Difference between revisions of "April 18, 2013"

From LPOD
Jump to: navigation, search
(Created page with "__NOTOC__ =A Prinzly Origin= <!-- ws:start:WikiTextHeadingRule:0:<h1> --> <!-- ws:start:WikiTextLocalImageRule:6:<img src="/file/view/LPOD-Apr18-13.jpg/42413...")
 
 
(10 intermediate revisions by the same user not shown)
Line 1: Line 1:
 
__NOTOC__
 
__NOTOC__
 
=A Prinzly Origin=
 
=A Prinzly Origin=
 
+
<!-- Start of content -->
  <!-- ws:start:WikiTextHeadingRule:0:&lt;h1&gt; -->
+
<!-- ws:start:WikiTextHeadingRule:0:&lt;h1&gt; -->
<!-- ws:start:WikiTextLocalImageRule:6:&lt;img src=&quot;/file/view/LPOD-Apr18-13.jpg/424139614/LPOD-Apr18-13.jpg&quot; alt=&quot;&quot; title=&quot;&quot; /&gt; -->[[File:LPOD-Apr18-13.jpg|LPOD-Apr18-13.jpg]]<!-- ws:end:WikiTextLocalImageRule:6 --><br />
+
<!-- ws:start:WikiTextLocalImageRule:6:&lt;img src=&quot;/file/view/LPOD-Apr18-13.jpg/424139614/LPOD-Apr18-13.jpg&quot; alt=&quot;&quot; title=&quot;&quot; /&gt; -->[[File:LPOD-Apr18-13.jpg|LPOD-Apr18-13.jpg]]<!-- ws:end:WikiTextLocalImageRule:6 --><br />
 
<em>image from [http://onlinelibrary.wiley.com/store/10.1029/2011JE004000/asset/jgre3033.pdf?v=1&amp;t=hfnbp4ap&amp;s=71b798d67f2569602c5e37f8613ead8972fce9fa Hurwitz and colleagues (2012)]</em><br />
 
<em>image from [http://onlinelibrary.wiley.com/store/10.1029/2011JE004000/asset/jgre3033.pdf?v=1&amp;t=hfnbp4ap&amp;s=71b798d67f2569602c5e37f8613ead8972fce9fa Hurwitz and colleagues (2012)]</em><br />
 
<br />
 
<br />
It has been known since the late 60s and early 70s that lunar sinuous rilles are volcanic lava channels or tubes. Over time improved math-<br />
+
It has been known since the late 60s and early 70s that lunar sinuous rilles are volcanic lava channels or tubes. Over time improved mathematical models of the physical processes that create sinuous rilles, and improved measurements of their dimensions, have led to more and  
ematical models of the physical processes that create sinuous rilles, and improved measurements of their dimensions, have led to more and <br />
+
more refinements of the details of the eruptions. The latest comes from Debra Hurwitz, Jim Head, Lionel Wilson and Harry Hiesinger in a paper  
more refinements of the details of the eruptions. The latest comes from Debra Hurwitz, Jim Head, Lionel Wilson and Harry Hiesinger in a paper <br />
+
that is freely available online. Their model suggest that the Prinz Rille shown here formed by thermal erosion as a new flow of lava melted into  
that is freely available online. Their model suggest that the Prinz Rille shown here formed by thermal erosion as a new flow of lava melted into <br />
+
pre-existing lavas. Mechanical erosion - the new flow digging into the early one - is less effective on the Moon than Earth because of lower  
pre-existing lavas. Mechanical erosion - the new flow digging into the early one - is less effective on the Moon than Earth because of lower <br />
+
gravity and very gentle slopes. It turns out that the chemical composition also significantly affects the efficiency of thermal erosion through  
gravity and very gentle slopes. It turns out that the chemical composition also significantly affects the efficiency of thermal erosion through <br />
+
the temperature likely to be associated with different compositions. The hotter the new lava the more effectively it can melt the underlying  
the temperature likely to be associated with different compositions. The hotter the new lava the more effectively it can melt the underlying <br />
+
lava, of course. The hottest lavas known in Earth history were [http://www3.imperial.ac.uk/earthscienceandengineering/aboutese/hottopic/pasttopics/komatiites komatiites] that also had very low viscosity - they flowed easily - which  
lava, of course. The hottest lavas known in Earth history were [http://www3.imperial.ac.uk/earthscienceandengineering/aboutese/hottopic/pasttopics/komatiites komatiites] that also had very low viscosity - they flowed easily - which <br />
+
increases thermal erosion. No komatiities have been found on the Moon so models with that composition give a upper limit for how rapidly the  
increases thermal erosion. No komatiities have been found on the Moon so models with that composition give a upper limit for how rapidly the <br />
+
Prinz Rilles was formed - about 0.4 years. If the magmas were low-titanium mare basalts the rille may have been active for 2.2 years. One  
Prinz Rilles was formed - about 0.4 years. If the magmas were low-titanium mare basalts the rille may have been active for 2.2 years. One <br />
+
thing that LPOD previously [[February_19,_2007|noted]] is that nearly all sinuous rilles occur in the Procellarum KREEP Terrain which has the highest measured  
thing that LPOD previously [http://www.lpod.org/?m=20070219 noted] is that nearly all sinuous rilles occur in the Procellarum KREEP Terrain which has the highest measured <br />
+
radioactivity on the Moon. Perhaps the likely high magma temperatures associated with PKT magmas led to the common occurences of  
radioactivity on the Moon. Perhaps the likely high magma temperatures associated with PKT magmas led to the common occurences of <br />
+
sinuous rilles.
sinuous rilles.<br />
+
<br />
 
<br />
 
<br />
 
<em>[mailto:tychocrater@yahoo.com Chuck Wood]</em><br />
 
<em>[mailto:tychocrater@yahoo.com Chuck Wood]</em><br />
Line 26: Line 26:
 
<br />
 
<br />
 
<strong>Related Links</strong><br />
 
<strong>Related Links</strong><br />
Rükl plate [http://the-moon.wikispaces.com/R%C3%BCkl+19 19]<br />
+
Rükl plate [https://the-moon.us/wiki/R%C3%BCkl_19 19]<br />
<em>[http://lpod.wikispaces.com/21st+Century+Atlas+of+the+Moon 21st Century Atlas]</em> chart 21.<br />
+
<em>[[21st Century Atlas of the Moon|21st Century Atlas]]</em> chart 21.<br />
 
<br />
 
<br />
 +
<p><b>Yesterday's LPOD:</b> [[April 17, 2013|A Submerged Terrain]] </p>
 +
<p><b>Tomorrow's LPOD:</b> [[April 19, 2013|Unseen]] </p>
 
<hr />
 
<hr />
 
+
{{wiki/ArticleFooter}}
----
 
===COMMENTS?===
 
Click on this icon [[image:PostIcon.jpg]] at the upper right to post a comment.
 

Latest revision as of 08:22, 28 October 2018

A Prinzly Origin

LPOD-Apr18-13.jpg
image from Hurwitz and colleagues (2012)

It has been known since the late 60s and early 70s that lunar sinuous rilles are volcanic lava channels or tubes. Over time improved mathematical models of the physical processes that create sinuous rilles, and improved measurements of their dimensions, have led to more and more refinements of the details of the eruptions. The latest comes from Debra Hurwitz, Jim Head, Lionel Wilson and Harry Hiesinger in a paper that is freely available online. Their model suggest that the Prinz Rille shown here formed by thermal erosion as a new flow of lava melted into pre-existing lavas. Mechanical erosion - the new flow digging into the early one - is less effective on the Moon than Earth because of lower gravity and very gentle slopes. It turns out that the chemical composition also significantly affects the efficiency of thermal erosion through the temperature likely to be associated with different compositions. The hotter the new lava the more effectively it can melt the underlying lava, of course. The hottest lavas known in Earth history were komatiites that also had very low viscosity - they flowed easily - which increases thermal erosion. No komatiities have been found on the Moon so models with that composition give a upper limit for how rapidly the Prinz Rilles was formed - about 0.4 years. If the magmas were low-titanium mare basalts the rille may have been active for 2.2 years. One thing that LPOD previously noted is that nearly all sinuous rilles occur in the Procellarum KREEP Terrain which has the highest measured radioactivity on the Moon. Perhaps the likely high magma temperatures associated with PKT magmas led to the common occurences of sinuous rilles.

Chuck Wood

Technical Details
A treasure trove of 35 normally restricted journal articles, including the one discussed today, of LRO results is available here.

Related Links
Rükl plate 19
21st Century Atlas chart 21.

Yesterday's LPOD: A Submerged Terrain

Tomorrow's LPOD: Unseen



COMMENTS?

Register, Log in, and join in the comments.