Forest-DNDC Tropica

PnET-N-DNDC was modified by Kiese et al. (2005) to produce reliable estimates of N2O emissions from tropical rainforest ecosystems.

modifiedN2O emissionstropical rainforest ecosystems

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Quoted from: Gilhespy, Sarah L., Steven Anthony, Laura Cardenas, David Chadwick, Agustin del Prado, Changsheng Li, Thomas Misselbrook et al. "First 20 years of DNDC (DeNitrification DeComposition): model evolution." Ecological modelling 292 (2014): 51-62. https://doi.org/10.1016/j.ecolmodel.2014.09.004 

PnET-N-DNDC was modified by Kiese et al. (2005) to produce reliable estimates of N2O emissions from tropical rainforest ecosystems. Due to principal differences in forest growth and soil hydrological properties between tropical and temperate regions, Kiese et al. (2005) modified the parameterisation of the original PnET-N-DNDC model to a ‘tropical version’, keeping the general structure of the original model. The physiological parameters for the rainforest were based on the ‘Evergreen Broadleaf Forest’ parameterisation used in the BIOME-BGC model (Hunt et al., 1996), but also on the authors’ own measurements (Kiese and Butterbach-Bahl, 2002Kiese et al., 2003).

The Forest-DNDC-Tropica model developed by Kiese et al. (2005) was modified further by Werner (2007) and Werner et al. (2006). Compared to the original Forest-DNDC-Tropica model, three important model sections were improved (Werner, 2007). First, the distribution of SOC in the soil profile was revised. Pedo-transfer functions (vital for simulating soil hydrology) were added to the model and model internalisation of wood mass, leaf mass and floor mass were removed from the model, due to it being specifically calibrated for tropical rainforest ecosystems, and have now become external model input parameters (Werner et al., 2006).

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Forest-DNDC-Tropica team (2020). Forest-DNDC Tropica, Model Item, OpenGMS, https://geomodeling.njnu.edu.cn/modelItem/6ebeddb3-47bf-4662-a986-4461cfe38990
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