EVO-MT® 9300 | LNG Conversion for Komatsu 930 Mine Haul Trucks
The EVO-MT® System enables operators of Komatsu 930 mine haul trucks to substantially reduce operational costs and improve sustainability by substituting diesel fuel with lower cost, cleaner burning natural gas. The EVO-MT® System is comprised of patented and proprietary technologies that allow haul trucks to safely operate on gas percentages that represent a substantial portion of their total fuel requirement. The EVO-MT® System has been designed around an LNG on-board storage capacity equivalent to 50% of the normal diesel fuel consumed over a single shift of operation. Diesel Displacement Rate (DDR) will vary according to the specific haul profile and duty cycle of the truck. Typical DDR for most haul profiles ranges between 35% and 50%. Trucks converted to LNG + diesel operation exhibit diesel-like performance in such critical areas as power, response and efficiency.
Engine Conversion
The EVO-MT® System allows for the in-frame conversion of the haul truck engine to LNG+D operation. The conversion process utilizes components that are installed externally of the engine and no changes or modifications to the cylinders, pistons, fuel injectors or cylinder heads are required. Retaining the OEM diesel fuel system in its entirety, the engine maintains the capability to operate solely on diesel fuel when required. The System interfaces with the engine cooling circuit in order to supply high temperature coolant to a heat exchanger / vaporizer for efficient conversion of the LNG from a liquid to a vapor state. Once the LNG is converted to a vapor phase, it is supplied to the engine’s air-intake system at a point upstream of the turbo-compressor inlets using low restriction air-gas mixing technology. Installation is performed using conventional shop tools and equipment and requires about 6 - 8 hours to complete.
Protection and Control
The EVO-MT® System includes a powerful Electronic Control Unit (ECU) that monitors critical engine, chassis and system data and uses this information to dynamically control the operating fuel mode of the engine. The ECU also provides sophisticated engine protection and monitoring functionality with pre-alarm, alarm and shut-down logic that allows the engine to be switched from NG+D® mode to diesel-only operation seamlessly and automatically. These protective systems and control algorithms ensure continued engine reliability and uptime when operating on LNG. The ECU monitors critical engine parameters including exhaust gas temperature, manifold air temperature, vibration, engine coolant temperature, engine speed, compressor inlet pressure and manifold air pressure. Each ECU data channel is sampled 50 times per second (50 Hz) ensuring rapid detection and correction of anomalies.
Graphical User Interface
The GUI allows for quick and simple access to both real time and logged system data using a proprietary graphical user interface (GUI) program. The GUI program is PC compatible and technical personnel can access System data using a convenient USB interface located in the operator cab. In addition to accessing System data, the GUI program is utilized during setup and commissioning of the haul truck for creation or loading of fuel mapping algorithms as well as for programming various System control, pre-alarm and alarm setpoints.
On-Board LNG Storage
LNG is safely and securely stored onboard the mine haul truck using a fully-integrated chassis system. The LNG storage “pod” includes double walled, vacuum insulated cryogenic tanks, LNG vaporizer, cryogenic safety controls, high and low pressure gas regulators, gas flow meter and sensors. The pod is a fully-engineered, pre-fabricated assembly that significantly minimizes the required installation down-time of the truck. Pods are shipped to the mine site completely assembled and tested and can be installed using overhead shop cranes or mobile lifting systems. The LNG pod is designed for specific haul truck configurations and/or duty cycles and normally includes sufficient LNG storage capacity for a 12 hour refueling cycle.
LNG Refueling
The LNG storage pod is filled via a remote refueling receptacle that is located according to customer requirements. LNG refueling is performed using a pressurized, quick-disconnect coupling that allows for the safe and rapid refueling of the pod. LNG refueling can be done in parallel with diesel refueling using either permanent, semi-permanent or mobile cryogenic fuel transfer systems.
EVO-MT® 9300 | Specifications
Integrated Fuel Storage Modules (FSM)
Hydraulic / LNG FSM (Standard)
• 330 U.S. Gallon (1,249 liter) Water Volume
• Approximately 300 U.S. Gallon (1135 liter) LNG Capacity
• 246 U.S. Gallon Hydraulic Fluid Maximum
• Mounts to OEM Hydraulic Tank Mount with Minor Modification (retains ability to reinstall OEM Hydraulic Tank)
Diesel / LNG FSM (Optional)
• 700 U.S. Gallons (2460 liters) Diesel, 650 Usable
• Additional 300 U.S. Gallons of LNG
• Mounts Directly to OEM Diesel Tank Mounting Location (no modification required)
• 100-150 PSI Operating Pressure
• 230 PSI Max Allowable Working Pressure
• LNG Tanks Designed, Constructed and Tested to ASME section VIII, Dev. 1 or SAE J2343, NFPA 52, and Other Applicable Standards
• Double-Walled and Vacuum-Insulated Cryogenic Tank
• 5 Day Hold Time
• Cryogenic Shut-Off Solenoid Valves
• Integrated LNG Fill Port @ 50-100 GPM Fill Rate
• Remote Venting System
• Single Stage LNG Vaporizer
Electronic Control Unit (ECU)
• 32-bit Microcontroller with USB and CAN Communications
• J1939 Compatible
• Programmable Fuel Mapping
• Remote Graphic User Interface
• Monitors >25 Sensors 50X per Second
• Four Channel Throttle-Body Control Output
• 24V Input Power
• Load Dump Overvoltage > 100V
• Under-Voltage Lockout < 18V
• Reverse and Double Battery Voltage Protected
ECU Environmental Ratings
• Ambient Operating Temperature:
-40°C to +105°C
• Storage Temperature:
-40°C to +125°C
• EMC/EMI:
EN61000-6-2/-4
ISO 10605
ISO 11452-2,4
CISPR 25
• Humidity:
MIL-STD-810D, 507.2
• Chemical Resistance:
SAE J1455, 4.4.3
• Shock:
40 Gs
• Vibration:
Random: 0.3G &s up2;/Hz, 10-2000 Hz
• Thermal Shock:
SAE J1455, 4.1.3.2
• ngress Protection:
IP56 Per IEC 60529
SAE J1455
Gas Train
• CSA Certified or CRN High Pressure Regulator
• CSA Certified Low Pressure Regulator
ANSI Z21.18
• CSA Certified Dual Solanoid Valve
ANSI Z21.21
Gas Distribution System
• Fire Shielded Eaton FC3000 Hoses
• 8" or 10" Air / Gas Mixers
• Mass Air Flow Sensor
• Fast Acting Throttle Bodies
Engine / Truck Safety
• Flame Detection
• Air-Gas Mixture Inflammable Outside Combustion Chamber
• High Exhaust / Turbo Temperature
• High Boost Pressure / Temperature
• Engine Over-Speed Protection
• Engine Knock Detection
• Gas Throttle Position Feedback Loop
• Tie-In to Truck Fire Control System
Operator Safety
• In-Cab Combustible Gas Detection
• In-Cab System E-Stop (Optional)
• External system E-Stop (Optional)
• Automatic Gas Shutdown in Rollover
• Automatic Gas Shutdown on Truck Over-Speed
• Automatic Reversion to Diesel Operation
Engines / Drives Supported
• Cummins QSK60
• MTU 16V4000
• GE AC Drive System
• GE Invertex
System Weight (Standard System)
• Fully filled with LNG ~ 6700 pounds net
• Optional Diesel / LNG FSM - Net Neutral