Effect of benthic boundary layer transport on the productivity of Mono Lake, California.

Louise C Bruce, Robert Jellison, Jörg Imberger, John M Melack
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引用次数: 12

Abstract

The significance of the transport of nutrient-rich hypolimnetic water via the benthic boundary layer (BBL) to the productivity of Mono Lake was studied using a coupled hydrodynamic and ecological model validated against field data. The coupled model enabled us to differentiate between the role of biotic components and hydrodynamic forcing on the internal recycling of nutrients necessary to sustain primary productivity. A 4-year period (1991-1994) was simulated in which recycled nutrients from zooplankton excretion and bacterially-mediated mineralization exceeded sediment fluxes as the dominant source for primary productivity. Model outputs indicated that BBL transport was responsible for a 53% increase in the flux of hypolimnetic ammonium to the photic zone during stratification with an increase in primary production of 6% and secondary production of 5%. Although the estimated impact of BBL transport on the productivity of Mono Lake was not large, significant nutrient fluxes were simulated during periods when BBL transport was most active.

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底栖边界层输送对加州莫诺湖生产力的影响。
本文采用水动力与生态耦合模型,研究了富营养化水体经底栖边界层(BBL)运移对Mono湖生产力的影响。耦合模型使我们能够区分生物成分和水动力对维持初级生产力所必需的养分内部循环的作用。模拟了一个为期4年(1991-1994)的时期,其中浮游动物排泄和细菌介导的矿化产生的循环养分超过了沉积物通量,成为初级生产力的主要来源。模型结果表明,在分层过程中,BBL运输导致低渗铵到光区的通量增加53%,其中初级产量增加6%,次级产量增加5%。虽然估计的BBL运输对Mono湖生产力的影响不大,但在BBL运输最活跃的时期模拟了显著的养分通量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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