Javascript must be enabled to continue!
Enhancing the Fuel Efficiency of Cogeneration Plants by Fuel Oil Afterburning in Exhaust Gas before Boilers
View through CrossRef
Cogeneration or combined heat and power (CHP) has found wide application in various industries because it very effectively meets the growing demand for electricity, steam, hot water, and also has a number of operational, environmental, economic advantages over traditional electrical and thermal systems. Experimental and theoretical investigations of the afterburning of fuel oil in the combustion engine exhaust gas at the boiler inlet were carried out in order to enhance the efficiency of cogeneration power plants; this was achieved by increasing the boiler steam capacity, resulting in reduced production of waste heat and exhaust emissions. The afterburning of fuel oil in the exhaust gas of diesel engines is possible due to a high the excess air ratio (three to four). Based on the experimental data of the low-temperature corrosion of the gas boiler condensing heat exchange surfaces, the admissible values of corrosion rate and the lowest exhaust gas temperature which provide deep exhaust gas heat utilization and high efficiency of the exhaust gas boiler were obtained. The use of WFE and afterburning fuel oil provides an increase in efficiency and power of the CPPs based on diesel engines of up to 5% due to a decrease in the exhaust gas temperature at the outlet of the EGB from 150 °C to 90 °C and waste heat, accordingly. The application of efficient environmentally friendly exhaust gas boilers with low-temperature condensing surfaces can be considered a new and prosperous trend in diesel engine exhaust gas heat utilization through the afterburning of fuel oil and in CPPs as a whole.
Title: Enhancing the Fuel Efficiency of Cogeneration Plants by Fuel Oil Afterburning in Exhaust Gas before Boilers
Description:
Cogeneration or combined heat and power (CHP) has found wide application in various industries because it very effectively meets the growing demand for electricity, steam, hot water, and also has a number of operational, environmental, economic advantages over traditional electrical and thermal systems.
Experimental and theoretical investigations of the afterburning of fuel oil in the combustion engine exhaust gas at the boiler inlet were carried out in order to enhance the efficiency of cogeneration power plants; this was achieved by increasing the boiler steam capacity, resulting in reduced production of waste heat and exhaust emissions.
The afterburning of fuel oil in the exhaust gas of diesel engines is possible due to a high the excess air ratio (three to four).
Based on the experimental data of the low-temperature corrosion of the gas boiler condensing heat exchange surfaces, the admissible values of corrosion rate and the lowest exhaust gas temperature which provide deep exhaust gas heat utilization and high efficiency of the exhaust gas boiler were obtained.
The use of WFE and afterburning fuel oil provides an increase in efficiency and power of the CPPs based on diesel engines of up to 5% due to a decrease in the exhaust gas temperature at the outlet of the EGB from 150 °C to 90 °C and waste heat, accordingly.
The application of efficient environmentally friendly exhaust gas boilers with low-temperature condensing surfaces can be considered a new and prosperous trend in diesel engine exhaust gas heat utilization through the afterburning of fuel oil and in CPPs as a whole.
Related Results
Carbon Dioxide Production From Cogeneration For Enhanced Oil Recovery: An Economic Evaluation
Carbon Dioxide Production From Cogeneration For Enhanced Oil Recovery: An Economic Evaluation
Abstract
There is a great interest, especially in Western Canada, to capture carbon dioxide (CO2) from fossil fuel fired power plants and utilize it as a flooding...
Measurement of Exhaust Emissions From Two J-58 Engines at Simulated Supersonic Cruise Flight Conditions
Measurement of Exhaust Emissions From Two J-58 Engines at Simulated Supersonic Cruise Flight Conditions
Emissions of total oxides of nitrogen, unburned hydrocarbons, carbon monoxide, and carbon dioxide from two J-58 afterburning turbojet engines at simulated high-altitude flight cond...
Power Recovery From In-Situ Combustion Exhaust Gases
Power Recovery From In-Situ Combustion Exhaust Gases
A field evaluation of the use of a small gas-combustion turbine generator set to recover power from in-situ combustion exhaust gases was conducted. With suitable modifications to t...
Gas Disposal Aboard A Floating Production Facility
Gas Disposal Aboard A Floating Production Facility
Abstract
The Cadlao Floating Production, Storage and Offloading (FPSO) Facility has on board equipment to separate the oil, water and gas produced from two subsea...
Effects of Fuel Properties on Diesel Engine Exhaust Emission Characteristics
Effects of Fuel Properties on Diesel Engine Exhaust Emission Characteristics
<div class="htmlview paragraph">The effects of fuel properties on diesel engine exhaust emission characteristics are investigated using eleven kinds of fuel with varying leve...
Cooling Cyclic Air of Marine Engine with Water-Fuel Emulsion Combustion by Exhaust Heat Recovery Chiller
Cooling Cyclic Air of Marine Engine with Water-Fuel Emulsion Combustion by Exhaust Heat Recovery Chiller
The fuel efficiency of marine diesel engine as any combustion engine falls with raising the temperature of air at the suction of its turbocharger. Therefore, cooling the engine tur...
Multifunctional Bio-Additives, Remedial to Crude and all Fuel Oil Problems
Multifunctional Bio-Additives, Remedial to Crude and all Fuel Oil Problems
Abstract
The nail biting fuel oil problems such as sludge formation, accumulation of deposits, improper combustion, soot formation, high viscosity, pollution, sta...
Manager Of Supply Planning And Projects
Manager Of Supply Planning And Projects
Abstract
The Southern California Gas Company is responsible for providing gas service to 12 million southern Californians. SoCal Gas, like other major gas distrib...

