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A Perspective on Thirty Years of the Webb, Pearman and Leuning Density Corrections

机译:韦伯三十年,皮尔曼和密度校正的透视

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摘要

The density correction theory of Webb et al. (1980, Q J Roy Meteorol Soc 106: 85–100, hereafter WPL) is a principle underpinning the experimental investigation of surface fluxes of energy and masses in the atmospheric boundary layer. It has a long-lasting influence in boundary-layer meteorology and micrometeorology, and the year 2010 marks the 30th anniversary of the publication of the WPL theory. We provide here a critique of the theory and review the research it has spurred over the last 30 years. In the authors’ opinion, the assumption of zero air source at the surface is a fundamental novelty that gives the WPL theory its enduring vitality. Considerations of mass conservation show that, in a non-steady state, the WPL mean vertical velocity and the thermal expansion velocity are two distinctly different quantities of the flow. Furthermore, the integrated flux will suffer a systematic bias if the expansion velocity is omitted or if the storage term is computed from time changes in the CO2 density. A discussion is provided on recent efforts to address several important practical issues omitted by the original theory, including pressure correction, unintentional alternation of the sampled air, and error propagation. These refinement efforts are motivated by the need for an unbiased assessment of the annual carbon budget in terrestrial ecosystems in the global eddy flux network (FluxNet).
机译:Webb等人的密度校正理论。 (1980,Q J Roy Meteorol Soc 106:85-100,以下称WPL)是一个原理,它支持了大气边界层中能量和质量的表面通量的实验研究。它在边界层气象学和微气象学中具有长期影响,2010年是WPL理论发表30周年。我们在这里提供对该理论的评论,并回顾其在过去30年中引起的研究。作者认为,地表零气源的假设是一个基本的新颖性,这赋予了WPL理论持久的生命力。有关质量守恒的考虑表明,在非稳态下,WPL的平均垂直速度和热膨胀速度是两个截然不同的流量。此外,如果忽略扩展速度或根据CO 2 浓度的时间变化来计算存储项,则积分通量将遭受系统性偏差。提供了有关最近的解决方法的讨论,以解决原始理论所忽略的几个重要的实际问题,包括压力校正,采样空气的无意交替以及误差传播。需要对全球涡流网络(FluxNet)中的陆地生态系统中的年度碳预算进行公正的评估,从而推动了这些改进工作。

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