OPTIMASI PRODUKSI LAPANGAN GEOTHERMAL PADA PERIODE AWAL PENGEMBANGAN DENGAN MENGGUNAKAN METODE NODAL SISTEM ANALISIS

Nodal System Analysis is a analysis method to determine the production optimum point of a systemby balancing the reservoir productivity and the operational needs. Principle of this method is making the given system become smaller components. Those components are bordered by some nodes. In this paper...

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Main Author: Hasby Nugraha, Irko
Format: Final Project
Language:Indonesia
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Online Access:https://digilib.itb.ac.id/gdl/view/54596
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:54596
spelling id-itb.:545962021-04-07T15:10:14ZOPTIMASI PRODUKSI LAPANGAN GEOTHERMAL PADA PERIODE AWAL PENGEMBANGAN DENGAN MENGGUNAKAN METODE NODAL SISTEM ANALISIS Hasby Nugraha, Irko Pertambangan dan operasi berkaitan Indonesia Final Project Nodal, Node, Beggs and Brill, Pressure Drop, Reservoir Decline. INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/54596 Nodal System Analysis is a analysis method to determine the production optimum point of a systemby balancing the reservoir productivity and the operational needs. Principle of this method is making the given system become smaller components. Those components are bordered by some nodes. In this paper, there is a production system model which consist of five production wells, two phase flow pipe, separator, steam pipe, and turbine. This model has a goal to generate electricity 50 MW. First of all, the model has to be breakdown into 4 components that border with 3 nodes where are located at; the first is at start of the two phase pipe, the second is at separator, and the third is at turbine. Afterward, those nodes are analyzed with Nodal System Analysis. The result is the given production system model cannot achieve electricity 50 MW. Furthermore, writer does Nodal System Analysis for various amount of electricity, those are 40 MW, 30 MW, and 20 MW.The optimal production of this field is 30 MW or 6 MW per well. 30 MW as target is predicted would be achieved for 7 years in the initial period of field developmentwith earning 99 million USD revenue. Otherwise, if the initial goal still want to be accomplished so need some additional wells to fulfill 20 MW as lack. Equally important, steam velocity in steam pipe is on the lower range. For this reason,add production wells don’t have to be followed by adding a new steam pipe. It is enough gathering all steam in the existing steam pipe 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
topic Pertambangan dan operasi berkaitan
spellingShingle Pertambangan dan operasi berkaitan
Hasby Nugraha, Irko
OPTIMASI PRODUKSI LAPANGAN GEOTHERMAL PADA PERIODE AWAL PENGEMBANGAN DENGAN MENGGUNAKAN METODE NODAL SISTEM ANALISIS
description Nodal System Analysis is a analysis method to determine the production optimum point of a systemby balancing the reservoir productivity and the operational needs. Principle of this method is making the given system become smaller components. Those components are bordered by some nodes. In this paper, there is a production system model which consist of five production wells, two phase flow pipe, separator, steam pipe, and turbine. This model has a goal to generate electricity 50 MW. First of all, the model has to be breakdown into 4 components that border with 3 nodes where are located at; the first is at start of the two phase pipe, the second is at separator, and the third is at turbine. Afterward, those nodes are analyzed with Nodal System Analysis. The result is the given production system model cannot achieve electricity 50 MW. Furthermore, writer does Nodal System Analysis for various amount of electricity, those are 40 MW, 30 MW, and 20 MW.The optimal production of this field is 30 MW or 6 MW per well. 30 MW as target is predicted would be achieved for 7 years in the initial period of field developmentwith earning 99 million USD revenue. Otherwise, if the initial goal still want to be accomplished so need some additional wells to fulfill 20 MW as lack. Equally important, steam velocity in steam pipe is on the lower range. For this reason,add production wells don’t have to be followed by adding a new steam pipe. It is enough gathering all steam in the existing steam pipe
format Final Project
author Hasby Nugraha, Irko
author_facet Hasby Nugraha, Irko
author_sort Hasby Nugraha, Irko
title OPTIMASI PRODUKSI LAPANGAN GEOTHERMAL PADA PERIODE AWAL PENGEMBANGAN DENGAN MENGGUNAKAN METODE NODAL SISTEM ANALISIS
title_short OPTIMASI PRODUKSI LAPANGAN GEOTHERMAL PADA PERIODE AWAL PENGEMBANGAN DENGAN MENGGUNAKAN METODE NODAL SISTEM ANALISIS
title_full OPTIMASI PRODUKSI LAPANGAN GEOTHERMAL PADA PERIODE AWAL PENGEMBANGAN DENGAN MENGGUNAKAN METODE NODAL SISTEM ANALISIS
title_fullStr OPTIMASI PRODUKSI LAPANGAN GEOTHERMAL PADA PERIODE AWAL PENGEMBANGAN DENGAN MENGGUNAKAN METODE NODAL SISTEM ANALISIS
title_full_unstemmed OPTIMASI PRODUKSI LAPANGAN GEOTHERMAL PADA PERIODE AWAL PENGEMBANGAN DENGAN MENGGUNAKAN METODE NODAL SISTEM ANALISIS
title_sort optimasi produksi lapangan geothermal pada periode awal pengembangan dengan menggunakan metode nodal sistem analisis
url https://digilib.itb.ac.id/gdl/view/54596
_version_ 1822001825175306240