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Published byIsabella Barnes Modified over 11 years ago
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As the LBA Community, we have a set of linked questions (possibly, with a common solution): What are hydrologic flow paths and magnitudes? How are CO 2 and OM mobilized from the land surface to and through fluvial systems? What controls transformations of N from land to streams? HOW CAN WE PULL IT TOGETHER? Towards a Model of Carbon Mobilization, Advection, and Reaction in the Amazon River
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SISTEMA DE INFORMATICA
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MESO/MACROSCALE: Variable Infiltration Capacity –n Layer (VIC-nL), with River Routing Scheme Ji-Parana (Victoria et al). ~8km
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Micro/Mesoscale: Distributed Hydrology-Soil Vegetation Model (DHSVM) (~150m/>150m?)
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Mae Chaem, Chiang Mai, Thailand
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Vegetation scenarios No crops Double crop Double crops Double crops uniformly in highlands in lowlands
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Daily discharge at basin outlet
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Needs for a River basin Organic Matter and Biogeochemistry Synthesis Model Uses measurable and mechanistically meaningful pools –CPOM –FPOM –DOM Capacity to model processes –Mineralization (OC CO 2 ) –Degradation (OC fast OC slow ) –Sorption (DOC FPOC) Mayorga & Aufdenkampe, 2002
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ROMBUS (River basin Organic Matter and Biogeochemistry Synthesis Model)
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River Network Element (P 0, specifically for in-channel routing & evolution of wash load and bed load, and calculating transfer to FP and channel bed) Delta & Ocean Sinks Floodplain Storage Channel Bed Storage (Element significance decreases DS) Downstream transport (Element significance increases DS) Upland Source Element (Production > | Storage|, physically & chemically converts rock to sediment) Colluvial Buffer Element ( | S| > P, controls sediment delivery ratio by regulating delivery to channel network) Down-zone transport Floodplain Lakes (permanent) Down-zone transport SEDIMENT TRANSPORT MODEL Rolf Aalto
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MAO Ji-P RB Jur Snt AF Pach DHSVM (?) Detailed site -> upscaling? detailed LBA-team sites
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