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authorJohannes Ranke <johannes.ranke@jrwb.de>2026-06-22 21:39:30 +0200
committerJohannes Ranke <johannes.ranke@jrwb.de>2026-06-22 21:39:30 +0200
commita62402ea85bc5a94c7111af904ed01c7361b87a2 (patch)
treeb7744e0b8e5568f19d1f79267e9bed77920260cd /docs/reference/PEC_sw_drift.html
parent81f301199e88e17ec961f981ca0df6d886babfee (diff)
Update docs and static docs
Diffstat (limited to 'docs/reference/PEC_sw_drift.html')
-rw-r--r--docs/reference/PEC_sw_drift.html18
1 files changed, 17 insertions, 1 deletions
diff --git a/docs/reference/PEC_sw_drift.html b/docs/reference/PEC_sw_drift.html
index ee2f973..04fb9b0 100644
--- a/docs/reference/PEC_sw_drift.html
+++ b/docs/reference/PEC_sw_drift.html
@@ -1,5 +1,11 @@
<!DOCTYPE html>
-<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><title>Calculate predicted environmental concentrations in surface water due to drift — PEC_sw_drift • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><link href="../deps/font-awesome-6.4.2/css/all.min.css" rel="stylesheet"><link href="../deps/font-awesome-6.4.2/css/v4-shims.min.css" rel="stylesheet"><script src="../deps/headroom-0.11.0/headroom.min.js"></script><script src="../deps/headroom-0.11.0/jQuery.headroom.min.js"></script><script src="../deps/bootstrap-toc-1.0.1/bootstrap-toc.min.js"></script><script src="../deps/clipboard.js-2.0.11/clipboard.min.js"></script><script src="../deps/search-1.0.0/autocomplete.jquery.min.js"></script><script src="../deps/search-1.0.0/fuse.min.js"></script><script src="../deps/search-1.0.0/mark.min.js"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Calculate predicted environmental concentrations in surface water due to drift — PEC_sw_drift"><meta name="description" content="This is a basic, vectorised form of a simple calculation of a contaminant
+<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><title>Calculate predicted environmental concentrations in surface water due to drift — PEC_sw_drift • pfm</title><!-- mathjax math --><script src="https://cdn.jsdelivr.net/npm/mathjax@3.2.2/es5/tex-mml-chtml.js" integrity="sha256-MASABpB4tYktI2Oitl4t+78w/lyA+D7b/s9GEP0JOGI=" crossorigin="anonymous"></script><script>
+ window.MathJax = {
+ chtml: {
+ fontURL: "https://cdn.jsdelivr.net/npm/mathjax@3.2.2/es5/output/chtml/fonts/woff-v2"
+ }
+ };
+</script><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><link href="../deps/font-awesome-6.4.2/css/all.min.css" rel="stylesheet"><link href="../deps/font-awesome-6.4.2/css/v4-shims.min.css" rel="stylesheet"><script src="../deps/headroom-0.11.0/headroom.min.js"></script><script src="../deps/headroom-0.11.0/jQuery.headroom.min.js"></script><script src="../deps/bootstrap-toc-1.0.1/bootstrap-toc.min.js"></script><script src="../deps/clipboard.js-2.0.11/clipboard.min.js"></script><script src="../deps/search-1.0.0/autocomplete.jquery.min.js"></script><script src="../deps/search-1.0.0/fuse.min.js"></script><script src="../deps/search-1.0.0/mark.min.js"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Calculate predicted environmental concentrations in surface water due to drift — PEC_sw_drift"><meta name="description" content="This is a basic, vectorised form of a simple calculation of a contaminant
concentration in surface water based on complete, instantaneous mixing
with input via spray drift."><meta property="og:description" content="This is a basic, vectorised form of a simple calculation of a contaminant
concentration in surface water based on complete, instantaneous mixing
@@ -178,6 +184,16 @@ applications, water depth, crop groups and distances</p>
<span class="r-out co"><span class="r-pr">#&gt;</span> 100 m </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 0.01018774 </span>
<span class="r-in"><span></span></span>
+<span class="r-in"><span><span class="co"># We can also specify distance units explicitly</span></span></span>
+<span class="r-in"><span><span class="kw"><a href="https://rdrr.io/r/base/library.html" class="external-link">library</a></span><span class="op">(</span><span class="va"><a href="https://r-quantities.github.io/units/" class="external-link">units</a></span><span class="op">)</span></span></span>
+<span class="r-msg co"><span class="r-pr">#&gt;</span> udunits database from /usr/share/xml/udunits/udunits2.xml</span>
+<span class="r-in"><span><span class="fu">PEC_sw_drift</span><span class="op">(</span><span class="fl">100</span>, distances <span class="op">=</span> <span class="fu"><a href="https://r-quantities.github.io/units/reference/units.html" class="external-link">set_units</a></span><span class="op">(</span><span class="fu"><a href="https://rdrr.io/r/base/c.html" class="external-link">c</a></span><span class="op">(</span><span class="fl">1</span>, <span class="fl">3</span>, <span class="fl">5</span>, <span class="fl">6</span>, <span class="fl">10</span>, <span class="fl">20</span>, <span class="fl">50</span>, <span class="fl">100</span><span class="op">)</span>, <span class="st">"m"</span><span class="op">)</span>, drift_data <span class="op">=</span> <span class="st">"RF"</span><span class="op">)</span></span></span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> Units: [µg/L]</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 1 m 3 m 5 m 6 m 10 m 20 m 50 m </span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 0.91976667 0.31415827 0.19064473 0.15951494 0.09680051 0.04915079 0.02006434 </span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 100 m </span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 0.01018774 </span>
+<span class="r-in"><span></span></span>
<span class="r-in"><span><span class="co"># or consider aerial application</span></span></span>
<span class="r-in"><span><span class="fu">PEC_sw_drift</span><span class="op">(</span><span class="fl">100</span>, distances <span class="op">=</span> <span class="fu"><a href="https://rdrr.io/r/base/c.html" class="external-link">c</a></span><span class="op">(</span><span class="fl">1</span>, <span class="fl">3</span>, <span class="fl">5</span>, <span class="fl">6</span>, <span class="fl">10</span>, <span class="fl">20</span>, <span class="fl">50</span>, <span class="fl">100</span><span class="op">)</span>, drift_data <span class="op">=</span> <span class="st">"RF"</span>,</span></span>
<span class="r-in"><span> crop_group_RF <span class="op">=</span> <span class="st">"aerial"</span><span class="op">)</span></span></span>

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