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The connections form allows all of the available connections in the phase to be viewed as a table.The spreadsheet then allows the Connection Type and other Physical dimensions to be adjusted as required. 

The Columns columns displayed are effected by the Connection Types shown and can also be filtered using the spreadsheet preferences .

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Change Template - Provides users the option to change the currently assigned templates for Connections.

 Add To Templates - Provides users with the option to add the currently selected Connection to the Object Templates library.

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Allows the user to specify the network design criteria to be used to size the pipe/channels along the the Flow Path and its network.

Network Design Wizard 

When a Flow Path has been selected on the Filter it is then possible to perform an Auto Sizing of the pipe/channels that form the the network along the flow path. The calculations are completed based on the specified Network Design Criteria when the 'Auto Size' option is clicked. Full details can be found in the Network Design topic.

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A table displaying the results of an auto sizing calculation for a given flow path can be displayed, see see Network Design Report for more information.

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    • No Delay - Imposes no effect of the movement of water.
    • Lagged Flow - Introduces a time delay on the movement of water based on the Time of Travel value entered. Velocity and Time of Travel columns are shown by default.
    • Pipe Connection - Allows a pipe, or series of parallel pipes, to be modelled with a Diameter, Longitudinal Slope and levels. The dimensions can be entered as required or calculated using the Network Design calculation. Slope, Manning's n, Diameter/Base Width, Upstream Cover Level, Upstream Invert Level, Downstream Cover Level and Downstream Invert Level columns are shown by default.
    • Box Culvert – Allows a Box Culvert, or a series of parallel culverts, to be modelled with a Base Width, Height, Corner Splay, Longitudinal Slope and levels. The dimensions can be entered as required or calculated using the Network Design calculation. Slope, Manning’s N, Diameter/Base Width, Height, Upstream Cover Level, Upstream Invert Level, Downstream Cover Level, and Downstream Invert Level are shown by default.
    • Rectangular Channel - Allows a Rectangular channel, or series of parallel channels, to be modelled with a Base Width, Height, Longitudinal Slope and levels. The dimensions can be entered as required or calculated using the Network Design calculation. Slope, Manning's n, Diameter/Base Width, Height, Upstream Cover Level, Upstream Invert Level, Downstream Cover Level and Downstream Invert Level columns are shown by default.
    • Trapezoidal Channel - Allows a Trapezoidal channel, or series of parallel channels, to be modelled with a Base Width, Side Slope, Height, Longitudinal Slope and levels. The dimensions can be entered as required or calculated using the Network Design calculation. Slope, Manning's n,  DiameterDiameter/Base Width, Height, Side Slope, Upstream Cover Level, Upstream Invert Level, Downstream Cover Level and Downstream Invert Level columns are shown by default.
    • Triangular Channel - Allows a non-symmetrical Triangular channel, or series of parallel channels, to be modelled with a Side Slope, Height, Longitudinal Slope and levels. The dimensions can be entered as required or calculated using the Network Design calculation. Slope, Manning's n, Height, Side Slope, Upstream Cover Level, Upstream Invert Level, Downstream Cover Level and Downstream Invert Level columns are shown by default.
    • Custom Connection Allows a custom connection, or series of parallel connections, to be modelled with a Custom Cross Section, Longitudinal Slope and levels. The dimensions can be entered as required or calculated using the Network Design calculation. Slope, Manning's n, Upstream Cover Level, Upstream Invert Level, Downstream Cover Level, Downstream Invert Level and the Cross Section columns are shown by default.

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Auto Size

Lock the padlock to exclude the given connection from Network Design calculations.

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