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define({"396":{y:0,u:"../Content/Modeling_Construction_Items/defining_and_modifying_grids.htm",l:-1,t:"Defining and Modifying Grids",i:0.000209918683985406,a:"Grids can be defined using the Grid Manager function in the System Management application. The same function is also present in the HiLTop application, where it can be used for defining grids in reference planes. See Defining grids in reference planes is a functionality of the arbitrary grid type ..."},"397":{y:0,u:"../Content/Modeling_Construction_Items/mci_adding_new_grid_definitions.htm",l:-1,t:"Adding New Grid Definitions",i:0.000160039218757884,a:"Grids can be defined in Projects \u003e Coordinate System \u003e Grid Manager . Grids for reference planes can be defined in Home \u003e General \u003e . To add a new grid, do the following: Select the desired grid type in the grid overview area, and click New. Specify the unique identification of the grid by entering ..."},"398":{y:0,u:"../Content/Modeling_Construction_Items/mci_modifying_and_removing_grids.htm",l:-1,t:"Modifying and Removing Grids",i:0.000160039218757884,a:"To modify or remove a grid, start by selecting the grid in the grid overview area, after which the grid\u0027s properties are displayed in the grid values list. A grid is removed when pressing the \u0027Delete\u0027 button. Modifying the grid identification When modifying the abbreviation and description ..."},"399":{y:0,u:"../Content/Modeling_Construction_Items/setting_the_default_grid.htm",l:-1,t:"Setting the Default Grid for a Block",i:0.000160039218757884,a:"Since there are four types of grids and for each an unlimited number can be defined, being able to omit the explicit definition of the grid during engineering makes engineering a much easier process. Therefore, per block a default grid can be assigned for each grid type. This is done in System ..."},"400":{y:0,u:"../Content/Modeling_Construction_Items/working_with_grids.htm",l:-1,t:"Working with Grids",i:0.000214453180824271,a:"Grid lines can be displayed in views and they can be placed in drawings. When creating drawings and construction items grids can be used by entering grid values into input fields in various dialogs. An overview of the available grids is available in the Grid Information function."},"401":{y:0,u:"../Content/Modeling_Construction_Items/working_with_grid_values.htm",l:-1,t:"Working with Grid Values in Input Fields",i:0.000160039218757884,a:"During engineering, the use of grid values in input fields is recognized by the system. Grid values serve as substitution for metric values. The abbreviation (prefix) used for the grid lines can be defined in the System Management application. The default values are as follows: FR - Frame ..."},"402":{y:0,u:"../Content/Modeling_Construction_Items/using_grids_in_views_and_drawings.htm",l:-1,t:"Using Grids in Views and Drawings",i:0.000160039218757884,a:"Using grids in views Grids can be made visible in the graphical window for easy reference during 3D engineering in 2D drawings. With a simple selection system, every available grid can be activated and deactivated, making it possible to view all grids at once, or just one or several at a time. Grids ..."},"403":{y:0,u:"../Content/Modeling_Construction_Items/reference_surfaces.htm",l:-1,t:"Reference Surfaces",i:0.000746171545414275,a:"A reference surface is a flat or curved surface used as a topological reference structure for defining construction items. Reference surfaces are useful when quickly defining the main construction of a ship. Reference surfaces make it possible to modify the constructional design in an easy and ..."},"404":{y:0,u:"../Content/Modeling_Construction_Items/creating_reference_planes.htm",l:-1,t:"Defining and Modifying Reference Planes",i:0.000283907656875595,a:"Reference planes are stored into the shape database, which makes it possible to see and use them from within every block in a ship. To create them, first so called \"virtual plates\" must be created. A virtual plate is construction that does not count towards the actual construction and production of ..."},"405":{y:0,u:"../Content/Modeling_Construction_Items/mci_creating_reference_planes.htm",l:-1,t:"Creating Reference Planes",i:0.000208501853718616,a:"A reference plane has the following properties: Name Contour Thickness Thickness direction Material The thickness, thickness direction and material of a reference plane will appear as default values for construction items to be created in the plane at a later stage. Currently, creating reference ..."},"406":{y:0,u:"../Content/Modeling_Construction_Items/mci_modifying_and_removing_referen.htm",l:-1,t:"Modifying and Removing Reference Planes",i:0.000160039218757884,a:" Modifying the virtual plate Modifying the contour, thickness and material of a reference plane is similar to modifying them for a regular plate. Modifying the name is similar to modifying the material; by using the function \"Modify Logistical Data\". The plate that represents the reference plane ..."},"407":{y:0,u:"../Content/Modeling_Construction_Items/copying_moving_removing_reference_planes.htm",l:-1,t:"Copying and Moving Reference Planes",i:0.000160039218757884,a:"Copying reference planes\n Copying a reference plane consists of copying the virtual plate and creating the reference plane. Copying a virtual plate in a reference surface block is similar to copying a regular plate; it is done with the Copy 3D-Items function. The new reference plane is saved ..."},"408":{y:0,u:"../Content/Modeling_Construction_Items/mci_working_with_reference_planes.htm",l:-1,t:"Working with Reference Planes",i:0.000338448132938886,a:"A reference plane can be used to serve as the base plane for drawings, grids and plates. Plates can be connected to reference planes in the following ways: Relating plate contour boundaries to reference planes Creating plates in reference planes"},"409":{y:0,u:"../Content/Modeling_Construction_Items/defining_grids_in_reference_planes.htm",l:-1,t:"Defining Grids in Reference Planes",i:0.000249255737389087,a:"Defining grids in reference planes is a functionality of the arbitrary grid type and can only be done in a block of a reference surface group. To define such grid, the drawing that features the virtual plate of the reference plane in plan view must be open in the graphical window. The process ..."},"410":{y:0,u:"../Content/Modeling_Construction_Items/parameters.htm",l:-1,t:"Parameters",i:0.000524541688641162,a:"A parameter is a special kind of variable which can be used when defining views and construction. When defining a parameter, an argument can be provided as input to which views and construction can be referred. An argument can be as easy as a single value, or as sophisticated as a complicated ..."},"411":{y:0,u:"../Content/Modeling_Construction_Items/defining_and_modifying_parameters.htm",l:-1,t:"Defining and Modifying Parameters",i:0.000257774259526946,a:"Parameters are defined in a block of a reference surface group, using the Defining Parameters function in the HiLTop application."},"412":{y:0,u:"../Content/Modeling_Construction_Items/mci_adding_parameters.htm",l:-1,t:"Adding Parameters",i:0.000160039218757884,a:"The system responds to the following types of parameters: Length Breadth Height Distance Angle Each one represents the type of relation/limitation that the parameters can be used for. For example, a parameter that states the position of a tween deck equals a third of the main deck\u0027s position, is of ..."},"413":{y:0,u:"../Content/Modeling_Construction_Items/mci_modifying_and_removing_paramet.htm",l:-1,t:"Modifying and Removing Parameters",i:0.000160039218757884,a:"The expression of a parameter can be modified. This is done by double-clicking a field in the Expression column. Confirming with Enter completes the modification. Clicking Recalculate All calculates the new value(s). When you modify a parameter that is used in one or more view(s) or construction, ..."},"414":{y:0,u:"../Content/Modeling_Construction_Items/using_parameters.htm",l:-1,t:"Working with Parameters",i:0.000160039218757884,a:"Parameters can be used as criteria when creating the following: Position and orientation of views Relations of plates and virtual plates Relations of arbitrary holes In order to make use of the different types of parameters in their respective input fields, the exclamation point is typed in to have ..."},"415":{y:0,u:"../Content/Modeling_Construction_Items/mci_recalculating_construction_parts.htm",l:-1,t:"Recalculating Construction Parts",i:0.000160039218757884,a:"After the hull shape and/or high level topology items have been changed, recalculating construction items is necessary to have them adapt to the new situation. Items can be recalculated individually, as well as for an entire block in one action. Recalculate specific construction parts\n In ..."},"416":{y:0,u:"../Content/Modeling_Construction_Items/mci_plates.htm",l:-1,t:"Plates",i:0.00105492609414843,a:"One of the most frequently used operations within the 3D-Contek and 3D-Show applications is creating plates. Because plates can have very different shapes, the plate creation function has a considerable number of options. The contour of a plate depends on the construction surrounding it, and on the ..."},"417":{y:0,u:"../Content/Modeling_Construction_Items/creatingplates.htm",l:-1,t:"Creating Plates",i:0.000835432439708094,a:"The procedure for creating plates has been designed in such a way that simple plates can be created quickly, but also allows the creation of complex plates. The procedure is explained in three subsections. The first subsection deals with the start of the procedure and describes various general ..."},"418":{y:0,u:"../Content/Modeling_Construction_Items/startingtocreateaplate.htm",l:-1,t:"Starting to Create a Plate",i:0.000160039218757884,a:"There are some differences in plate creation between 3D-Contek and 3D-Show. While working in 3D-Show, you should first select the plane in which you want the plate to be shown. When defining a slanted plate, three points of the plane need to be defined. You can be enter the positions manually, but ..."},"419":{y:0,u:"../Content/Modeling_Construction_Items/platerelations.htm",l:-1,t:"Plate Relations",i:0.000179472776638737,a:"When specifying the topology of a plate, you should always work counterclockwise and specify the relations for each part of the plate border. These may be other plates, the shell, minimum or maximum limitations, or lines you have drawn yourself. The plate to be created needs not abut exactly against ..."},"420":{y:0,u:"../Content/Modeling_Construction_Items/specifyingtheplateborder.htm",l:-1,t:"Specifying the Plate Border",i:0.00051632515649525,a:"The plate border is specified in the Define a plate contour dialog. It looks slightly different for slanted plates. In 3D-Show, this dialog has been simplified.\n A relation may be determined in various ways, such as by selecting a construction part, hull line, or a line or arc you have ..."},"421":{y:0,u:"../Content/Modeling_Construction_Items/min_max__relations.htm",l:-1,t:"Min./Max. Relations",i:0.000160039218757884,a:"Min. Breadth This button enables you to specify a local minimum breadth value, which means that the plate material will be situated to the right of this line. Instead of a fixed value in mm this can also be a grid value. You can also select a grid line from the graphics window. When the minimum ..."},"422":{y:0,u:"../Content/Modeling_Construction_Items/parallel_relations.htm",l:-1,t:"Parallel Relations",i:0.000160039218757884,a:"Parallel/Hor./Vert./Advanced There are two input fields for the parallel relations in the Define a plate contour dialog. In the left field, enter the parallel value itself, usually a positive number. The parallel direction is the side where you have selected an item. If you have selected a plate in ..."},"423":{y:0,u:"../Content/Modeling_Construction_Items/cutouts_radius_and_snipes.htm",l:-1,t:"Cutouts, Radius and Snipes",i:0.000160039218757884,a:"Cutout/Radius of curvature/Snipe Arcs between consecutive relations may be defined in various ways. If you select Cutout, you define a corner hole. This cutout is part of the topology of the plate. This means that the cutout always remains at the corner of the plate, even when one of its relations ..."},"424":{y:0,u:"../Content/Modeling_Construction_Items/crossovers_angles_and_exrensio.htm",l:-1,t:"Crossovers, Angles and Extensions",i:0.000160039218757884,a:"Crossover/No crossover/Angle from Angle to/Extension from Extension to In some cases it may not be possible to relate a line or arc of a plate border to another item, although the starting point and end point can be related. In that case, such a line need not be drawn. Instead, you can use a ..."},"425":{y:0,u:"../Content/Modeling_Construction_Items/relation_properties.htm",l:-1,t:"Relation Properties",i:0.00031139979820236,a:"There are a few options available for selection when creating or modifying relations depending on the current situation. The given options and the default values are given for different situations below: For a relation to a profile or shell frame in plan view or to a hull line: Complete relation - ..."},"426":{y:0,u:"../Content/Modeling_Construction_Items/relating_plates_to_reference_planes.htm",l:-1,t:"Relating Plates to Reference Planes",i:0.000207986656476872,a:"Plate contour boundaries can be related to reference planes in 3D-Contek. In order to do this, the reference planes must first be made visible. Viewing a reference plane in a drawing In 3D-Contek, reference planes can be seen in sectional view. They are represented by a cyan colored line to reveal ..."},"427":{y:0,u:"../Content/Modeling_Construction_Items/creatingplatestoshell.htm",l:-1,t:"Relating Plates to Shell Plates in Cross Section",i:0.000160039218757884,a:"A plate can be related to a shell plate in cross section which intersects the plane of the plate, also called the calculation plane. Shell plates in cross section have precedence over hull lines during relation selection in order to allow this action. A relation to a shell plate can have the same ..."},"428":{y:0,u:"../Content/Modeling_Construction_Items/creating_plates_in_reference_planes.htm",l:-1,t:"Creating Plates in Reference Planes",i:0.000207986656476872,a:"Plates in plan view can be created in reference planes in 3D-Contek. In order to do this, a view must first be created based on the reference plane. Creating a view in a reference plane Creating a view in a reference plane is similar to creating a regular view, with the exception that the view must ..."},"429":{y:0,u:"../Content/Modeling_Construction_Items/examples.htm",l:-1,t:"Examples",i:0.000160039218757884,a:"The examples below illustrate how the contour of plates can be specified in some specific situations. The first example shows a plate, which could have been a bracket. The combination of a circle on a cross-over is explained here. The plate in this example has a width of 400 mm, height of 500 mm ..."},"430":{y:0,u:"../Content/Modeling_Construction_Items/limitations.htm",l:-1,t:"Limitations",i:0.000160039218757884,a:"Creating plates has a number of limitations. The limitations explained here concern taking a circle on a hull line as part of the plate contour, situations in which the options angle from and angle to should be used at the same relation, and the combination of cutouts together with a negative extra ..."},"431":{y:0,u:"../Content/Modeling_Construction_Items/plates_corrugated_bulkheads.htm",l:-1,t:"Corrugated Bulkheads",i:0.000815697772886193,a:"A corrugated bulkhead initially exists as a set of corrugation profiles which are connected to each other. Eventually the corrugated bulkhead is converted to a set of plates connected by knuckles. The complete corrugated bulkhead can be changed in its entirety, or the individual elements can be ..."},"432":{y:0,u:"../Content/Modeling_Construction_Items/creating_sub_bulkheads.htm",l:-1,t:"Creating Perpendicular Plates Below a Plate",i:0.000190654120881911,a:"You can create perpendicular plates below a plate in view horizontally, vertically, and along drawing lines in the 3D-Contek application. This feature is useful for creating bulkheads under decks. The newly created plates\u0027 relations to other construction are detected automatically. If in any view, ..."},"433":{y:0,u:"../Content/Application_Menus/am_plates_insert_horizontal.htm",l:-1,t:"Horizontal",i:0.000180085520220847,a:"To create perpendicular plates below a plate in view horizontally, go to Construction \u003e Plates in the 3D-Contek application. You do not have to select the plate in view. The system automatically determines the main plate, and relates the perpendicular plate to all the plates in view that it crosses, ..."},"434":{y:0,u:"../Content/Application_Menus/am_plates_insert_vertical.htm",l:-1,t:"Vertical",i:0.000180085520220847,a:"To create perpendicular plates below a plate in view vertically, go to Construction \u003e Plates in the 3D-Contek application. You do not have to select the plate in view. The system automatically determines the main plate, and relates the perpendicular plate to all the plates in view that it crosses, ..."},"435":{y:0,u:"../Content/Application_Menus/am_plates_insert_byline.htm",l:-1,t:"By Line",i:0.000180085520220847,a:"To create plates below a plate in view perpendicular to the view direction along drawing lines, go to Construction \u003e Plates in the 3D-Contek application. First you must draw the lines. Then you convert the drawing lines into plates with the By Line function. Only straight lines can be converted to ..."},"436":{y:0,u:"../Content/Modeling_Construction_Items/modifyingplates.htm",l:-1,t:"Modifying Plates",i:0.000280595278531106,a:"There is a separate command for modifying the plate border, which can be started by clicking on the \"Modify plate\" button on the toolbar. You are then presented with a small panel (the \"Plate modification\" panel) in which you can enter new values for thickness, plate material and so on, and which ..."},"437":{y:0,u:"../Content/Modeling_Construction_Items/undoingthemodificationofa.htm",l:-1,t:"Undoing the Modification of a Plate",i:0.00020824066319296,a:"If the modification of a plate has led to undesirable results, it may be undone by clicking Reverse in the Plate modification dialog. If the plate is visible on screen, it will be highlighted and the program will ask you if you want to undo the modification. If you confirm this by clicking OK, the ..."},"438":{y:0,u:"../Content/Modeling_Construction_Items/shiftingthereferenceplane.htm",l:-1,t:"Shifting the Calculation Plane",i:0.000160039218757884,a:"The plane in which a plate is calculated can be shifted with a function of the \"Plate modification\" panel. When exactly one plate is selected, then the shift value for the plane can be set from \u00270\u0027 (measuring side) to the thickness value (thickness side). When multiple plates are selected, then the ..."},"439":{y:0,u:"../Content/Modeling_Construction_Items/modifingthereferenceplane.htm",l:-1,t:"Modifying the Plane",i:0.000226827537129741,a:"The plane in which a plate is positioned can be adjusted with the following functions: 2D-Contek \u0026 3D-Contek \u003e Construction \u003e Items \u003e Plates \u003e Modify \u003e Plane Shell \u003e Template \u003e Modify \u003e Plane Adjusting the plate plane is normally only done in situations where a small modification is needed. It is ..."},"440":{y:0,u:"../Content/Modeling_Construction_Items/mci_shell_plates.htm",l:-1,t:"Shell Plates",i:0.000160039218757884,a:"Shell plates form the hull plating of a ship. See the Shell Plates section of the CADMATIC Hull Help for detailed information."},"441":{y:0,u:"../Content/Modeling_Construction_Items/mci_faceplates.htm",l:-1,t:"Face Plates",i:0.000325294682835033,a:"Face plates can be created on plates and in holes. Face plates on plates can be attached to multiple plates, in which case one of the plates is the main plate that the face plate belongs to. Face plates in holes are created either in arbitrary or standard holes. Face plates in arbitrary holes can be ..."},"442":{y:0,u:"../Content/Modeling_Construction_Items/mci_faceplates_create.htm",l:-1,t:"Creating Face Plates",i:0.000413128917552984,a:"Face plates can be created in the 3D-Contek application of CADMATIC Hull. You can create face plates on plates and in holes. To create face plates, go to Construction \u003e Face Plates. Select the desired function from the Insert group. Creating Face Plates on Plates Creating Face Plates in Arbitrary ..."},"443":{y:0,u:"../Content/Modeling_Construction_Items/mci_faceplates_create_relations.htm",l:-1,t:"Indicating Face Plate Relations in Plan View",i:0.00184618217010713,a:"The contour of a face plate is defined by indicating the relations that set the starting and end points of the face plate. Instead of indicating the relations in the graphical window, you can enter fixed values or parallel distances in the Face Plate Relations dialog to define the face plate ..."},"444":{y:0,u:"../Content/Modeling_Construction_Items/mci_faceplates_specialcase.htm",l:-1,t:"Special Case: Multiple Intersections with Plate and Fixed Value Relations",i:0.000160039218757884,a:"There is a special situation of a face plate on plate where the order of defining the face plate relations is important: The first relation is a fixed value relation. The second relation is to a plate. The third relation is a fixed value relation. The second relation (the plate) has two or more ..."},"445":{y:0,u:"../Content/Modeling_Construction_Items/mci_faceplates_modify.htm",l:-1,t:"Modifying Face Plates",i:0.000160039218757884,a:"Face plates can be modified in the 3D-Contek application of CADMATIC Hull. To modify face plates, go to Construction \u003e Face Plates. Select the desired function from the Modify group. Direction With this function you can change the body direction and/or thickness direction of face plates. See ..."},"446":{y:0,u:"../Content/Modeling_Construction_Items/mci_faceplates_harmonize_endtypes.htm",l:-1,t:"Harmonizing the Face Plate End Types",i:0.000436543665381206,a:"Due to harmonization of end shapes for normal profiles and face plates, the base line position of the face plate end point has been changed from the moulded line to the base line of the profile in CADMATIC Hull 2019T2. Use End Type 3 Instead of End Type 33 for New Face Plates The face plate specific ..."},"447":{y:0,u:"../Content/Modeling_Construction_Items/mci_brackets.htm",l:-1,t:"Brackets",i:0.000518605062946084,a:""},"448":{y:0,u:"../Content/Modeling_Construction_Items/creating_brackets_in_plan_view.htm",l:-1,t:"Creating Brackets in Plan View",i:0.000255263652374061,a:"The process for creating brackets in plan view is started by clicking the \"Brackets in Plan View\" icon in the \"Insert\" toolbar which opens the following panel: or selecting one of the \"Insert\" \u003e \"Brackets\" -\u003e \"In Plan View\" menu options. Each icon represents a particular type (i.e. a particular ..."},"449":{y:0,u:"../Content/Modeling_Construction_Items/bracket_thickness_direction.htm",l:-1,t:"Bracket Thickness Direction",i:0.000194047945049376,a:"When creating brackets, the following points should be taken into consideration: If only one of the construction parts is a plate, profile, or shell frame in plan view, the thickness direction of the bracket will be the opposite of the thickness direction of the plate, profile, or shell frame in ..."},"450":{y:0,u:"../Content/Modeling_Construction_Items/modifying_brackets.htm",l:-1,t:"Modifying Brackets",i:0.000160039218757884,a:"To modify a bracket click the \"Brackets\" icon in the \"Modify 3D\" toolbar or select one of the \"Modify -\u003e \"Brackets\" menu options: Bracket in Plan View After clicking the icon the user can indicate a bracket that has already been created in the drawing. Then, the same main panel appears that was ..."},"451":{y:0,u:"../Content/Modeling_Construction_Items/recalculating_brackets.htm",l:-1,t:"Recalculating Brackets",i:0.000160039218757884,a:"With this option several brackets can be selected after which they are recalculated on the basis of their relations."},"452":{y:0,u:"../Content/Modeling_Construction_Items/map_modifying_brackets_in_section.htm",l:-1,t:"Modifying Brackets in Section",i:0.000160039218757884,a:"Select the bracket(s) in section to be modified with the normal selection method. This can be multiple brackets of one or more bracket type(s). If brackets are selected of multiple bracket types the modify panel containing the bracket dimensions appears once for each bracket type. So if for example ..."},"453":{y:0,u:"../Content/Modeling_Construction_Items/mci_creating_attributes_on_bracket.htm",l:-1,t:"Creating Attributes on Brackets",i:0.000160039218757884,a:"It is possible to have the following attributes on brackets: Flanges and face plates Profiles Bevels Adding flanges/face plates to brackets\n Flanges and face plates on brackets are defined in the bracket type file and the bracket type macro. This allows them to be added automatically upon ..."},"454":{y:0,u:"../Content/Modeling_Construction_Items/mci_modifying_attributes_on_bracke.htm",l:-1,t:"Modifying Attributes on Brackets",i:0.000160039218757884,a:"It is possible to modify the following attributes on brackets: Flanges and face plates Profiles Bevels Modifying flanges, face plates and profiles on brackets Flanges, face plates and profiles on brackets defined in the bracket type files can be modified individually or collectively. When modifying ..."},"455":{y:0,u:"../Content/Modeling_Construction_Items/mci_removing_attributes_from_brack.htm",l:-1,t:"Removing Attributes from Brackets",i:0.000160039218757884,a:"It is possible to remove the following attributes from brackets: Flanges and face plates Profiles Bevels Removing flanges, face plates and profiles from brackets Flanges, face plates and profiles can be removed from brackets by modifying the bracket or by removing them from the bracket physically. ..."},"456":{y:0,u:"../Content/Modeling_Construction_Items/profiles_shframes_pillars_introduction.htm",l:-1,t:"Profiles, Shell Frames and Pillars",i:0.000638648628088358,a:"Profiles, shell frames and pillars are serving as stiffeners that prevent the planes of the ship from distorting. Stiffeners contribute to the reinforcement of the plane by reducing it\u0027s tension and by preventing local bulking. The CADMATIC Hull system makes the following distinction between ..."},"457":{y:0,u:"../Content/Modeling_Construction_Items/creatingandmodifyingprofile.htm",l:-1,t:"Profiles",i:0.000506215759392727,a:"Profiles"},"458":{y:0,u:"../Content/Modeling_Construction_Items/standard_and_user_defined_profiles.htm",l:-1,t:"Standard and User Defined Profile Types",i:0.000160039218757884,a:"Standard Profile Types The following standard profile types are by default available in the CADMATIC Hull system: User Defined Profile Types Next to the default available standard profile types, the user can define their own profile types. Within each set of norms, a maximum of 4 extra profile ..."},"459":{y:0,u:"../Content/Modeling_Construction_Items/creating_and_modifying_profiles.htm",l:-1,t:"Creating Profiles",i:0.000350236685209198,a:"Do the following to create profiles in the 3D-Contek application. Select Construction \u003e Profiles. The Profiles tab opens. In the Insert group of the Profiles tab, you can choose from the following orientations when creating a new profile: in View – Create profiles in view (at plates in section of ..."},"460":{y:0,u:"../Content/Modeling_Construction_Items/profilesinview.htm",l:-1,t:"Profiles in View",i:0.000189809739894264,a:"To create a profile in View, select in View in the Profiles tab of the 3D-Contek application. The system will ask you to indicate a hull line or a plate in the graphical window. The profile will placed on this hull line/ plate. Next, the Create Profile dialog opens. Profile types – Select the type ..."},"461":{y:0,u:"../Content/Modeling_Construction_Items/horizontalverticalprofiles.htm",l:-1,t:"Horizontal / Vertical Profiles",i:0.0002658985245214,a:"To create a horizontal or a vertical profile, select Insert Horizontal Profiles or Insert Vertical Profiles in the Profiles tab in the 3D-Contek application. The Create Horizontal Profile or Create Vertical Profile dialog box opens. The terms \"horizontal\" and \"vertical\" do not refer to the actual ..."},"462":{y:0,u:"../Content/Modeling_Construction_Items/arbitraryprofiles.htm",l:-1,t:"Arbitrary Profiles",i:0.000517564699041292,a:"To create a horizontal or a vertical profile, select Arbitrary in the Profiles tab of the 3D-Contek application. The Create Profile dialog opens. This dialog is for defining the type of profile, the body and thickness direction. Because it is not known whether the profile will be horizontal or ..."},"463":{y:0,u:"../Content/Modeling_Construction_Items/profilesinsection.htm",l:-1,t:"Profiles in Section",i:0.00039477270671535,a:"The Profiles in Section functions are typically used for adding stiffeners to plates that act as bulkheads between decks. A series of evenly distributed profiles can be added in one go to one or more plates. You can add profiles to plates in cross section in two ways: In the normal way as actual ..."},"464":{y:0,u:"../Content/Modeling_Construction_Items/related_profile_angle.htm",l:-1,t:"Related Profile Angle",i:0.000208921022351826,a:"You can use the Use for rotation option when creating arbitrary profiles to define the rotation of the profile based on one of its relations. In certain situations this angle is not known like in the example shown below:\n The shell frame does not intersect the plate perpendicularly, but ..."},});
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