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

Numerical Investigation of a Portable Incinerator: A Parametric Study

View through CrossRef
The application of incinerators for the municipal solid waste (MSW) is growing due to the ability of such instruments to produce energy and, more specifically, reduce waste volume. In this paper, a numerical simulation of the combustion process with the help of the computational fluid dynamics (CFD) inside a portable (mobile) incinerator has been proposed. Such work is done to investigate the most critical parameters for a reliable design of a domestic portable incinerator, which is suitable for the Iranian food and waste culture. An old design of a simple incinerator has been used to apply the natural gas (NG), one of the available cheap fossil fuels in Iran. After that, the waste height, place of the primary burner, and the flow rate of the cooling air inside the incinerator, as the main parameters of the design, are investigated. A validation is also performed for the mesh quality test and the occurrence of the chemical reactions near the burner of the incinerator. Results proved that the numerical results have less than 5% error compared to the previous experimental and numerical approaches. In addition, results show that by moving the primary burner into the secondary chamber of the incinerator, the temperature and the heating ability of the incinerator could be affected dramatically. Moreover, it has been found that by increasing the flow rate of the cooling air inside the incinerator to some extent, the combustion process is improved and, on the other hand, by introducing more cooling air, the evacuation of the hazardous gases from the exhaust is also improved.
Title: Numerical Investigation of a Portable Incinerator: A Parametric Study
Description:
The application of incinerators for the municipal solid waste (MSW) is growing due to the ability of such instruments to produce energy and, more specifically, reduce waste volume.
In this paper, a numerical simulation of the combustion process with the help of the computational fluid dynamics (CFD) inside a portable (mobile) incinerator has been proposed.
Such work is done to investigate the most critical parameters for a reliable design of a domestic portable incinerator, which is suitable for the Iranian food and waste culture.
An old design of a simple incinerator has been used to apply the natural gas (NG), one of the available cheap fossil fuels in Iran.
After that, the waste height, place of the primary burner, and the flow rate of the cooling air inside the incinerator, as the main parameters of the design, are investigated.
A validation is also performed for the mesh quality test and the occurrence of the chemical reactions near the burner of the incinerator.
Results proved that the numerical results have less than 5% error compared to the previous experimental and numerical approaches.
In addition, results show that by moving the primary burner into the secondary chamber of the incinerator, the temperature and the heating ability of the incinerator could be affected dramatically.
Moreover, it has been found that by increasing the flow rate of the cooling air inside the incinerator to some extent, the combustion process is improved and, on the other hand, by introducing more cooling air, the evacuation of the hazardous gases from the exhaust is also improved.

Related Results

EXERGY ANALYSIS OF SOLAR DRYER WITH A BACKUP INCINERATOR
EXERGY ANALYSIS OF SOLAR DRYER WITH A BACKUP INCINERATOR
Solar dryer with backup incinerator was fabricated with the aim of improving the efficiency of the drying rate of selected agricultural products. The dryer consist of three main pa...
Meeting ADNOC CoP CO & SO2 Emission Limits, at What Cost? Case Study
Meeting ADNOC CoP CO & SO2 Emission Limits, at What Cost? Case Study
Abstract Objective / Scope Over the past several decades, ADNOC has adopted increasingly strict clean air regulations. ADNOC Cod...
The Socio-Economic Impact of Waste Incinerator Technology Implementation on Scavengers’ Livelihoods in Malang City
The Socio-Economic Impact of Waste Incinerator Technology Implementation on Scavengers’ Livelihoods in Malang City
The application of incinerator technology in urban waste management has become one of the modern solutions to reduce waste volume and generate alternative energy. However, in the c...
Carbon monoxide formation and emissions during waste incineration in a grate-circulating fluidized bed incinerator
Carbon monoxide formation and emissions during waste incineration in a grate-circulating fluidized bed incinerator
This paper presents an experimental study of carbon monoxide (CO) formation and emissions in both grate drying bed incinerators and circulating fluidized bed (CFB) incinerators to ...
Hybrid Technology Incinerator For Solid Waste Processing Using an Evaporative Cooling System
Hybrid Technology Incinerator For Solid Waste Processing Using an Evaporative Cooling System
An incinerator is a combustion device that burns waste at high temperatures. The incinerator in this research uses hybrid technology, which uses an evaporative cooling system to re...
Boosting Gas Processing Energy Efficiency by Waste Heat Recovery
Boosting Gas Processing Energy Efficiency by Waste Heat Recovery
Abstract A continual improvement in energy efficiency of existing plants is imperative to achieve ADNOC target to reduce greenhouse gas emissions (GHG) intensity of ...
Optimization of incineration process
Optimization of incineration process
Municipal solid waste management has become a challenge in many cities in the developing countries due to the poor methods of waste disposal, which increase the risk of the spread ...
[RETRACTED] ChilWell Portable AC “Portable AC Cooler” Reviews v1
[RETRACTED] ChilWell Portable AC “Portable AC Cooler” Reviews v1
[RETRACTED]Is it safe to say that you are searching for inexpensively compact air cooling arrangement? Indeed, the late spring season is at its pinnacle and there is tremendous int...

Back to Top