality).However,there is some controversy over whether biodiversity–multifunctionality relationships depend on the number of functions considered.Particularly,investigators have documented contrasting findings that the effects of biodiversity on ecosystem multifunctionality do not change or increase with the number of ecosystem functions.Here,we provide some clarity on this issue by examining the statistical underpinnings of different multifunctionality metrics.Methods We used simulations and data from a variety of empirical studies conducted across spatial scales(from local to global)and biomes(temperate and alpine grasslands,forests and drylands).We revisited three methods to quantify multifunctionality including the averaging approach,summing approach and threshold-based approach.Important Findings Biodiversity–multifunctionality relationships either did not change or increased as more functions were considered.These results were best explained by the statistical underpinnings of the averaging and summing multifunctionality metrics.Specifically,by averaging the individual ecosystem functions,the biodiversity–multifunctionality relationships equal the population mean of biodiversity-single function relationships,and thus will not change with the number of functions.Likewise,by summing the individual ecosystem functions,the strength of biodiversity–multifunctionality relationships increases as the number of functions increased.We proposed a scaling standardization method by converting the averaging or summing metrics into a scaling metric,which would make comparisons among different biodiversity studies.In addition,we showed that the range-relevant standardization can be applied to the threshold-based approach by solving for the mathematical artefact of the approach(i.e.the effects of biodiversity may artificially increase with the number of functions considered).Our study highlights different approaches yield different results and that it is essential to develop an understanding of the statistical underpinnings of different approaches.The standardization methods provide a prospective way of comparing biodiversity–multifunctionality relationships across studies. 展开更多
关键词 averaging approach BIODIVERSITY ecosystem multifunctionality multiple threshold approach plant species richness spatial scale
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