<div dir="ltr">Thank you very much Kenichiro! This was exactly what I was looking for!<div><br></div><div>-ashton</div></div><div class="gmail_extra"><br><div class="gmail_quote">On Thu, Oct 5, 2017 at 10:39 PM, kenichiro yoshimi <span dir="ltr"><<a href="mailto:rccm.kyoshimi@gmail.com" target="_blank">rccm.kyoshimi@gmail.com</a>></span> wrote:<br><blockquote class="gmail_quote" style="margin:0 0 0 .8ex;border-left:1px #ccc solid;padding-left:1ex">Hi ashton,<br>
<br>
Perhaps the python programmable filter is needed for a 1D average you<br>
want to achieve. I have attached a state file as a similar example<br>
that firstly generates the cross sections along the z-axis by cutting<br>
a volume and then calculates the averages on them respectively.<br>
<br>
I hope this will help.<br>
Best<br>
<div><div class="h5"><br>
2017-10-06 3:15 GMT+09:00 A <<a href="mailto:andrealphus@gmail.com">andrealphus@gmail.com</a>>:<br>
> Hi all,<br>
><br>
> I have a 3D volume (xyz) with each point/cell having a corresponding value<br>
> (velocity; this is a model of the crust and seismic velocity).<br>
><br>
> I want to calculate a 1D average velocity profile along the z-axis (so at<br>
> every depth average all the x-y velocity values).<br>
><br>
> Any idea?<br>
><br>
> Thanks!<br>
><br>
> ashton<br>
><br>
> p.s. point data or cell data solutions would work<br>
><br>
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