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长江口湿地沉积物-水界面无机氮交换总通量量算系统研究 被引量:4
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作者 王军 陈振楼 +2 位作者 王东启 刘杰 许世远 《环境科学研究》 EI CAS CSCD 北大核心 2006年第4期1-7,共7页
基于MapObjects组件式GIS技术和数学建模方法,以Visual Basic为开发平台,建立了长江口湿地沉积物-水界面无机氮交换通量空间插值模型、总通量量算模型和量算系统,该系统的主要功能包括对无机氮界面交换通量信息查询检索,空间插值分析,... 基于MapObjects组件式GIS技术和数学建模方法,以Visual Basic为开发平台,建立了长江口湿地沉积物-水界面无机氮交换通量空间插值模型、总通量量算模型和量算系统,该系统的主要功能包括对无机氮界面交换通量信息查询检索,空间插值分析,以及对长江口湿地不同岸段、不同季节无机氮交换总通量综合和动态量算.利用该系统和长江口湿地2000年10月—2004年7月无机氮界面交换通量季节性实测数据,对长江口湿地沉积物-水界面无机氮交换总通量进行了量算.结果表明:长江口湿地沉积物在春季向水体释放无机氮,在夏季、秋季和冬季则表现为净化水体中的无机氮,全年总体表现为净化水体中的无机氮.量算系统的实际应用表明,该系统在定量分析长江口湿地生态功能过程中发挥了重要作用. 展开更多
关键词 无机氮 交换总通量 空间插值 量算系统 长江口
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Radiative entransy flux in enclosures with non-isothermal or non-grey,opaque,diffuse surfaces and its application 被引量:20
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作者 CHENG XueTao XU XiangHua LIANG XinGang 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第9期2446-2456,共11页
The spectral radiative entransy flux and the total radiative entransy flux are defined for the steady radiative heat transfer processes in enclosures composed of non-isothermal or non-grey, opaque, diffuse surfaces. B... The spectral radiative entransy flux and the total radiative entransy flux are defined for the steady radiative heat transfer processes in enclosures composed of non-isothermal or non-grey, opaque, diffuse surfaces. Based on the definitions, the radiative entransy flux balance equation and the radiative entransy dissipation functions are introduced under spectral and total wavelength condition. Furthermore, the minimum principle of radiative entransy loss, the extreme principle of radiative entransy dissipation and the minimum principle of radiative thermal resistance are developed. The minimum prirlciple of radiative en- transy loss shows that the potential and the net radiative heat flux distribution which meet the control equations and the boundary conditions would make the radiative entransy loss minimum if the net radiative heat flux or the potential distribution of the radiative heat transfer system is given. The extreme principle of radiative entransy dissipation indicates that the minimum radiative entransy dissipation leads to the minimum average potential difference for the prescribed total radiative heat exchange and the maximum radiative entransy dissipation leads to the maximum radiative heat exchange for the prescribed average potential difference. Moreover, the minimum principle of radiative thermal resistance tells us that the aforementioned extreme values of radiative entransy dissipation both correspond to the minimum value of radiative thermal resistance. Application examples are given for the extreme principle of spectral radiative entransy dissipation and the minimum principle of spectral radiative thermal resistance, and the principles are proved to be applicable. 展开更多
关键词 radiative entransy flux spectral radiative entransy flux non-grey surface radiative entransy principles radiative heattransfer optimization
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