CCEC KTA38-G2B-A Generator Engines


CCEC KTA38-G2B-A Generator Engines

Engine ModelKTA38-G2B-A
Standby Power1058 HP (790 kW) @ 1500 RPM
Prime Power953 HP (711 kW) @ 1500 RPM
Compression Ratio13.9 : 1
Type4 Cycle; 12 Cylinder
Fuel SystemPT-STC
AspirationTurbocharged & Aftercooled
Emission StandardEuro II
Displacement38 L
Bore * Stroke159 mm * 159 mm
Packing Size (L * W * H)2341 mm * 1360 mm * 1653 mm

General Infomation of CCEC KTA38-G2B-A Generator Engines

General Infomation of CCEC KTA38-G2B-A Generator Engine
Engine ModelKTA38-G2B-AConfigurationD233020DX02
Performance CurveFR – 6924CPL No.3660
Type4 – Cycle; 60° Vee; 12 – Cylinder DieselAspirationTurbocharged & Aftercooled Intercooler
Bore * Stroke159 mm * 159 mm / 6.25 in * 6.25 inDisplacement2300 in3 / 38 L
Compression Ratio14.5 : 1Stand_By Power1058 HP (790 kW) @ 1500 RPM
Prime Power953 HP (711 kW) @ 1500 RPMFuel SystemCMI PT
Installation Data of CCEC KTA38-G2B-A Generator Drive Engine
Wet Weight – Fan to Flywheel Engine8700 lb / 3946 kg
Wet Weight – Heat Exchanger Cooled Engine11030 lb / 5003 kg
Moment of Inertia of Rotating Components – with FW 6001 Flywheel248 lbm.ft2 / 10.45 kg.m2
C.G. Distance From Front Face of Block31.5 in / 801 mm
Maximum Static Loading at Rear Main Bearing2000 lb / 907 kg
Firing Order1- 6 – 5 – 2 – 3 – 4 – 6 – 1 – 2 – 5 – 4 – 3
Moment of Inertia of Rotating Components (Excluding Flywheel)94 lbm.ft2 / 3.96 kg.m2
Dry Weight – Fan to Flywheel Engine8200 lb / 3719 kg
Dry Weight – Heat Exchanger Cooled Engine9625 lb / 4366 kg
Maximum Bending Moment at Rear Face of BlockN / A
Moment of Inertia of Rotating Components – with FW 6011 Flywheel493 lbm.ft2 / 20.78 kg.m2
Center of Gravity Above Crankshaft Centerline11.0 in / 279 mm
Steady State Stability Band at any Constant LoadN / A

Engine Performance Data CCEC KTA38-G2B-A Generator Engines

Performance Data of CCEC KTA38-G2B-A Generator Engine
Stanby PowerPrime PowerStanby PowerPrime Power
Engine Speed1500 RPM1500 RPMEngine Idle Speed725 – 775 RPM725 – 775 RPM
Gross Engine Power Output1058 HP790 kW953 HP711 kWBrake Mean Effective Pressure241 PSI1665 kPa217 PSI1499 kPa
Piston Speed1555 ft/min7.9 m/s1555 ft/min7.9 m/sFriction Horsepower115 HP86 kW115 HP86 kW
Intake Air Flow 1950 cfm920 L/s1800 cfm850 L/sExhaust Gas Temperature1025 °F552 °C1005 °F541 °C
Exhaust Gas Flow 5580 cfm2634 L/s5080 cfm2398 L/sHeat Rejection to Ambient6300 HP111 min/kW5745 HP101 min/kW
Heat Rejection to Coolant25480 HP448 min/kW23140 HP407 min/kWEngine Water Flow @ 4psi310 U.S.GPM19.6 L/s310 U.S.GPM19.6 L/s

System Technical Data of CCEC KTA38-G2B-A Generator Engines

System Technical Data of CCEC KTA38-G2B-A Generator Engine
Exhaust SystemMaximum Allowable Back Pressure (1500 RPM)2.3 in Hg / 7.8 kPa
Maximum Allowable Back Pressure3 in Hg / 10 kPa
Exhaust Pipe Size Normally Acceptable6 in / 152 mm
Air Induction SystemMaximum Allowable Intake Air Restriction With Heavy Duty Air Cleaner – Clean Element15 in H2O / 3.73 kPa
Intake Air Alarm Temperature (1500 RPM)82 °F / 180 °C
Cooling SystemCoolant Capacity – After-cooler Only6 US Gal / 23 L
Coolant Capacity – With Heat Exchanger Hx 6076 ( With Out Explantion Tank)53 US Gal / 199 L
Coolant Capacity – With Explantion Tank & Lta30 US Gal / 112 L
Maximum Coolant Friction Heat External To Engine @1500 RPM10 PSI / 68.9 kPa
Maximum Allowable Air Friction Across Radator0.5 in H2O / 0.1 kPa
Minimum Raw Water Flow @ 90 °F(32 ℃) To Heat Exchanger With Hx 6076108 GPM / 408.8 L/min
Maximum Raw Water Inlet Pressure @ Heat Exchanger HX 607650 PSI / 344.7 kPa
Maximum Allowable Top Tank Temperature (Stand_by/Prime)220/212 °F / 104/100 °C
Standard Thermostat (Modulating) Range180 – 200 °F / 82 – 93 °C
Maximum Allowable Coolant Temperature205 °F / 96.1 °C
Minimum Coolant Makeup Capacity6.3 US Gal / 23.8 L
Maximum Raw Water Inlet Friction10 PSI / 254.0 kPa
Maximum Raw water Pump Suction15 ft / 4.6 m
Maximum Allowable Initial Fill Time5 min
Minimum Allowable Coolant Expansion Space5 %
Maximum Allowable Inlet Coolant Temperature At Limited Situation  (Stand_By / Prime)160/150 °F / 71/66 °C
Lubrication SystemOil Pressure @ Idle Speed20 PSI / 138 kPa
Oil Pressure @ Rated Speed45 – 65 PSI / 310 – 448 kPa
Oil Flow at Rated Speed124 GPM / 469.4 L/min
Maximum Allowable Oil Temperature250 °F / 121 °C
By – Pass Filter Capacity – Spin – on Cartridge Type2 * 0.7 US Gal / 2 * 2.6 L
By – Pass Filter Capacity – Replaceable Element Type2 * 2.9 US Gal / 2 * 11.0 L
Oil Pan Capacity (Option OP6023) – High40.0 US Gal / 151.4 liter
Total System Capacity (Excluding By – Pass Filter)45.0 US Gal / 170.3 L
Total System Capacity (Excluding By – Pass Filter)35.7 US Gal / 135.1 L
Angularty of Standard Oil Pan Oil Pan – Front Down30 °
Fuel SystemFuel Injection SystemCummins PT
Maximum allowable Restriction to PT Fuel Pump – With Clean Fuel Filter4 in Hg / 13.55 kPa
Maximum allowable Restriction to PT Fuel Pump – With Dirty Fuel Filter10 in Hg / 33.86 kPa
Maximum Allowable Injector Return Line Restriction – With Check Valves7 in Hg / 22 kPa
Maximum Allowable Injector Return Line Restriction – Less Check Valves3 in Hg / 8 kPa
Minimum Allowable Fuel Tank Vent Capability15 ft3/h / 425 L/h
Starter (Heavy, Anode)24 V
Battary Recharge System, Negative ground35 A
Maximum Allowable Resistance of Starting Circuit0.002 Ω
Minimum Recommended Battary Capacity – Cold Soak at 50 °F(10 ℃) or Above12000 °F CCA
Minimum Recommended Battary Capacity – Cold Soak at 32 ~ 50 °F(0 ~ 10 ℃) or Above12800 °F CCA
Minimum Recommended Battary Capacity – Cold Soak at 0 ~ 32 °F(- 18 ~ 0 ℃) or Above18000 °F CCA

CCEC KTA38-G2B-A Generator Engines Product Advantages

Durable and Rugged
The cylinder block and cylinder head feature high-strength integrated design, reducing failure rates and ensuring long-lasting durability. Renowned for exceptional reputation.

High Reliability
Equipped with Cummins’ advanced PT fuel system, offering unique overspeed protection and low-pressure fuel supply. Minimal piping reduces failure rates. Derived from superior overall design, delivering outstanding reliability.

Superior Performance

  • High-efficiency Cummins exhaust turbocharger ensures optimal air intake, enhancing engine efficiency.
  • Pressure pulse exhaust manifold fully utilizes exhaust energy, further improving combustion and increasing low-load efficiency while reducing specific fuel consumption.
  • High torque output, powerful performance, fast transient response, and exceptional torque reserve.

Easy Maintenance
Six-cylinder single-head integrated design with modularized structure ensures compactness. Components are detachable and highly reusable.

Contact BLSH Now!

=