143 lines
8.1 KiB
Plaintext
Executable File
143 lines
8.1 KiB
Plaintext
Executable File
.. _pset:
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 _place_holder;
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> **_PSET (Point Set)_**
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>
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>> Associate a name with a point set based on various geometric and logical
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operators. Manipulate point sets. Output point sets.
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>>
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>> **seq** forms a pset of the nodes defined by ifirst, ilast, istride;
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the special syntax,: 1,0,0 refers to all nodes and 0,0,0 refers to the last
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set of nodes created.
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**union, inter** and **not** are logical operations on previously defined psets. _place_holder; The definition of the unary operator **not **is extended such that **not**/p1/p2 means p1 and (not(p2)).
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**list **lists nodes in a pset or names of all psets
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**write **write pset node list to a file
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pset / [name|_-all-_] / write/ file_name[.vertexset] / [_ascii_|binary]
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**zone **write pset node list to a file (FEHM Flow and Transport code zone file format)
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pset / [name|_-all-_] / zone / file_name[.zone] / [ascii]
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**zonn **write pset node list to a file (FEHM Flow and Transport code zonn file format)
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pset / [name|_-all-_] / zonn / file_name[.zonn] / [ascii]
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In write|zone|zonn mode the file name suffix .vertexset|.zone|.zonn is added
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if the string provided does not have the file name suffix. The -all- argument
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specifies that all psets are output. The name argument is the name of a single
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pset.
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**delete **deletes a previously defined pset
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**attribute _place_holder; **forms a pset from all points in** **ifirst,ilast,istride which have the specified value for a node based attribute. This option was previously named **zq.**
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If the optional comparator field is given; that operation is used to compare
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the attribute value to the requested value.
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**geom/xyz/** forms a pset from all points inside the box whose corners are xl,yl,zl and xu,yu,zu relative to the geometry center at xc,yc,zc.
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**geom/rtz/** forms a pset of nodes within the cylinder or cylindrical shell given by radius r1 to r2, angle theta t1 to t2 and height z1 to z2.
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**geom/rtp**/ forms a pset of nodes within the sphere, sperical shell or sperical section given by radius r1 to r2, and angles theta t1 to t2 and angles phi p1 to p2. _place_holder; [See chapter II, A. Conventions](../conventions.html) for an explanation of angles theta and phi.
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**region**/region name/ifirst,ilast,istride
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**mregion**/mregion name/ifirst,ilast,istride will return all nodes that are in the specified region/mregion - the definition of the region/mregion is evaluated to determine membership. _place_holder; Hence the result may vary from what would be returned if the 'imt1' value of the nodes had been queried using the **attribute** option
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**surface** identifies nodes on the specified surface. _place_holder; Keyword surface names have the following meaning:
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>>
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>>> -**all**- will identify nodes on any surface.
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-**interface**- will identify nodes on any interface surface.
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-**boundary**- will idendify nodes on exterior surfaces.
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**eltset** form a pset of nodes in the element set listed.
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**constraints** forms a pset of nodes having the specified number of constraints. _place_holder; The node's **icr** value is used as an index to the **icontab **attribute which gives the number of constraints. _place_holder; [See chapter III, A](../meshobject.html) for an explanation of the **icontab** entries. FORMAT: **pset**/pset name/ **seq**/ifirst,ilast,istride
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**union|inter|not|delete/**pset1[/pset2/.../psetn]
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**list **
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**write **/ file_name[.vertexset] / [_ascii_|binary]
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**zone **/ file_name[.zone] / [ascii]
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**zonn **/ file_name[.zonn] / [ascii]
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**delete**
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**attribute**/attribute /ifirst,ilast,istride/value/[lt|le|gt|ge|eq|ne]
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**attribute**/attribute /ifirst,ilast,istride/[lt|le|gt|ge|eq|ne]/value
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**zq**/attribute /ifirst,ilast,istride/value/[lt|le|gt|ge|eq|ne]
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**zq**/attribute /ifirst,ilast,istride/[lt|le|gt|ge|eq|ne]/value
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**region**/region name/ifirst,ilast,istride
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**mregion**/mregion name/ifirst,ilast,istride
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**geom**/**xyz**/ifirst,ilast,istride/xl,yl,zl/xu,yu,zu/xcen,ycen,zcen
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**geom**/**rtz**/ifirst,ilast,istride/r1,t1,z1/r2,t2,z2/xcen,ycen,zcen
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**geom**/**rtp**/ifirst,ilast,istride/r1,t1,p1/r2/t2/p2/xcen,ycen,zcen
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**surface**/surface_name/[ifirst,ilast,istride] **surface** will select nodes that are on the specified surface. _place_holder; If **-interface- **is specified for the surface name, all interface _place_holder; nodes _place_holder; will be returned. _place_holder; If** -boundary-** is specified for the surface name, all nodes on external bounding surfaces will be returned. If** -all-** is specified all nodes on any surface are returned.
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**eltset**/element_set_name **eltset **will return all nodes that are vertices of the elements in the specified element set **constraints**/number_of_constraints/ifirst,ilast,istride  _place_holder; EXAMPLES: **pset**/apset/**seq**/1,0,0/
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 _place_holder;associate the pset name apsetwith all points.
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**pset**/apset/**seq**/0,0,0/
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 _place_holder;associate the pset name apsetwith the last set of nodes
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created.
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**pset**/apset/**union**/pset1,pset2,pset
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 _place_holder;associate the pset name apset with the set of nodes which
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belong to at least one of pset1, pset2, pset3.
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**pset**/apset/**inter**/pset1,pset2,pset3
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 _place_holder; _place_holder; associate the pset name apset with the
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set of nodes which belong to pset1, and pset2, and pset3.
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**pset**/apset/**not**/pset1,pset2,pset3
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 _place_holder; _place_holder; associate the pset name apset with the
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set of nodes which belong to pset1, and do not belong to pset2, and do not
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belong to pset3
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**pset**/apset/**not**/pset1
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 _place_holder; _place_holder; associate the pset name apset with the
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set of nodes which do not belong to pset1
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**pset**//**list**/
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 _place_holder; _place_holder; list the names of all psets
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**pset**/mypset/**list**
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 _place_holder; _place_holder; output the list the node numbers of the
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members of mypset to the screen and the log file outx3dgen
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**pset**/mypset/**write/file_name.vertexset/ascii**
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 _place_holder; _place_holder; Write list of nodes in pset mypset to
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an ascii file named file_name.vertexset
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**pset**/-all-/**write/root_name/ascii**
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Write list of nodes in all psets. root_name is treated as a root name and each
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pset is written to a separate file beginning with that root. For example, if
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you have psets named pset1 and pset2, they will be written to files called
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root_name_pset1.vertexset and root_name_pset2.vertexset.
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**pset**/mypset/**zone/file_name.zone/ascii**
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 _place_holder; _place_holder; Write list of nodes in pset mypset to
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an ascii file named file_name.zone The output is in FEHM zone file format.
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**pset**/apset/**attribute**/**itp**/1,0,0/10/**ge**
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 _place_holder; _place_holder; associate the name apset with the
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points whose type field(**itp1**) has value greater than or equal to 10 (these
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would be boundary nodes).
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**pset**/mypset/**geom**/**xyz**/1,0,0/1.,1.,-5./10.,20.,10./
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 _place_holder; _place_holder; associate the name mypset with all
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nodes that fall with the box with corners at (1,1,-5) and (10,20,10)
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**pset**/mypset/**geom/rtz/pset,get,**oldpset/0.,0.,0./10.,360.,10. _place_holder; _place_holder; associate the name mypset with the nodes that are members of the pset oldpset and which fall inside the cylinder of radius 10 and height 10 and whose axis is the z-axis.
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**pset**/spset/**surface**/s1/1,0,0
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 _place_holder; associate the name spset with the set of nodes that lie on
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the surface s1.
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**pset**/spseta/**surface**/s2/**pset,get,spset**
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 _place_holder; associate the name spseta with the set of nodes that lie
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on the surface s2 and which are members of the pset spset _place_holder;
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This command and the previous command would identify the nodes that are on the
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intersection of surfaces s1 and s2 and give the name spseta to these nodes.
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**pset**/mypset/**constraints**/3
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 _place_holder;associate the name mypset with the set of nodes that have 3
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constraints ( normally the set of nodes that lie on 3 _place_holder;
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constrained surfaces -- surfaces of type **reflect** or **intrcons**) [Click
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here for demos](../demos/pset/html/main_pset.html)
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