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应用涡动相关法计算水热、CO2通量的国内外进展概况
引用本文:沈艳,刘允芬,王堰.应用涡动相关法计算水热、CO2通量的国内外进展概况[J].南京气象学院学报,2005,28(4):559-566.
作者姓名:沈艳  刘允芬  王堰
作者单位:1. 南京信息工程大学,江苏省气象灾害重点实验室,江苏,南京,210044
2. 中国科学院,地理科学与资源研究所,北京,100101
基金项目:中国科学院知识创新工程重大项目(KZCX1-SW-01-01A2);中国科学院地理科学与资源研究所知识创新工程主干科学计划(CXI0G-E01-03-05);中国科学院知识创新项目(KZCX2-407)
摘    要:目前涡动相关法被认为是国内外测定CO2、水热通量的最可靠方法。国外应用此方法解决了均匀下垫面假设下森林和农田等生态系统的CO2、水热通量的计算问题,目前致力于非理想下垫面(真实地形)的CO2、水热通量的计算。而国内应用涡动相关技术起步较晚,用此方法测定水热通量已有一定的知识积累,但测定CO2通量还处于资料收集阶段。我国自然生态系统、环境外交和社会经济可持续发展都要求精确查明我国CO2的时空变化特征和动力学机制,这应是今后研究的重点,并提出了应用该方法存在的主要问题及可能的解决方法,指出值得深入研究的领域。

关 键 词:涡动相关法  CO2通量  显热通量  潜热通量
文章编号:1000-2022(2005)04-0559-08
收稿时间:04 4 2003 12:00AM
修稿时间:2003-04-042003-12-29

Advances in Applying the Eddy-Covariance Technique to Calculate Heat,Moisture and CO2 Flux
SHEN Yan,LIU Yun-Fen,WANG Yan.Advances in Applying the Eddy-Covariance Technique to Calculate Heat,Moisture and CO2 Flux[J].Journal of Nanjing Institute of Meteorology,2005,28(4):559-566.
Authors:SHEN Yan  LIU Yun-Fen  WANG Yan
Abstract:At present eddy-covariance technique(ECT) is considered one of the most reliable methods in measuring CO_2,heat and moisture fluxes.In terms of the method foreign countries have solved the calculation problems of CO_2 or heat and moisture fluxes of forest and farmland ecosystems under the assumption of homogeneous underlying surface,at moment are making efforts to calculate the fluxes of non-ideal underlying surface(real terrain).Application of the ECT in our country is later.Some knowledge on measuring heat and moisture fluxes by using the ECT has been accumulated,but measuring CO_2 is still in the stage of collecting data.Under the demand of our country's natural ecosystem,environmental diplomacy and the sustainable development of social economy,the future emphases should be placed on accurately measuring the temporal and spatial variations of CO_2 and revealing its dynamic mechanism.The problems and possible solutions to the eddy-covariance are presented and the deserved research field is also put forward in this paper.
Keywords:eddy-covariance technique  CO2 flux  sensible heat flux  latent heat flux
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