TRANSPORTATION DESIGN OF DUMAI CITY MULTIPURPOSE PORT

Industrial infrastructure provision inside and outside industrial area and/or within the designated industrial area is one of the prerequisites needed to create reliable, supporting, and upstream industries, as well as the utilization of resources in the future. Dumai City is an Industrial Growth...

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Main Author: Hafidh Setiawan, Muhammad
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/69021
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:69021
spelling id-itb.:690212022-09-19T21:58:40ZTRANSPORTATION DESIGN OF DUMAI CITY MULTIPURPOSE PORT Hafidh Setiawan, Muhammad Indonesia Final Project time series analysis, four-step model, multipurpose, jetty, berth occupancy ratio, general cargo, dry bulk, liquid bulk, productivity, queue, terminal, pavement. INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/69021 Industrial infrastructure provision inside and outside industrial area and/or within the designated industrial area is one of the prerequisites needed to create reliable, supporting, and upstream industries, as well as the utilization of resources in the future. Dumai City is an Industrial Growth Center Area (WPPI) located in the Riau Industrial Development Area (WPI). The existence of Dumai City Multipurpose Port is later expected to be able to meet the port services needs from its hinterland area, Kawasan Industri Dumai, accordance to Dumai City’s Spatial Planning Regulation for 2019-2039, also be able to support the regional economic aspects. The port is designed as jetty type wharf and there are three types of wharf function based on its hinterland commodities: general cargo, dry bulk, liquid bulk. The port is designed with technical specifications as a local feeder port hierarchy, as stated in the National Port Master Plan document. The demand forecasting method refers to the four-step model, using time series analysis approach, and using Optant PL software. Trip assignment result for the port node in the design year is 5,214,361.50 tons/year. The seaside facilities of the designed port consist of the length of the dock for general cargo, dry bulk, liquid bulk, respectively 558 m, 540 m, and 126 m; typically 32-meters-apron-width for every dock; a trestle with a length of 504 m and a width of 16 m. The scope of the landside port facilities design includes general cargo terminal, dry bulk terminal, and liquid bulk terminal. Area needed for cargo storage is 5,035.02 m2. The needs of dry bulk terminal stockpile area is 676.57 m2. Liquid bulk terminal designed with 4,500 m3 typical storage tanks and yield the needs of 26 units of storage tanks. To provide the accessibility needs at the port area, the road pavement is designed using rigid pavement with 265 mm thick concrete slab, 100 mm thick LMC foundation layer, and 150 mm thick drainage layer. 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 Industrial infrastructure provision inside and outside industrial area and/or within the designated industrial area is one of the prerequisites needed to create reliable, supporting, and upstream industries, as well as the utilization of resources in the future. Dumai City is an Industrial Growth Center Area (WPPI) located in the Riau Industrial Development Area (WPI). The existence of Dumai City Multipurpose Port is later expected to be able to meet the port services needs from its hinterland area, Kawasan Industri Dumai, accordance to Dumai City’s Spatial Planning Regulation for 2019-2039, also be able to support the regional economic aspects. The port is designed as jetty type wharf and there are three types of wharf function based on its hinterland commodities: general cargo, dry bulk, liquid bulk. The port is designed with technical specifications as a local feeder port hierarchy, as stated in the National Port Master Plan document. The demand forecasting method refers to the four-step model, using time series analysis approach, and using Optant PL software. Trip assignment result for the port node in the design year is 5,214,361.50 tons/year. The seaside facilities of the designed port consist of the length of the dock for general cargo, dry bulk, liquid bulk, respectively 558 m, 540 m, and 126 m; typically 32-meters-apron-width for every dock; a trestle with a length of 504 m and a width of 16 m. The scope of the landside port facilities design includes general cargo terminal, dry bulk terminal, and liquid bulk terminal. Area needed for cargo storage is 5,035.02 m2. The needs of dry bulk terminal stockpile area is 676.57 m2. Liquid bulk terminal designed with 4,500 m3 typical storage tanks and yield the needs of 26 units of storage tanks. To provide the accessibility needs at the port area, the road pavement is designed using rigid pavement with 265 mm thick concrete slab, 100 mm thick LMC foundation layer, and 150 mm thick drainage layer.
format Final Project
author Hafidh Setiawan, Muhammad
spellingShingle Hafidh Setiawan, Muhammad
TRANSPORTATION DESIGN OF DUMAI CITY MULTIPURPOSE PORT
author_facet Hafidh Setiawan, Muhammad
author_sort Hafidh Setiawan, Muhammad
title TRANSPORTATION DESIGN OF DUMAI CITY MULTIPURPOSE PORT
title_short TRANSPORTATION DESIGN OF DUMAI CITY MULTIPURPOSE PORT
title_full TRANSPORTATION DESIGN OF DUMAI CITY MULTIPURPOSE PORT
title_fullStr TRANSPORTATION DESIGN OF DUMAI CITY MULTIPURPOSE PORT
title_full_unstemmed TRANSPORTATION DESIGN OF DUMAI CITY MULTIPURPOSE PORT
title_sort transportation design of dumai city multipurpose port
url https://digilib.itb.ac.id/gdl/view/69021
_version_ 1822005917919477760