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  ► LIQUID SPRAYING LIQUID FLOW RATE (GPM) FORMULA WidthSpeed (MPH)6010600 ► ANHYDROUS AMMONIA NH3 FLOW RATE (LBS / HOUR) FORMULA WidthSpeed (MPH)To calculate the liquid gallon per minute flow rate that is required to select the appropriate liquid control valve and flow meter, use the following formula:  Boom Width x Ground Speed x Application Rate (GPA) x .00202   Adjust the cells (shown in gray) to calculate the GPM Flow (shown in yellow)  Application Rate (GPA) To calculate NH3 flow rate (lbs/hour), use the following formula:  Implement Width x Ground Speed x Application Rate (LBS/NH3 per acre) x .1212   Adjust the cells (shown in gray) to calculate the lbs/Hour (shown in green)  Application Rate (LBS/NH3 per acre)  4092000 ► GRANULAR SPREADING / DRILL SEEDERS / AIR SEEDERS HYDRAULIC OIL FLOW RATE FORMULA (assumes 1:1 gear ratio) 41.2120231 To calculate hydraulic oil flow require-ments to select the optimal hydraulic control valve for use with a hydraulic motor, use the following formula: Hydraulic motor in3/rev x Motor RPM required divided by 231  Adjust the cells (shown in gray) to calculate the Oil GPM required (shown in red)IN3/REV Motor SpecMax Motor RPM Required for  ApplicationIN3 in 1 gallon  ► HYDRAULIC MOTOR RPM FORMULA (assumes 1:1 gear ratio) =10lbsMaximum application rate (lbs per acre)=1200lbsGround Speed rate will be applied at=10mphSpread Width in Feet=40ftSquare Feet in 1 Acre=435601 mile = 5280 feet=5280Distance( feet) traveled per minute at above ground speed=880 CONSTANT V Time required to apply material on 1 acre at above ground speed=1.2375=120To calculate motor RPM required to achieve maximum application rate enter values for pounds per 1 REV, max application rate, ground speed and spread width. Adjust the cells (shown in gray) to calculate the Max Motor RPM required (shown in red)Pounds discharged from Vbox spreader per 1 REV of conveyor belt drive shaft  (THESE D Conveyor shaft revolutions required to apply maximum application rate  GPM Flow = 73LBS / HOUR

Pledge of ECE

Oct 7, 2019

Activity No. 2

Oct 7, 2019
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