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Company Information:

Company Name: Tech4imaging Llc
City: Columbus
State: OH
Zip+4: 43220-4524
Woman-Owned: No
Minority-Owned: No
HUBZone-Owned: No
Website URL: N/A
Phone: N/A

Award Totals:

Program/Phase Award Amount ($) Number of Awards
SBIR Phase I $299,686.00 2
SBIR Phase II $1,000,000.00 1

Award List:

Real-Time 3-D Volume Imaging and Mass-Gauging of High Temperature Flows and Power System Components in a Fossil Fuel Reactor Using Electrical Capacitance Volume Tomography

Award Year / Program / Phase: 2013 / SBIR / Phase I
Agency: DOE
Principal Investigator: Qussai Marashdeh, Dr.
Award Amount: $149,686.00
Abstract:
Controlling emissions and increasing efficiencies are essential requirements in future advanced power plants. Herein, next generation power systems require greater flexibility in their operations for meeting the higher efficiency and lower emissions conditions that are geared toward meeting consumer… More

Adaptive Electrical Capacitance Volume Tomography for Real-Time Measurement of Solids Circulation Rate at High Temperatures

Award Year / Program / Phase: 2014 / SBIR / Phase I
Agency: DOE
Principal Investigator: Qussai Marashdeh, Dr.
Award Amount: $150,000.00
Abstract:
Solid mass flow rate is a critical parameter of Circulating Fluidized Bed combustors that are deployed in many energy generation processes. Available devices that can accurately measure the mass flow rate are very limited. Next generation power systems require such measurements for greater… More

Real-Time 3-D Volume Imaging and Mass-Gauging of High Temperature Flows and Power System Components in a Fossil Fuel Reactor Using Electrical Capacitance Volume Tomography

Award Year / Program / Phase: 2014 / SBIR / Phase II
Agency: DOE
Principal Investigator: Qussai Marashdeh, Dr.
Award Amount: $1,000,000.00
Abstract:
Advanced power plant instrumentation is being developed here to help increase efficiencies and lower emissions of power generation processes. This instrumentation is based on developing capacitance sensors, which can withstand harsh conditions, to provide 3D imaging of flow characteristics in high… More