<?xml version="1.0" encoding="utf-8"?>
<rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Recent changes to Home</title><link>https://sourceforge.net/p/mafor/wiki/Home/</link><description>Recent changes to Home</description><atom:link href="https://sourceforge.net/p/mafor/wiki/Home/feed" rel="self"/><language>en</language><lastBuildDate>Wed, 01 Mar 2017 15:11:11 -0000</lastBuildDate><atom:link href="https://sourceforge.net/p/mafor/wiki/Home/feed" rel="self" type="application/rss+xml"/><item><title>Home modified by Matthias Karl</title><link>https://sourceforge.net/p/mafor/wiki/Home/</link><description>&lt;div class="markdown_content"&gt;&lt;pre&gt;--- v3
+++ v4
@@ -1,6 +1,6 @@
 Welcome to the Multicomponent Aerosol Formation model MAFOR

-The basic gas phase chemistry and aqueous phase chemistry is based on the recent version of the “Module Efficient Calculating the Chemistry of the Atmosphere (MECCA)” (Sander et al., 2011). The kinetic pre-processor KPP version 2.2.1 (Sandu and Sander, 2006) is used to generate Fortran 90 code for the chemistry module. The Rosenbrock ROS3 solver with automatic time step control is used to integrate the differential equation system of gas phase and aqueous phase reactions. In short, MAFOR is the coupling of the (dynamically generated) chemistry module from MECCA and a new aerosol dynamics module. The treatment of aerosol dynamics is based on the concepts by M. Z. Jacobson described in his book “Fundamentals of Atmospheric Modeling” (Jacobson, 2005). The MAFOR model offers great flexibility to the user who may decide about the included aerosol processes, the included chemistry, the size resolution of the model aerosol and many other parameters of the simulation. 
+The basic gas phase chemistry and aqueous phase chemistry is based on the recent version of the “Module Efficient Calculating the Chemistry of the Atmosphere (MECCA)” (Sander et al., 2011). The kinetic pre-processor KPP version 2.2.3 (Sandu and Sander, 2006; [KPP Software](http://people.cs.vt.edu/~asandu/Software/Kpp/)) is used to generate Fortran 90 code for the chemistry module. The Rosenbrock ROS3 solver with automatic time step control is used to integrate the differential equation system of gas phase and aqueous phase reactions. In short, MAFOR is the coupling of the (dynamically generated) chemistry module from MECCA and a new aerosol dynamics module. The treatment of aerosol dynamics is based on the concepts by M. Z. Jacobson described in his book “Fundamentals of Atmospheric Modeling” (Jacobson, 2005). The MAFOR model offers great flexibility to the user who may decide about the included aerosol processes, the included chemistry, the size resolution of the model aerosol and many other parameters of the simulation. 

 A list of references for the MAFOR model can be found here: [References].

&lt;/pre&gt;
&lt;/div&gt;</description><dc:creator xmlns:dc="http://purl.org/dc/elements/1.1/">Matthias Karl</dc:creator><pubDate>Wed, 01 Mar 2017 15:11:11 -0000</pubDate><guid>https://sourceforge.net343a985569cfa8db644f5ea8f18c0a0511d37d88</guid></item><item><title>Home modified by Matthias Karl</title><link>https://sourceforge.net/p/mafor/wiki/Home/</link><description>&lt;div class="markdown_content"&gt;&lt;pre&gt;--- v2
+++ v3
@@ -2,8 +2,12 @@

 The basic gas phase chemistry and aqueous phase chemistry is based on the recent version of the “Module Efficient Calculating the Chemistry of the Atmosphere (MECCA)” (Sander et al., 2011). The kinetic pre-processor KPP version 2.2.1 (Sandu and Sander, 2006) is used to generate Fortran 90 code for the chemistry module. The Rosenbrock ROS3 solver with automatic time step control is used to integrate the differential equation system of gas phase and aqueous phase reactions. In short, MAFOR is the coupling of the (dynamically generated) chemistry module from MECCA and a new aerosol dynamics module. The treatment of aerosol dynamics is based on the concepts by M. Z. Jacobson described in his book “Fundamentals of Atmospheric Modeling” (Jacobson, 2005). The MAFOR model offers great flexibility to the user who may decide about the included aerosol processes, the included chemistry, the size resolution of the model aerosol and many other parameters of the simulation. 

+A list of references for the MAFOR model can be found here: [References].

-To add a new page simply reference it within brackets, e.g.: [SamplePage].
+A detailed model description of MAFOR (version 1.0) is provided in the following article:
+
+Karl, M., Gross, A., Pirjola, L., and C. Leck, A new flexible multicomponent model for the study of aerosol dynamics in the marine boundary layer, Tellus B, 63(5), 1001-1025, doi: 10.1111/j.1600-0889.2011.00562.x, 2011. Available at: [http://onlinelibrary.wiley.com/doi/10.1111/j.1600-0889.2011.00562.x/abstract](http://onlinelibrary.wiley.com/doi/10.1111/j.1600-0889.2011.00562.x/abstract) 
+

 The wiki uses [Markdown](/p/mafor/wiki/markdown_syntax/) syntax.

&lt;/pre&gt;
&lt;/div&gt;</description><dc:creator xmlns:dc="http://purl.org/dc/elements/1.1/">Matthias Karl</dc:creator><pubDate>Mon, 20 Feb 2017 20:01:39 -0000</pubDate><guid>https://sourceforge.net7a241ec27dec9cd7810434f4245188a9b2b85d1e</guid></item><item><title>Home modified by Matthias Karl</title><link>https://sourceforge.net/p/mafor/wiki/Home/</link><description>&lt;div class="markdown_content"&gt;&lt;pre&gt;--- v1
+++ v2
@@ -1,6 +1,9 @@
-Welcome to your wiki!
+Welcome to the Multicomponent Aerosol Formation model MAFOR

-This is the default page, edit it as you see fit. To add a new page simply reference it within brackets, e.g.: [SamplePage].
+The basic gas phase chemistry and aqueous phase chemistry is based on the recent version of the “Module Efficient Calculating the Chemistry of the Atmosphere (MECCA)” (Sander et al., 2011). The kinetic pre-processor KPP version 2.2.1 (Sandu and Sander, 2006) is used to generate Fortran 90 code for the chemistry module. The Rosenbrock ROS3 solver with automatic time step control is used to integrate the differential equation system of gas phase and aqueous phase reactions. In short, MAFOR is the coupling of the (dynamically generated) chemistry module from MECCA and a new aerosol dynamics module. The treatment of aerosol dynamics is based on the concepts by M. Z. Jacobson described in his book “Fundamentals of Atmospheric Modeling” (Jacobson, 2005). The MAFOR model offers great flexibility to the user who may decide about the included aerosol processes, the included chemistry, the size resolution of the model aerosol and many other parameters of the simulation. 
+
+
+To add a new page simply reference it within brackets, e.g.: [SamplePage].

 The wiki uses [Markdown](/p/mafor/wiki/markdown_syntax/) syntax.

&lt;/pre&gt;
&lt;/div&gt;</description><dc:creator xmlns:dc="http://purl.org/dc/elements/1.1/">Matthias Karl</dc:creator><pubDate>Fri, 09 Oct 2015 20:41:44 -0000</pubDate><guid>https://sourceforge.net06b0bd65e3922650b82dd3d66104c07672c24d02</guid></item><item><title>Home modified by Matthias Karl</title><link>https://sourceforge.net/p/mafor/wiki/Home/</link><description>&lt;div class="markdown_content"&gt;&lt;p&gt;Welcome to your wiki!&lt;/p&gt;
&lt;p&gt;This is the default page, edit it as you see fit. To add a new page simply reference it within brackets, e.g.: &lt;span&gt;[SamplePage]&lt;/span&gt;.&lt;/p&gt;
&lt;p&gt;The wiki uses &lt;a class="" href="/p/mafor/wiki/markdown_syntax/"&gt;Markdown&lt;/a&gt; syntax.&lt;/p&gt;
&lt;p&gt;&lt;/p&gt;&lt;h6&gt;Project Members:&lt;/h6&gt;
	&lt;ul class="md-users-list"&gt;
		&lt;li&gt;&lt;a href="/u/madformafor/"&gt;Matthias Karl&lt;/a&gt; (admin)&lt;/li&gt;
		
	&lt;/ul&gt;&lt;br/&gt;
&lt;p&gt;&lt;span class="download-button-561822633e5e832e5a520133" style="margin-bottom: 1em; display: block;"&gt;&lt;/span&gt;&lt;/p&gt;&lt;p&gt;&lt;/p&gt;&lt;/div&gt;</description><dc:creator xmlns:dc="http://purl.org/dc/elements/1.1/">Matthias Karl</dc:creator><pubDate>Fri, 09 Oct 2015 20:24:03 -0000</pubDate><guid>https://sourceforge.net9ae9f5c96a5cacfeb50cc1f6cc1a70cb285a4b31</guid></item></channel></rss>