Analysis of Testing Velocity Vector Two Dimension Flow Using Direction-Sensing Probes Method with Diameter Tube 4mm

In the actual condition, there is a boundary layer at the surface of the fluid that flows through the pipe, so then make different magnitude and direction velocity of the fluid. The result that gained hopefully could be developed to get a accurately and precisely result and could be applied for...

Full description

Saved in:
Bibliographic Details
Main Author: Pangeran Parulian, Todo
Format: Final Project
Language:Indonesia
Subjects:
Online Access:https://digilib.itb.ac.id/gdl/view/39230
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:39230
spelling id-itb.:392302019-06-24T15:43:34ZAnalysis of Testing Velocity Vector Two Dimension Flow Using Direction-Sensing Probes Method with Diameter Tube 4mm Pangeran Parulian, Todo Teknik (Rekayasa, enjinering dan kegiatan berkaitan) Indonesia Final Project fluid velocity, tube’s diameter, laboratory testing. INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/39230 In the actual condition, there is a boundary layer at the surface of the fluid that flows through the pipe, so then make different magnitude and direction velocity of the fluid. The result that gained hopefully could be developed to get a accurately and precisely result and could be applied for deciding angle of attack at the suction side of pump. This experiment using two impact tube’s diameter is 4mm flowed by incompressible fluid. The data is data obtained pressure difference that happened between two tubes. The result that obtained from the experiment compared with theoretically result. From the experiment obtained that if flow angle tube smaller, than the result will be more accurate. So like that, with the angle of the tube will affecting the accuration in experiment. 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 Teknik (Rekayasa, enjinering dan kegiatan berkaitan)
spellingShingle Teknik (Rekayasa, enjinering dan kegiatan berkaitan)
Pangeran Parulian, Todo
Analysis of Testing Velocity Vector Two Dimension Flow Using Direction-Sensing Probes Method with Diameter Tube 4mm
description In the actual condition, there is a boundary layer at the surface of the fluid that flows through the pipe, so then make different magnitude and direction velocity of the fluid. The result that gained hopefully could be developed to get a accurately and precisely result and could be applied for deciding angle of attack at the suction side of pump. This experiment using two impact tube’s diameter is 4mm flowed by incompressible fluid. The data is data obtained pressure difference that happened between two tubes. The result that obtained from the experiment compared with theoretically result. From the experiment obtained that if flow angle tube smaller, than the result will be more accurate. So like that, with the angle of the tube will affecting the accuration in experiment.
format Final Project
author Pangeran Parulian, Todo
author_facet Pangeran Parulian, Todo
author_sort Pangeran Parulian, Todo
title Analysis of Testing Velocity Vector Two Dimension Flow Using Direction-Sensing Probes Method with Diameter Tube 4mm
title_short Analysis of Testing Velocity Vector Two Dimension Flow Using Direction-Sensing Probes Method with Diameter Tube 4mm
title_full Analysis of Testing Velocity Vector Two Dimension Flow Using Direction-Sensing Probes Method with Diameter Tube 4mm
title_fullStr Analysis of Testing Velocity Vector Two Dimension Flow Using Direction-Sensing Probes Method with Diameter Tube 4mm
title_full_unstemmed Analysis of Testing Velocity Vector Two Dimension Flow Using Direction-Sensing Probes Method with Diameter Tube 4mm
title_sort analysis of testing velocity vector two dimension flow using direction-sensing probes method with diameter tube 4mm
url https://digilib.itb.ac.id/gdl/view/39230
_version_ 1822925232292233216