Joni Dehaspe
UFZ Leipzig
Subject Areas: | Hydrology, Water resources management, Water quality, modeling |
Recent Activity
ABSTRACT:
NetworkModel_generalFIN_c contains an R function defining a time variable network model that uses a gridded ordered stream network, time series of discharge and seven input parameters to generate C-Q relationships (among others).
MaxCurv_c contains an R function for the computation of the amount of bending of a C-Q relationship (CurvMax metric).
The R codes are provided as TXT and as R-file.
The codes are written by Joni Dehaspe
This code is used and further described in this paper:
Dehaspe, J., Sarrazin, F., Kumar, R., Fleckenstein, J.H. and Musolff, A. (2021). Bending of the concentration discharge relationship can inform about in-stream nitrate removal. Hydrol. Earth Syst. Sci., 1-27, 25, doi: 10.5194/hess-25-1-2021
Contact
(Log in to send email) |
All | 1 |
Collection | 0 |
Resource | 1 |
App Connector | 0 |

Created: Dec. 16, 2021, 9:56 a.m.
Authors: Dehaspe, Joni
ABSTRACT:
NetworkModel_generalFIN_c contains an R function defining a time variable network model that uses a gridded ordered stream network, time series of discharge and seven input parameters to generate C-Q relationships (among others).
MaxCurv_c contains an R function for the computation of the amount of bending of a C-Q relationship (CurvMax metric).
The R codes are provided as TXT and as R-file.
The codes are written by Joni Dehaspe
This code is used and further described in this paper:
Dehaspe, J., Sarrazin, F., Kumar, R., Fleckenstein, J.H. and Musolff, A. (2021). Bending of the concentration discharge relationship can inform about in-stream nitrate removal. Hydrol. Earth Syst. Sci., 1-27, 25, doi: 10.5194/hess-25-1-2021