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-rw-r--r--man/PEC_sw_exposit_runoff.Rd14
1 files changed, 9 insertions, 5 deletions
diff --git a/man/PEC_sw_exposit_runoff.Rd b/man/PEC_sw_exposit_runoff.Rd
index fca5553..393ed29 100644
--- a/man/PEC_sw_exposit_runoff.Rd
+++ b/man/PEC_sw_exposit_runoff.Rd
@@ -1,5 +1,5 @@
% Generated by roxygen2: do not edit by hand
-% Please edit documentation in R/PEC_sw_exposit_runoff.R
+% Please edit documentation in R/PEC_sw_exposit.R
\name{PEC_sw_exposit_runoff}
\alias{PEC_sw_exposit_runoff}
\title{Calculate PEC surface water due to runoff and erosion as in Exposit 3}
@@ -12,11 +12,11 @@ PEC_sw_exposit_runoff(
rate,
interception = 0,
Koc,
- DT50 = Inf,
- t_runoff = 3,
+ DT50 = set_units(Inf, "d"),
+ t_runoff = set_units(3, "days"),
exposit_reduction_version = c("3.02", "3.01a", "3.01a2", "2.0"),
- V_ditch = 30,
- V_event = 100,
+ V_ditch = set_units(30, "m3"),
+ V_event = set_units(100, "m3"),
dilution = 2
)
}
@@ -56,6 +56,10 @@ for the different distances. If the rate was given in g/ha, the PECsw are in mic
This is a reimplementation of the calculation described in the Exposit 3.02 spreadsheet file,
in the worksheet "Konzept Runoff".
}
+\details{
+It is recommened to specify the arguments \code{rate}, \code{Koc}, \code{DT50}, \code{t_runoff}, \code{V_ditch} and \code{V_event}
+using \link[units:units]{units::units} from the \code{units} package.
+}
\examples{
PEC_sw_exposit_runoff(500, Koc = 150)
PEC_sw_exposit_runoff(600, Koc = 10000, DT50 = 195, exposit = "3.01a")

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