Bandung Municipal Solid Waste Combustion Simulation on Small Incinerator using Flic and Fluent

Incineration is one of many waste handling technology which are used by popular countries in the world. Thermodynamics Laboratory ITB has a small incinerator to handle Municipal Solid Waste (MSW). This incinerator was used to burn Bandung Municipal Solid Waste (MSW) into ash. To get the combustion r...

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Main Author: Samuel Manurung, Henry
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/45879
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:45879
spelling id-itb.:458792020-01-31T14:51:00ZBandung Municipal Solid Waste Combustion Simulation on Small Incinerator using Flic and Fluent Samuel Manurung, Henry Indonesia Final Project Bandung MSW, small incinerator, combustion simulation, Flic, Fluent. INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/45879 Incineration is one of many waste handling technology which are used by popular countries in the world. Thermodynamics Laboratory ITB has a small incinerator to handle Municipal Solid Waste (MSW). This incinerator was used to burn Bandung Municipal Solid Waste (MSW) into ash. To get the combustion result, simulation was used to approach the real result of the Bandung MSW combustion by using Flic and Fluent. Flic was used to have the gas profile from Bandung MSW combustion at the bed of the furnace, such as temperature, velocity, pressure, and mass fraction with the input was MSW composition, grate speed, and incinerator length and width. Fluent was used to have the inner condition of incinerator with the input was the gas profile from Flic simulation. Throughout the simulation, the main parameters to be observed were excess air and outlet position againts the mass burn rate, temperature distribution, and exhaust emission. The results from combustion simulation using Flic and Fluent showed the influence of changing outlet geometry and excess air on emission, mass loss rate, and temperature distribution in small incinerator. As a result, the small incinerator with excess air as much as 25 percent and the outlet of incinerator is at the end of the furnace came up as the best choice. This incinerator had CO gas emission 125,98 mg/Nm3, which is passed the CO gas emission requirement for incineration from Indonesian government in Ministry of Environtment and Foresty regulation number 70 in 2016 about Baku Mutu Emisi Usaha dan/atau Kegiatan Pengolahan Sampah Secara Termal, which is maximum 600 mg/Nm3. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Incineration is one of many waste handling technology which are used by popular countries in the world. Thermodynamics Laboratory ITB has a small incinerator to handle Municipal Solid Waste (MSW). This incinerator was used to burn Bandung Municipal Solid Waste (MSW) into ash. To get the combustion result, simulation was used to approach the real result of the Bandung MSW combustion by using Flic and Fluent. Flic was used to have the gas profile from Bandung MSW combustion at the bed of the furnace, such as temperature, velocity, pressure, and mass fraction with the input was MSW composition, grate speed, and incinerator length and width. Fluent was used to have the inner condition of incinerator with the input was the gas profile from Flic simulation. Throughout the simulation, the main parameters to be observed were excess air and outlet position againts the mass burn rate, temperature distribution, and exhaust emission. The results from combustion simulation using Flic and Fluent showed the influence of changing outlet geometry and excess air on emission, mass loss rate, and temperature distribution in small incinerator. As a result, the small incinerator with excess air as much as 25 percent and the outlet of incinerator is at the end of the furnace came up as the best choice. This incinerator had CO gas emission 125,98 mg/Nm3, which is passed the CO gas emission requirement for incineration from Indonesian government in Ministry of Environtment and Foresty regulation number 70 in 2016 about Baku Mutu Emisi Usaha dan/atau Kegiatan Pengolahan Sampah Secara Termal, which is maximum 600 mg/Nm3.
format Final Project
author Samuel Manurung, Henry
spellingShingle Samuel Manurung, Henry
Bandung Municipal Solid Waste Combustion Simulation on Small Incinerator using Flic and Fluent
author_facet Samuel Manurung, Henry
author_sort Samuel Manurung, Henry
title Bandung Municipal Solid Waste Combustion Simulation on Small Incinerator using Flic and Fluent
title_short Bandung Municipal Solid Waste Combustion Simulation on Small Incinerator using Flic and Fluent
title_full Bandung Municipal Solid Waste Combustion Simulation on Small Incinerator using Flic and Fluent
title_fullStr Bandung Municipal Solid Waste Combustion Simulation on Small Incinerator using Flic and Fluent
title_full_unstemmed Bandung Municipal Solid Waste Combustion Simulation on Small Incinerator using Flic and Fluent
title_sort bandung municipal solid waste combustion simulation on small incinerator using flic and fluent
url https://digilib.itb.ac.id/gdl/view/45879
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