Bryan Boilers & 300 DROP-STAGE Error Threshold Degrees, DROP-STAGE Rate Offset -100% to +100%

Page 78

that:

Drop-Stage detection time is used with DropStageDetectTimer

In the descriptions below, the relevant parameter is referred to as LL – Drop Stage detection timeN}.

Drop-Stage method: Disable,

Error threshold, Rate threshold, dError/dt and threshold, dRate/dt and threshold

DROP-STAGE ERROR THRESHOLD: DEGREES

This provides the error threshold as defined by the methods below.

DROP-STAGE RATE OFFSET: -100% TO +100%

This provides the rate offset threshold as defined by the methods below.

LLboiler off options: Options disabled, Enable all boilers off (ABO)

Enable lead drop-stage on error (LDSE) Enable both ABO and LDSE

This provides options for customizing the way stages are dropped, as described below.

LLALL BOILERS OFF THRESHOLD: TEMPERATURE OR NONE

When the LL boiler off options specifies "Enable all boilers off (ABO)" or "Enable both ABO and LDSE" then this parameter provides the boiler off threshold temperature that is used. In this case, if the temperature is the None value then a parameter error lockout occurs.

Drop-stage methods Error threshold

For error threshold staging, a stage is dropped when the error becomes excessive based on degrees away from setpoint and time.

DROP-STAGE CONDITION:

-The modulating burner(s) is at its (their) minimum position per the rate allocation rules,

-The operating point is above the setpoint by an amount greater than or equal to Drop-stage error threshold

When the Drop-stage condition is false then

72

Date: 8-4-2010

Revision: 0

Form: 2396

DropStageDetectTimerN is set to zero. (If the condition is true then DropStageDetectTimerN is not zeroed and thus allowed to run.) If this timer reaches or exceeds Dropstage detection timeN then DropStageRequestN is true.

RATE THRESHOLD

For rate based staging, a stage is dropped based on the rate of the last stage.

DROP-STAGE CONDITION:

-The modulating burner(s) is at a rate that is at or below the minimum modulation rate plus a rate offset.

Examples:

rate offset = 20% The Drop-stage condition will occur when the last stage is less than a threshold that is the minimum modulation rate plus another 20%.

rate offset = 0% The Drop-stage condition will occur when the last stage is at the minimum modulation rate.

rate offset = -20% The Drop-stage condition will occur if the last stage is at minimum modulation and there is 20% less rate to distribute than can be absorbed; that is, the rate allocator would like the minimum modulation rate to be lower than it is.

To support this, the current Rate Alloction method asks for the current "Underflow rate" - see the Rate Allocator section.

Boiler off options

The LL boiler off option controls two optional behaviors. One option is to enable the use of the

LLall boilers off threshold and is abbreviated "ABO", and the other controls whether a lead boiler is affected by a drop-stage method based upon error, and is abbreviated as "LDSE".

ALL BOILERS OFF - ABO:

The ABO temperature provides a Burner Off threshold that essentially replaces the normal Burner Off threshold as given by the LL off hysteresis parameter; it is processed by the same logic block using some additional rules.

If ABO is enabled then:

When the LL master operating point reaches or exceeds the ABO threshold this turns off LL master burner demand.

The Burner Off threshold provided by LL off

Image 78
Contents Triple-Flex High Efficiency Boilers Triple-Flex 150, 200, 250 High Efficiency Boilers Table of Contents Lead Drop-Stage On Error Ldse Figures Date Date Revision Form Minimum Clearances to Combustible Surfaces Boiler FoundationClearances DIMFlow Connection Safety Relief ValvesBoiler Connections Expansion Tank ConnectionsKW HP Venting of GAS Train ComponentsElectrical Requirements Combustion AIR SupplyCombustion AIR Openings LOUVERS, GRILLES, and ScreensDesign & Installation Flue GAS Venting SystemCombustion AIR and Venting Requirements for Canada ScfmMarking of GAS Vents Before Placing Boiler in OperationHydrostatic Test of Boilers and System Test of GAS PipingStart-Up and Operation Triple-Flex High Efficiency Boilers Boiler Assembly TRIPLE-FLEX Front ViewTRIPLE-FLEX Rear View Triple-Flex Rear ViewTRIPLE-FLEX Left Side View TRIPLE-FLEX Right Side ViewTRIPLE-FLEX Behind the Cabinet Door Air Flow Switch Pilot Spark Igniter Assembly TRIPLE-FLEX Left Flue Collector ViewHome POWER-UP ValidationTRIPLE-FLEX Right Flue Collector View Sola Hydronic Control SystemNavigation KeyboardConfiguration Configure StatusConfiguration Password Sample ConfigurationChange Parameter Settings Safety Verification Configure VerifyFAULT/ALARM Handling Safety Parameter User ConfirmationInfo BAR Lockouts Clear Lockout Operation Home Page LockoutModulation Configuration Configure Modulation Annunciation OperationFiring Rate Control Operation Firing Rate Field Advanced Setup Setup Advanced Setup System Time Setup Advanced Setup Date & TimeCalibrate Touch Screen Setup Advanced Setup Diagnostics Reset / Reboot Display Advanced Setup Display ResetOutdoor Reset Configure Configure Sensor Configuration Configure CH Central Heat ConfigurationSafety Verification Configure CH Central Heat Configuration Sound Pressure Levels PIDSound Pressure Readings Modbus Communication Alert CodesRPM DHWODR ILK HFS SLOA2D PIIRevision Boiler Commissioning Test SetupPRE Checks and Setup ModulationPilot Adjustment DRY RUNInitial Light OFF Adjusting Boiler Maximum InputAdjusting Boiler Minimum Input IWCCFH = 3600Vc gc CFH = ft 3 hr −1 of gas Vc = ft clocked GAS Meter ReadingsTroubleshooting PII Or LDate LCI OFF PII OFFILK OFF ILK on Vsnsr WeakOFF Fault CodesAre OEM Specific Fault Codes ThroughOFF Blower LCI High Limit setpoint setting 228 Invalid Reserved Care and Maintenance Boil OUT Procedure Draining the System Do not Flush the System Through the BoilerBoiler Water Treatment External FIRE-SIDE Cleaning Suggested Maintenance ScheduleDate Revision Form Lead Lag General Description of the Lead LAG Application Lead LAG LL Master General OperationDrop-stage method Drop-stage detection timing System Wiring Hookup LL / Multi-Boiler Field WiringLEAD-LAG Operation Slave Operation and Setup Slave Mode USE FIRST, Equalize RUNTIME, USE LastSlave Parameters LL Master Operation and Setup Overall ControlPeriodic Data Polling Messages Slave Status ManagerAbnormalFaultCounter Used to tolerate momentary abnormality Invalid Response or no ResponseLL CH Demand Switch DISABLE, STAT, Environcom Remote Stat Master Heat DemandModulation Sensor Master Active ServiceMaster Service Status LL Modulation Sensor S5Demand and Rate Rate Adjustment Integrator CompensationImplementation Rate Allocation Base Load Common 0-100%Rate Allocation Method Parallel Commonbase Limited Modulating Stage Overflow and UnderflowBurner Demand Stagerstate = IdleStagerstate = Active ADD-STAGE Rate Offset -100% to +100% ADD-STAGE Error Threshold DegreesError Threshold ADD-STAGE ConditionDROP-STAGE Rate Offset -100% to +100% DROP-STAGE Error Threshold DegreesLL ALL Boilers OFF Threshold Temperature or None DROP-STAGE ConditionLead DROP-STAGE on Error LAG Selecton Method Sequence ORDER, Measured RUN TimeForce Lead Rotation Time Hhmm or None Date Revision Form Slave Write Data Sequencer 1 Minute EventForced Lead Rotation Slave Read Data