DORIS MCLEOD AIR QUALITY PLANNER VIRGINIA DEQ 804/698-4197 ERTAC Tool Logic and Flowcharts.

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Presentation transcript:

DORIS MCLEOD AIR QUALITY PLANNER VIRGINIA DEQ 804/ ERTAC Tool Logic and Flowcharts

PRESENTATION OVERVIEW Preprocessor Functions  Data QA  Data manipulations  Calculations Projection Processor Functions  Generation calculations  Generation deficit units defined, if needed  Excess power redistribution-Two step process  Outputs Post Processors Questions? 2

Preprocessor Functions Need for preprocessing Preprocessing allows improved projection outputs Basic functions:  Hourly CAMD data update to remove non-EGUs  Examine data outliers  Sets up base year (BY) structure  Examines input files 3

Preprocessor Creates a preprocessor log file  Important for QA  Improves input files Files from the preprocessor are fed to the processor 4

Projection Processor, Part 1 Calculates future generation  By region and fuel/unit type  Outputs are modular Capacity deficit check  May generate generation deficit units  Treated as new units, with profiles Grows all existing units based on hourly growth rates Determines if there is excess generation in any hour 5

Capacity check  GDUs  May require recalculation Grow existing units for each hour of the year Creation of Excess Generation Pool (ExGen) Projection Processor, Part 1 6

Distributes ExGen Two step distribution  Optimal threshold  Maximum threshold Activity for a unit depends on  Growth rates,  New units,  Retired units,  Capacity constraints on other existing units Projection Processor, Part 2 7

Spinning reserve check Additional capacity available up to 100% of largest unit on line Sends up a red flag if reserve requirements are not met Projection Processor, Part 4 8

Calculates emissions Compares state and regional emissions against supplied caps Sends up a red flag caps are not met Does not currently assign tool- generated controls to ensure caps are met Projection Processor, Part 5 9

Projection Processor Notes Future year (FY) activity is firmly grounded in BY meteorology Many FY estimates may be adjusted by region and fuel unit type bin in the input_variables NonCAMD units may be included IF:  Hourly BY activity data in a CAMD-like format exists  AEO/NERC growth rates are applicable to the unit Creates a processor log file Output files are quite large (hourly data):  3,000-4,000 units, most with 8,760 hours of data;  Input and output files each several gigabytes 10

Post Processors Several have been developed Aids in data review and trouble shooting Output files are large, but can be manipulated in very interesting ways 11

Graphical Post Processor 12

Graphical Post Processor 13

ORIS/Unit ID Facility Name, State, Region Fuel/Unit Type Activity Data  Annually and OS Emissions Data  NOx, SO2  Annually and OS Other data  Lat/longs  Retirement dates May be used for QA Can be manipulated into charts and spreadsheets Compared with inventory estimates Enhanced Unit Activity File 14

Pivot Table Options 15 BY vs FY Generation

Pivot Table Options, Facility Level 16 BY vs FY Annual NOx Emissions

Pivot Table Options, Unit Level 17 BY vs FY Annual NOx Emissions

DORIS MCLEOD AIR QUALITY PLANNER VIRGINIA DEQ 804/ Questions? Comments? Thoughts? 18