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This 'Return to Player percentage' is a theoretical long-term payout made by the game to its players. There are several types of time series slots with various column configurations.
Since all of these slot types contain rows that correspond to the series of data, they will be referred to collectively as series slots.
Most series slots open automatically in a Slot Viewer. Any slot shown in the viewer can be detached from the viewer and shown in its own Slot dialog by dragging the column off the viewer.
There is one Slot Viewer for each timestep 1 Day, 1 Month, and so on per model. There can be many Slot dialogs.
There is a Slot dialog for each type of slot. The Slot Viewers show series slots. The Slot Viewer only shows series slots; Series slots, Text Series slots, Series Slots with Periodic Input, and Multi slots with a single subslot open automatically in the Slot Viewer.
Multi slots with two or more subslots and Expression slots open in their own Slot dialog but can be docked in the Slot Viewer. Agg Series slots with two or more columns, series slots with a timestep different from the Run Control and all other types of slots Periodic, Table, Scalar can only be shown in their own Slot dialog.
How do I get back to the slot viewer if it gets minimized or hidden? The workspace has a Slot Viewers button in the lower right. This shows the selected Slot Viewer when it has been minimized or hidden behind other dialogs.
Remember if the Slot Viewers have been closed or all slots are removed from it, the Slot Viewers are longer exists and the button is disabled.
From the Slot Viewer, you can drag a slot off of the viewer to become a single Slot dialog. You can then drag the slot icon on the series slot and drop it on the Slot Viewer to redock it.
The Slot Viewer must have the same timestep size as the slot. See Slot Viewer Functionality for details. See Slot Dialog Functionality and Slot Viewer Functionality.
The Slot Viewer is an ad hoc tool to view multiple series slots in a single dialog. There is one Slot Viewer per timestep size in a RiverWare session.
The slots shown and order is not persistent in any way on the viewer. Each time a Series Slot is opened from anywhere in RiverWare, it is added as a column to the Slot Viewer.
From the Slot Viewer, any slot can be shown also in the slot's conventional Slot dialog. The annotations correspond to the following numbers:.
Selected Slot. Slot Viewer Timestep Size. Close Slot. List of Slots in the Viewer. The Slot Viewer shows different menu options based on the selected slot.
Highlight cells in a single column or the entire column to select a slot. If you highlight cells in multiple columns, the Selected Slot is blank and many of the menu options are disabled.
For certain types of slots, like expression slots and Series Slots with Periodic Input, not all of the menu options are shown on the slot viewer.
Undock the slot and use the Slot Dialog to access all of the configuration and menu options. Drag a column header to rearrange columns. Use the File , then Undock All Slots to show all of the slots in their own dialog.
Select the desired slot to select and scroll to that slot. Then use the File , then Remove Selected Slot s menu. Alternatively, use the File , then Dock in Slot Viewer menu.
Click this icon to open the slot in its own dialog and edit the periodic values. See Series Slots With Expression for more information.
See Series Slots With Periodic Input for more information. There is a DateTime selector and scroll button used to scroll to the given date.
Icons and buttons are used to show display compression, show notes, and to Plot the slot. Bold, green separators are automatically created based on the timestep of the slot.
For example, in a slot with a 1 Day timestep, separators are placed between months. In 6 Hour slot, days are separated.
Also, there is a blue divider between the initial and start timestep. There is a red divider after the finish timestep.
Time series data are displayed with one value per row where each row represents a timestep. A scroll bar along the right side of the field is used to view the entire set of data.
Each row contains the full date and time, a status flag, and the slot value at that time. A slot value which shows NaN Not a Number represents an unsolved variable.
The values that appear in the Open Slot dialog use the Units for that slot. See Standard Units for details on Units.
See Configure Slot Dialog for details on configuring slot units. Timesteps are reported chronologically. If the series is an Integer Indexed series, the rows are indexed by an integer number instead of a timestep.
Conventional editing commands are available for all slots. They allow cutting, pasting, filling and clearing of data.
A Delete or Cut of any timestep except the first shifts data up to replace the lost cell, reassigning values to new timesteps. A Delete or Cut of the first timestep removes it completely from the series, essentially shifting the start date of the series.
Similarly, Insert New Cell or Insert Copied Cells when the first timestep is selected adds a new timestep to the beginning of the series.
When any other timestep is selected, Insert New Cell or Insert Copied Cells shifts data down from the added cell, reassigning values to new timesteps.
In a Rulebased Simulation run, the dialog shows the priority of the slot at the given timestep. On series slots, an Alt Units toggle button is shown in the tool bar when the slot displays any of the following:.
Notice the asterisk by the unit. The units for both the default and alternative units are defined by the unit scheme.
The unit type will apply unless an exception has been created for the slot. Exceptions can be created for both flows and volume unit types for a particular slot.
Tooltips provide additional information about individual values. In particular, when you hover over a value for which the relevant information is available, one of the following tooltips is displayed:.
Displayed when the value was set by an input DMI that was configured to record invocations. See DMI Invocation Manager Dialog in Data Management Interface DMI for details on Invocation Records.
Displayed when the value was set by an Initialization Rule. Displayed when the value was set by a rule. Displayed when the value was solved for as a result of a rule setting a value elsewhere in the system.
That is, the value was set during dispatching because a rule set a value somewhere. In this situation, the value has the output flag and the controller's priority which is also the priority of the rule whose execution triggered dispatching.
For the last three items you can quickly open the rule associated with the value. Right-click and choose to Open Rule N from the menu. Additional information may be shown in the tooltips when an optimization run has been made.
See Tooltips on Variables in Optimization for details. Optionally, the Selection Info Area also called the Summary Area or Selection Statistics can be shown using the View , then Show Selection Statistics.
This displays information on the selected cells in the Slot including the name or number of slots and then statistics on the selection.
Statistics include Sum, Average, Median, Min, Max, Range, and Difference. All, some or none of these may be shown depending on the number of cells selected and the units of those cells.
If a single value is selected and that value was solved for or set as a result of a rule in rulebased simulation, the Priority is also shown.
Finally, if the values have units of flow, power, or velocity, the selection area also shows the integrated values over time, thus showing the total volume, energy, or length, respectively.
The unit scheme units for that unit type are used. Use the global time scroll button or the right-click context menu to change all date-based dialogs to the selected date.
This date is then used for any currently opened dialogs and any that are opened from this point forward. Following are configuration options specific to Series Slots.
See Configure Slot Dialog for details on general configuration. As described in Alt Units button , flows slots can always be shown as the volume over the timestep.
But only certain simulation slots, with the volume unit, can be shown as flows, like evaporation volume. For custom slots that you create, you can choose for each volume slot whether the Alt Units will apply.
Check the box indicating this volume can be shown as a flow, using the Alt Units button. Leave it unchecked if the volume is not displayable as a flow.
In general, these values are not used by the simulation but are used in optimization. For example, the lower bound on Outflow on a Reach object is used to calculate the maximum allowable diversion.
If no value is specified, the total Inflow may be diverted. Optionally, you can show warning messages if values set during Simulation are out of bounds.
When warning messages are configured, if the controller sets a value that violates the specified bounds, a warning is issued in the diagnostics window, but the simulation continues.
See Warn when Values are out of Bounds. A slot can be reset if the new value is not within convergence of the old value and it has not been set more than the maximum number of times.
See Set Value in Solution Approaches for details. Any new value is considered different than the old value.
Convergence is never reached. Absolute difference in internal units. The user enters the convergence value in internal units; for example, m, cms, m3.
Percent difference. The user enters the convergence value as a percentage. When old and new are non-zero, convergence is reached as follows:. Absolute difference, in user-specified units.
The user enters the convergence value as a percentage, without regard to scale. The default start times and timestep are inherited from the Run Control settings when the object is instantiated.
All series slots are initialized with one timestep to minimize model file size. You may change the time series range directly through the Time Series Range Dialog.
On Integer Indexed Series, the user is able to change the number of Values but the start, end, and timestep size configuration areas are disabled.
The time series range and timesteps can also be changed by selecting Sync With Run Control in the Time Series Range Dialog.
This will update the time series range in the slot to match the time series range set in the Run Control dialog. In the View menu, there is a menu to show Linked Slots.
When selected, this shows all of the slots to which the given slot is linked. The Show Notes Column and the Notes Group menu are used to display Notes that are associated with a timestep on a series slot.
See Notes on Series Slots for details. The Series Display Compression utility allows the user to compress or hide a particular value, NaNs, both, or any repeated values.
This utility is useful for slots that hold data that is often the same value and the user only wishes to see any changes to this standard value. The functionality is available on Series Slots, Agg Series Slots, Multi Slots, and Table Series Slots.
When either of these options are chosen, the Open Slot dialog adds the display compression area between the scroll area and above the column heading.
Each control is described in detail. When Series Display Compression is first activated, there is a check mark in the toggle indicating that it is active.
This toggle is used to toggle the compression on and off. Thus, the user can configure compression, then toggle it off to view or edit all the values, and then toggle it back on to reenable compression.
When first activated, the Compress Repeated Values option is selected by default in the Compression Mode menu.
The following modes are available for display compression:. Any values that are repeated will be compressed into one row.
When this option is selected, the repeated values are all compressed into one cell and a count Cnt column is added. A small triangle is added to the lower corner of the cell to indicate that the cell represents repeated values.
All NaN values will be hidden and a dotted line is shown. All values matching the reference value will be hidden and a dotted line is shown.
The user can change the value by selecting the Reference Value icon and entering a new value. All NaN values or values matching the reference value will be hidden and a dotted line will be shown.
The user can change the reference value by selecting the Reference Value icon and entering a new value. All values that match the reference value are shown.
NaNs are hidden. All NaNs and values that match the reference value are shown. All values less than or equal to the reference value are shown.
Monthly lines on a slot with a 1 Day timestep those green lines will still be shown. In the example to the right, two green lines are shown representing the delineation before Feb.
When this button is selected, additional configuration options are presented, and the arrow points down. When any of the Hide Value or Show Value compression modes are selected, the Set Reference Value icon become active.
Selecting this icon opens a dialog to allow the user to enter a value. Once a new number is entered, the Compression Mode menu options will display that number in the menu.
The value does not have a unit associated with it. For more flexibility, value comparison can be based on either:. The display precision will be used; this is the default.
If two numbers appear the same on the screen, they are considered the same. A number must be within convergence of the other number to be considered the same.
The internally stored numbers will be compared. The Status information will show the number of rows that are hidden or compressed.
On the Open Slot dialogs, the user can highlight a number of cells and type a new value that will be entered, as Input, into each selected cells.
When Series Display Compression is enabled, the editing of values is treated a differently as follows:. If the Compress Repeated Values is selected, editing of selected cells will edit any compressed cells.
For example, if repeated 33 values are repeated and the user selects the repeated value, types in a new number, all 33 values will be set to that new number.
If any of the Hide options are selected, editing of selected cells will not affect hidden cells. Hidden values and NaNs will not be overwritten.
But, any cells displayed and selected will be affected by the new value. Also, if the entire column is selected, edits will then apply to all values, whether hidden or not.
Similarly, on multi-column slots, if the user selects the Hide NaNs and Value option, it will only hide a row if all three columns have the reference value OR NaN.
Possible flags vary by slot, but may include the following:. User-input data are automatically flagged as INPUT, and may not be overwritten by simulation results.
Certain values imported by an input DMI are flagged Z for DMI INPUT and are treated identically to INPUT I flags.
Initialization Rules can also set values with the Z flag. OUTPUT O timesteps may contain values calculated during a previous run or toggled from INPUT status.
These values are automatically cleared to NaN at the beginning of a simulation run. This guarantees that no previous solutions remain from one run to the next.
Flags other than OUTPUT and INPUT are only available for certain series slots. This section describes the use of special flags which may be set on Series Slot timesteps.
The flags are typically set by the same mechanisms as INPUT and OUTPUT flags. But, unlike INPUT and OUTPUT flags, each type of special flag is only applicable to one or two slots.
All SeriesSlots must have one of the following flags set for every timestep; each flag is indicated by its abbreviation:. This flag indicates that the value was set by an input DMI or Initialization Rule.
See DMI Invocation Manager Dialog in Data Management Interface DMI for details on DMI Invocations. See Initialization Rules Set in RiverWare Policy Language RPL for details on Initialization Rules.
In simulation, the Z flag behaves identically to the INPUT I flag. This flag indicates that the value was set directly by a rule.
This flag indicates that the value was set during iterative MRM by an MRM rule. They are considered input during an iterative MRM run.
Flags are set from the Open Slot dialog or from the SCT. Flags which are unavailable for that slot will appear dimmed in the menu.
Set selected cells to Input. Set all cells to Input. Set selected cells to Output. Set all cells to Output. Reverse the input and output flags on selected cells.
Reverse the input and output flags on all the cells. The following sections describe many of the special flags. These flags are used by the Plant Power Coefficient Release User Method to calculate the most efficient or maximum Energy generation possible for the flagged timestep.
The Plant Power Coefficient Release method uses tables to relate the current Operating Head to the most efficient Turbine Release or maximum allowable Turbine Release.
The MAX CAPACITY flag is available for all power method except LCR Power Calc. The calculation of the best efficiency Energy generation or max possible Energy generation is an iterative solution.
The Outflow required to produce the desired type of Energy affects Tailwater Elevation, which affects Operating Head, which affects the Outflow required to produce the desired Energy.
See Power Release in Objects and Methods for details on this methods. When two reservoirs are modeled in series, the Tailwater Elevation of the lower reservoir affects the Operating Head of the upper reservoir.
The Outflow of the upper reservoir, in turn, affects the Tailwater Elevation of the lower reservoir. This creates an iterative loop between the Outflow from the upper reservoir, the Tailwater Elevation of the lower reservoir, and the Operating Head of the upper reservoir.
If the Energy value is now set as an input and the model is run again, the Input Energy may not be possible given the Operating Head on the first iteration.
If this happens a RiverWare warning is posted but the run does not abort, since the energy value MAY match the Operating Head at a later iteration.
The Energy also MAY NOT match the Operating Head at a later iteration. If this occurs, the model will continue running even though the object did not solve.
The run will NOT be aborted, but objects may not dispatch because required information was not propagated to them. The user must check the dispatch dialog if they receive the RiverWare warning message given above to make sure the model ran correctly.
As demonstrated in the simulation exercise, this flag computes the maximum possible Outflow from a Reservoir on a given timestep.
Setting the MAX CAPACITY flag on a Reservoir Outflow slot forces the Outflow to equal the sum of the maximum Turbine Release and the maximum Spill.
The use of this flag also depends on having reliable and accurate input tables relating elevation to maximum release and spill.
RiverWare places an M at the selected timestep to indicate that the flag is active. This flag is treated as an INPUT, but does not require a value.
If a valid Outflow value is present at the flagged timestep, it is ignored in the simulation; a new Outflow value is calculated and displayed at that timestep.
This behavior is similar to the Max Capacity and Best Efficiency flags of the Energy slot and the Drift flags of the Regulated Spill and Bypass slots.
The Outflow Max Capacity flag may NOT be used on reservoirs when solving for Hydrologic Inflow, or when solving a Target Operation.
The Max Capacity solution is iterative. The exact sequence of calculations in each iterative loop is dependent on the type of Reservoir and the selected Spill Calculation Method.
In all cases, the maximum Spill and maximum controlled Release are calculated individually, then summed. If the selected Spill Method includes Regulated Spill, the current or previous Pool Elevation is used to look up the maximum Regulated Spill from the Regulated Spill Table.
This value is set in the Regulated Spill slot, and the selected Spill Calculation Method is called. Next, the maximum release is calculated.
If the Reservoir is a Power Reservoir, the selected Tailwater method is executed to determine the Operating Head. This Operating Head or the Pool Elevation in the case of Storage Reservoirs is used to look up the maximum release from the Max Turbine Q table, Max Release table, Max Flow Through Turbines table, or Best Generator Flow table.
Finally, the maximum release and the calculated Spill are added to determine the total maximum Outflow. This Outflow is used to mass balance the Reservoir.
The iteration is repeated until Convergence is met or Max Iterations is exceeded. Target Operations are used to calculate a lumped mass balance across several timesteps, in order to exactly meet a user-input TARGET Pool Elevation or Storage value.
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