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Safety assessment is a necessary procedure in aircraft development, including the Wing in Surface Effect aircraft WiSE-8 which is developed by Aerospace Engineering of ITB and Indonesia BPPT. This process should be able to evaluate all WiSE-8 aircraft's functions and systems to ensure that all...

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Main Author: EDY PRATAMA (NIM 13601042), FEBRIANTO
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/10423
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:10423
spelling id-itb.:104232017-10-09T10:33:26Z#TITLE_ALTERNATIVE# EDY PRATAMA (NIM 13601042), FEBRIANTO Indonesia Final Project INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/10423 Safety assessment is a necessary procedure in aircraft development, including the Wing in Surface Effect aircraft WiSE-8 which is developed by Aerospace Engineering of ITB and Indonesia BPPT. This process should be able to evaluate all WiSE-8 aircraft's functions and systems to ensure that all safety risks have been taken into account, in order to receive a flight certification. Safety assessment process of WiSE-8 aircraft based on SAE ARP 4761 had been done before but some lackings are identified in the implementation procedure.<p>In this research, a literature study carried out to fulfill the lackings of safety assessment procedure. The improvements are creating a method to identify functions, creating a method to identify failure modes, inserting the results of failure modes identification into Functional Hazard Assessment (FHA) process, and conducting System Safety Assessment (SSA) process. After improving the safety assessment procedure, it is then implemented into WiSE-8 aircraft and the results are in detail. The implementation of safety assessment improvement made a success of identifying WiSE-8 aircraft functions more than the previous implementation. The implementation also succeed in identifying WiSE-8 aircraft failure modes. Because of more functions and failure modes are identified, aircraft systems which are analyzed in the Preliminary System Safety Assessment (PSSA) process are also more than the previous implementation. Unfortunately, WiSE-8 aircraft systems data are not available for the System Safety Assessment (SSA) process, therefore the SSA process has been conducted by using hypothetical data. 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 Safety assessment is a necessary procedure in aircraft development, including the Wing in Surface Effect aircraft WiSE-8 which is developed by Aerospace Engineering of ITB and Indonesia BPPT. This process should be able to evaluate all WiSE-8 aircraft's functions and systems to ensure that all safety risks have been taken into account, in order to receive a flight certification. Safety assessment process of WiSE-8 aircraft based on SAE ARP 4761 had been done before but some lackings are identified in the implementation procedure.<p>In this research, a literature study carried out to fulfill the lackings of safety assessment procedure. The improvements are creating a method to identify functions, creating a method to identify failure modes, inserting the results of failure modes identification into Functional Hazard Assessment (FHA) process, and conducting System Safety Assessment (SSA) process. After improving the safety assessment procedure, it is then implemented into WiSE-8 aircraft and the results are in detail. The implementation of safety assessment improvement made a success of identifying WiSE-8 aircraft functions more than the previous implementation. The implementation also succeed in identifying WiSE-8 aircraft failure modes. Because of more functions and failure modes are identified, aircraft systems which are analyzed in the Preliminary System Safety Assessment (PSSA) process are also more than the previous implementation. Unfortunately, WiSE-8 aircraft systems data are not available for the System Safety Assessment (SSA) process, therefore the SSA process has been conducted by using hypothetical data.
format Final Project
author EDY PRATAMA (NIM 13601042), FEBRIANTO
spellingShingle EDY PRATAMA (NIM 13601042), FEBRIANTO
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author_facet EDY PRATAMA (NIM 13601042), FEBRIANTO
author_sort EDY PRATAMA (NIM 13601042), FEBRIANTO
title #TITLE_ALTERNATIVE#
title_short #TITLE_ALTERNATIVE#
title_full #TITLE_ALTERNATIVE#
title_fullStr #TITLE_ALTERNATIVE#
title_full_unstemmed #TITLE_ALTERNATIVE#
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url https://digilib.itb.ac.id/gdl/view/10423
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