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authorRanke Johannes <johannes.ranke@agroscope.admin.ch>2024-01-31 14:09:50 +0100
committerRanke Johannes <johannes.ranke@agroscope.admin.ch>2024-01-31 14:09:50 +0100
commitf58caa911add00f02c8be879018f370299ff02bf (patch)
tree2d8375bf1fedbd4a85f146ad9b2f91fc9560b82e /docs/reference/PEC_sw_exposit_drainage.html
parent6a3c816f4a08e2e9b1ae4d1a64dcd4331af8a73a (diff)
Rebuild all online docs
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index a1e135b..5da26c6 100644
--- a/docs/reference/PEC_sw_exposit_drainage.html
+++ b/docs/reference/PEC_sw_exposit_drainage.html
@@ -1,53 +1,11 @@
<!DOCTYPE html>
-<<<<<<< HEAD
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-=======
<!-- 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"><meta name="description" content='This is a reimplementation of the calculation described in the Exposit 3.02 spreadsheet file,
->>>>>>> refs/remotes/origin/main
in the worksheet "Konzept Drainage". Although there are four groups of
compounds ("Gefährdungsgruppen"), only one distinction is made in the
calculations, between compounds with low mobility (group 1) and compounds
with modest to high mobility (groups 2, 3 and 4). In this implementation,
the group is derived only from the Koc, if not given explicitly. For
-<<<<<<< HEAD
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- <h1>Calculate PEC surface water due to drainage as in Exposit 3</h1>
-=======
-details, see the discussion of the function arguments below.'><title>Calculate PEC surface water due to drainage as in Exposit 3 — PEC_sw_exposit_drainage • 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-5.2.2/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.2.2/bootstrap.bundle.min.js"></script><!-- Font Awesome icons --><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/all.min.css" integrity="sha256-mmgLkCYLUQbXn0B1SRqzHar6dCnv9oZFPEC1g1cwlkk=" crossorigin="anonymous"><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/v4-shims.min.css" integrity="sha256-wZjR52fzng1pJHwx4aV2AO3yyTOXrcDW7jBpJtTwVxw=" crossorigin="anonymous"><!-- bootstrap-toc --><script src="https://cdn.jsdelivr.net/gh/afeld/bootstrap-toc@v1.0.1/dist/bootstrap-toc.min.js" integrity="sha256-4veVQbu7//Lk5TSmc7YV48MxtMy98e26cf5MrgZYnwo=" crossorigin="anonymous"></script><!-- headroom.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/headroom.min.js" integrity="sha256-AsUX4SJE1+yuDu5+mAVzJbuYNPHj/WroHuZ8Ir/CkE0=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/jQuery.headroom.min.js" integrity="sha256-ZX/yNShbjqsohH1k95liqY9Gd8uOiE1S4vZc+9KQ1K4=" crossorigin="anonymous"></script><!-- clipboard.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/clipboard.js/2.0.6/clipboard.min.js" integrity="sha256-inc5kl9MA1hkeYUt+EC3BhlIgyp/2jDIyBLS6k3UxPI=" crossorigin="anonymous"></script><!-- search --><script src="https://cdnjs.cloudflare.com/ajax/libs/fuse.js/6.4.6/fuse.js" integrity="sha512-zv6Ywkjyktsohkbp9bb45V6tEMoWhzFzXis+LrMehmJZZSys19Yxf1dopHx7WzIKxr5tK2dVcYmaCk2uqdjF4A==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/autocomplete.js/0.38.0/autocomplete.jquery.min.js" integrity="sha512-GU9ayf+66Xx2TmpxqJpliWbT5PiGYxpaG8rfnBEk1LL8l1KGkRShhngwdXK1UgqhAzWpZHSiYPc09/NwDQIGyg==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mark.js/8.11.1/mark.min.js" integrity="sha512-5CYOlHXGh6QpOFA/TeTylKLWfB3ftPsde7AnmhuitiTX4K5SqCLBeKro6sPS8ilsz1Q4NRx3v8Ko2IBiszzdww==" crossorigin="anonymous"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Calculate PEC surface water due to drainage as in Exposit 3 — PEC_sw_exposit_drainage"><meta property="og:description" content='This is a reimplementation of the calculation described in the Exposit 3.02 spreadsheet file,
+details, see the discussion of the function arguments below.'><title>Calculate PEC surface water due to drainage as in Exposit 3 — PEC_sw_exposit_drainage • 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><!-- Font Awesome icons --><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/all.min.css" integrity="sha256-mmgLkCYLUQbXn0B1SRqzHar6dCnv9oZFPEC1g1cwlkk=" crossorigin="anonymous"><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/v4-shims.min.css" integrity="sha256-wZjR52fzng1pJHwx4aV2AO3yyTOXrcDW7jBpJtTwVxw=" crossorigin="anonymous"><!-- bootstrap-toc --><script src="https://cdn.jsdelivr.net/gh/afeld/bootstrap-toc@v1.0.1/dist/bootstrap-toc.min.js" integrity="sha256-4veVQbu7//Lk5TSmc7YV48MxtMy98e26cf5MrgZYnwo=" crossorigin="anonymous"></script><!-- headroom.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/headroom.min.js" integrity="sha256-AsUX4SJE1+yuDu5+mAVzJbuYNPHj/WroHuZ8Ir/CkE0=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/jQuery.headroom.min.js" integrity="sha256-ZX/yNShbjqsohH1k95liqY9Gd8uOiE1S4vZc+9KQ1K4=" crossorigin="anonymous"></script><!-- clipboard.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/clipboard.js/2.0.6/clipboard.min.js" integrity="sha256-inc5kl9MA1hkeYUt+EC3BhlIgyp/2jDIyBLS6k3UxPI=" crossorigin="anonymous"></script><!-- search --><script src="https://cdnjs.cloudflare.com/ajax/libs/fuse.js/6.4.6/fuse.js" integrity="sha512-zv6Ywkjyktsohkbp9bb45V6tEMoWhzFzXis+LrMehmJZZSys19Yxf1dopHx7WzIKxr5tK2dVcYmaCk2uqdjF4A==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/autocomplete.js/0.38.0/autocomplete.jquery.min.js" integrity="sha512-GU9ayf+66Xx2TmpxqJpliWbT5PiGYxpaG8rfnBEk1LL8l1KGkRShhngwdXK1UgqhAzWpZHSiYPc09/NwDQIGyg==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mark.js/8.11.1/mark.min.js" integrity="sha512-5CYOlHXGh6QpOFA/TeTylKLWfB3ftPsde7AnmhuitiTX4K5SqCLBeKro6sPS8ilsz1Q4NRx3v8Ko2IBiszzdww==" crossorigin="anonymous"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Calculate PEC surface water due to drainage as in Exposit 3 — PEC_sw_exposit_drainage"><meta property="og:description" content='This is a reimplementation of the calculation described in the Exposit 3.02 spreadsheet file,
in the worksheet "Konzept Drainage". Although there are four groups of
compounds ("Gefährdungsgruppen"), only one distinction is made in the
calculations, between compounds with low mobility (group 1) and compounds
@@ -64,7 +22,7 @@ details, see the discussion of the function arguments below.'><!-- mathjax --><s
<a class="navbar-brand me-2" href="../index.html">pfm</a>
- <small class="nav-text text-muted me-auto" data-bs-toggle="tooltip" data-bs-placement="bottom" title="">0.6.0</small>
+ <small class="nav-text text-muted me-auto" data-bs-toggle="tooltip" data-bs-placement="bottom" title="">0.6.1</small>
<button class="navbar-toggler" type="button" data-bs-toggle="collapse" data-bs-target="#navbar" aria-controls="navbar" aria-expanded="false" aria-label="Toggle navigation">
@@ -86,7 +44,6 @@ details, see the discussion of the function arguments below.'><!-- mathjax --><s
</li>
</ul></div>
->>>>>>> refs/remotes/origin/main
</div>
</nav><div class="container template-reference-topic">
@@ -107,12 +64,8 @@ the group is derived only from the Koc, if not given explicitly. For
details, see the discussion of the function arguments below.</p>
</div>
-<<<<<<< HEAD
- <div id="ref-usage">
-=======
<div class="section level2">
<h2 id="ref-usage">Usage<a class="anchor" aria-label="anchor" href="#ref-usage"></a></h2>
->>>>>>> refs/remotes/origin/main
<div class="sourceCode"><pre class="sourceCode r"><code><span><span class="fu">PEC_sw_exposit_drainage</span><span class="op">(</span></span>
<span> <span class="va">rate</span>,</span>
<span> interception <span class="op">=</span> <span class="fl">0</span>,</span>
@@ -126,23 +79,13 @@ details, see the discussion of the function arguments below.</p>
<span><span class="op">)</span></span></code></pre></div>
</div>
-<<<<<<< HEAD
- <div id="source">
- <h2>Source</h2>
- <p>Excel 3.02 spreadsheet available from
- <a href="https://www.bvl.bund.de/SharedDocs/Downloads/04_Pflanzenschutzmittel/zul_umwelt_exposit.html" class="external-link">https://www.bvl.bund.de/SharedDocs/Downloads/04_Pflanzenschutzmittel/zul_umwelt_exposit.html</a></p>
- </div>
- <div id="arguments">
- <h2>Arguments</h2>
-=======
<div class="section level2">
<h2 id="source">Source<a class="anchor" aria-label="anchor" href="#source"></a></h2>
<p>Excel 3.02 spreadsheet available from
-<a href="https://www.bvl.bund.de/DE/04_Pflanzenschutzmittel/03_Antragsteller/04_Zulassungsverfahren/07_Naturhaushalt/psm_naturhaush_node.html#doc1400590bodyText3" class="external-link">https://www.bvl.bund.de/DE/04_Pflanzenschutzmittel/03_Antragsteller/04_Zulassungsverfahren/07_Naturhaushalt/psm_naturhaush_node.html#doc1400590bodyText3</a></p>
+<a href="https://www.bvl.bund.de/SharedDocs/Downloads/04_Pflanzenschutzmittel/zul_umwelt_exposit.html" class="external-link">https://www.bvl.bund.de/SharedDocs/Downloads/04_Pflanzenschutzmittel/zul_umwelt_exposit.html</a></p>
</div>
<div class="section level2">
<h2 id="arguments">Arguments<a class="anchor" aria-label="anchor" href="#arguments"></a></h2>
->>>>>>> refs/remotes/origin/main
<dl><dt>rate</dt>
<dd><p>The application rate in g/ha</p></dd>
@@ -154,60 +97,6 @@ details, see the discussion of the function arguments below.</p>
<dt>Koc</dt>
<dd><p>The sorption coefficient to soil organic carbon used to determine the mobility. A trigger
value of 550 L/kg is used in order to decide if Koc &gt;&gt; 500.</p></dd>
-<<<<<<< HEAD
-
-
-<dt>mobility</dt>
-<dd><p>Overrides what is determined from the Koc.</p></dd>
-
-
-<dt>DT50</dt>
-<dd><p>The soil half-life in days</p></dd>
-
-
-<dt>t_drainage</dt>
-<dd><p>The time between application and the drainage event, where degradation occurs, in days</p></dd>
-
-
-<dt>V_ditch</dt>
-<dd><p>The volume of the ditch is assumed to be 1 m * 100 m * 30 cm = 30 m3</p></dd>
-
-
-<dt>V_drainage</dt>
-<dd><p>The drainage volume, equivalent to 1 mm precipitation on 1 ha for spring/summer or 10 mm for
-autumn/winter/early spring.</p></dd>
-
-
-<dt>dilution</dt>
-<dd><p>The dilution factor</p></dd>
-
-</dl></div>
- <div id="value">
- <h2>Value</h2>
-
-
-<p>A list containing the following components</p>
-<p></p>
-<dl><dt>perc_runoff</dt>
-<dd><p>The runoff percentages for dissolved and bound substance</p></dd>
-
- <dt>runoff</dt>
-<dd><p>A matrix containing dissolved and bound input for the different distances</p></dd>
-
- <dt>PEC_sw_runoff</dt>
-<dd><p>A matrix containing PEC values for dissolved and bound substance
- for the different distances. If the rate was given in g/ha, the PECsw are in microg/L.</p></dd>
-
-
-</dl></div>
- <div id="see-also">
- <h2>See also</h2>
- <div class="dont-index"><p><code><a href="perc_runoff_exposit.html">perc_runoff_exposit</a></code> for runoff loss percentages and <code><a href="perc_runoff_reduction_exposit.html">perc_runoff_reduction_exposit</a></code> for runoff reduction percentages used</p></div>
- </div>
-
- <div id="ref-examples">
- <h2>Examples</h2>
-=======
<dt>mobility</dt>
@@ -258,7 +147,6 @@ for the different distances. If the rate was given in g/ha, the PECsw are in mic
<div class="section level2">
<h2 id="ref-examples">Examples<a class="anchor" aria-label="anchor" href="#ref-examples"></a></h2>
->>>>>>> refs/remotes/origin/main
<div class="sourceCode"><pre class="sourceCode r"><code><span class="r-in"><span> <span class="fu">PEC_sw_exposit_drainage</span><span class="op">(</span><span class="fl">500</span>, Koc <span class="op">=</span> <span class="fl">150</span><span class="op">)</span></span></span>
<span class="r-out co"><span class="r-pr">#&gt;</span> $perc_drainage_total</span>
<span class="r-out co"><span class="r-pr">#&gt;</span> spring autumn </span>
@@ -274,24 +162,6 @@ for the different distances. If the rate was given in g/ha, the PECsw are in mic
<span class="r-out co"><span class="r-pr">#&gt;</span> </span>
</code></pre></div>
</div>
-<<<<<<< HEAD
- </div>
- <div class="col-md-3 hidden-xs hidden-sm" id="pkgdown-sidebar">
- <nav id="toc" data-toggle="toc" class="sticky-top"><h2 data-toc-skip>Contents</h2>
- </nav></div>
-</div>
-
-
- <footer><div class="copyright">
- <p></p><p>Developed by Johannes Ranke.</p>
-</div>
-
-<div class="pkgdown">
- <p></p><p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.0.7.</p>
-</div>
-
- </footer></div>
-=======
</main><aside class="col-md-3"><nav id="toc"><h2>On this page</h2>
</nav></aside></div>
@@ -305,16 +175,10 @@ for the different distances. If the rate was given in g/ha, the PECsw are in mic
</div>
</footer></div>
->>>>>>> refs/remotes/origin/main
-
-
-<<<<<<< HEAD
-=======
->>>>>>> refs/remotes/origin/main
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