Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

The Possibility of using Flared Gas to Generate Electricity using Combined Power Cycle

View through CrossRef
This work evaluated the possibility of generating electricity from flared gases through the application of combined power cycle (Organic Rankine and Brayton circle) which was simulated using Aspen Hysys. The data for the stimulation was obtained from literature in terms of the process plant operating conditions. The results obtained from the simulation were presented in terms of material balance, energy balance, costing, sensitivity analysis and exergy analysis, which is otherwise known as energy availability. The major equipment in the plants were: pump, heat exchanger, compressor, combustion chamber (conversion reactor), and an expender modeled as a gas and steam turbine respectively in Aspen Hysys simulation. The condenser was modeled as a cooler. The material and balance results were in agreement with the principles of conservation of mass and energy for a stead state process. The costing of the plant in terms of total capital cost, total operating cost, total utility cost, equipment cost and total installation cost were: $16,762,100.00, $70,661,490.00, $4,745,230.00, $11,323,700.00 and $12,359,400.00 correspondingly. The sensitivity analysis results revealed that efficiency of the gas turbine increase with an increase in exhaust gas pressure (kPa), signifying that the efficiency increased from 81.5% to 85% when the exhaust gas pressure was raised from 100 kPa to 500 kPa. The efficiency of the steam turbine increased from 72.6% to 74.2% when the outlet pressure was raised from 100 kPa to 900 kPa. Finally, the exergy result for gas turbine in terms of total exergy inlet and outlet are 14187 kW and 3710 kW respectively. This indicates an exergy efficiency of 26.15% or 10,477 kW exergy destruction. Similarly, the exergy result for steam turbine in terms of total exergy inlet and outlet are 1,856 kW and 1,357 kW respectively. This indicates an exergy efficiency of 73.12% or 498kW exergy destruction
Title: The Possibility of using Flared Gas to Generate Electricity using Combined Power Cycle
Description:
This work evaluated the possibility of generating electricity from flared gases through the application of combined power cycle (Organic Rankine and Brayton circle) which was simulated using Aspen Hysys.
The data for the stimulation was obtained from literature in terms of the process plant operating conditions.
The results obtained from the simulation were presented in terms of material balance, energy balance, costing, sensitivity analysis and exergy analysis, which is otherwise known as energy availability.
The major equipment in the plants were: pump, heat exchanger, compressor, combustion chamber (conversion reactor), and an expender modeled as a gas and steam turbine respectively in Aspen Hysys simulation.
The condenser was modeled as a cooler.
The material and balance results were in agreement with the principles of conservation of mass and energy for a stead state process.
The costing of the plant in terms of total capital cost, total operating cost, total utility cost, equipment cost and total installation cost were: $16,762,100.
00, $70,661,490.
00, $4,745,230.
00, $11,323,700.
00 and $12,359,400.
00 correspondingly.
The sensitivity analysis results revealed that efficiency of the gas turbine increase with an increase in exhaust gas pressure (kPa), signifying that the efficiency increased from 81.
5% to 85% when the exhaust gas pressure was raised from 100 kPa to 500 kPa.
The efficiency of the steam turbine increased from 72.
6% to 74.
2% when the outlet pressure was raised from 100 kPa to 900 kPa.
Finally, the exergy result for gas turbine in terms of total exergy inlet and outlet are 14187 kW and 3710 kW respectively.
This indicates an exergy efficiency of 26.
15% or 10,477 kW exergy destruction.
Similarly, the exergy result for steam turbine in terms of total exergy inlet and outlet are 1,856 kW and 1,357 kW respectively.
This indicates an exergy efficiency of 73.
12% or 498kW exergy destruction.

Related Results

Flare Recovery Successful Case Study
Flare Recovery Successful Case Study
Abstract A stream of 2 up to 4 Million Standard Cubic Feet Per Day (MMSCFD) sweet gas used to be burnt and flared on site as a waste of energy causing more than 27,0...
A Study of Different Flared Joint Configurations
A Study of Different Flared Joint Configurations
ABSTRACT The paper deals with the stress distribution of flared tubular joints typically encountered in off-shore platforms and semisubmersible oil drilling struc...
Peningkatan Prestasi Belajar Materi Bilangan Berpangkat Melalui Model Discovery Learning
Peningkatan Prestasi Belajar Materi Bilangan Berpangkat Melalui Model Discovery Learning
This research is motivated by the unoptimally the mastery of the material is still not optimal exponential number among learners and implementation Discovery learning in mathematic...
Powering Profits: Profits, Investments and Fuel Type Mixes in the Dutch Power Sector
Powering Profits: Profits, Investments and Fuel Type Mixes in the Dutch Power Sector
This report addresses the Dutch power sector (i.e. generation and supply of electricity), identifying the major corporate players in the market, types of fuel used to generate elec...
The effect of internal and external determinants of electricity projects in Libya
The effect of internal and external determinants of electricity projects in Libya
Purpose In recent times, electricity as one of the most important energy sources has witnessed considerable decreases in consumption figures. These cutbacks have ...
Optimization method of time-of-use electricity price for the cost savings of power grid investment
Optimization method of time-of-use electricity price for the cost savings of power grid investment
The concept of time-of-use (TOU) electricity pricing is widely recognized as a key strategy to bridge the gap between electricity availability and consumption, enhance the efficien...
KOC 1% Gas Flaring Target
KOC 1% Gas Flaring Target
Abstract Gas flaring is increasingly recognized as a major environmental problem, contributing more than 1% to global emissions of CO2 in addition to its valuable...
PERLINDUNGAN HUKUM KONSUMEN LISTRIK PRABAYAR DI MAGELANG
PERLINDUNGAN HUKUM KONSUMEN LISTRIK PRABAYAR DI MAGELANG
Along with the development of technology, PT. PLN (Persero) has developed a product called "Prepaid Electricity".Prepaid electricity PT.PLN a new service for customers to manage po...

Back to Top