Transmission pipeline calculations and simulations manual
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Pipeline Planning and Construction Field Manual. Shashi Menon. Working Guide to Pump and Pumping Stations. How to write a great review. Modelle Anatomische Modelle Somso-Modelle. Lehmanns Verlag. Shashi Menon Autor. Transmission Pipeline Calculations and Simulations Manual is a valuable time- and money-saving tool to quickly pinpoint the essential formulae, equations, and calculations needed for transmission pipeline routing and construction decisions. The manual's three-part treatment starts with gas and petroleum data tables, followed by self-contained chapters concerning applications.
Case studies at the end of each chapter provide practical experience for problem solving. Topics in this book include pressure and temperature profile of natural gas pipelines, how to size pipelines for specified flow rate and pressure limitations, and calculating the locations and HP of compressor stations and pumping stations on long distance pipelines.
Case studies are based on the author's personal field experiences Component to system level coverage Save time and money designing pipe routes well Design and verify piping systems before going to the field Increase design accuracy and systems effectiveness E.
He has over 35 years of experience in the pipeline industry. Case studies are based on the author's personal field experiences Component to system level coverageSave time and money designing pipe routes wellDesign and verify piping systems before going to the fieldIncrease design accuracy and systems effectiveness. Chapter One. Pipelines are used to transport liquids or gases from origin to end users.
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Pipelines are used to transport liquids or gases from point of origin to point of consumption of liquids or gases. These pipelines may be short lines, such as gathering lines ranging from a few feet to as much as a couple of miles. They may also be long trunk lines a few thousand miles long.
In this book, we will concentrate on transmission pipelines used to transport liquids such as water, refined petroleum products as well as natural gas or compressible fluids such as propane and ethane. More sophisticated pipelines have also been built to transport exotic gases and liquids such as ethylene or compressed high-density carbon dioxide CO2.
The latter pipelines require extensive hydraulic simulation or modeling taking into account the thermodynamic properties of CO2 including liquid vapor diagrams as well as the complex formulas that define the behavior of high density CO2. Starting with in Pennsylvania, United States, when the first practical pipeline was constructed by the entrepreneur and scientist Edwin Drake, the United States set the stage for the proliferation of practical utilization of pipelines ranging from a few miles to tens of thousands of miles all over the world.
There does not seem to be a let up in the consumption of crude oil and petroleum products despite the fact that the industrialized nations have spent enormous amounts of research and development efforts in replacing oil with a more renewable energy sources such as solar and wind power. The largest consumption by the public for crude oil is the application of diesel and gasoline for motor vehicles. Despite the enormous progress made with electric cars and non—crude oil—based fuels such as compressed natural gas, liquified natural gas, and hydrogen gas, for a long time to come crude oil and their derivatives will remain a major portion of the energy source for worldwide use.
Calculate the locations and HP of compressor stations on long distance pipelines. Pressure and temperature profile of natural gas pipelines. Determine the line pack volume in gas pipelines.
Models gas pipelines with multiple compressor stations. Pressure drop formulas Effect of Drag Reduction Agent in improving pipeline flow rate. Batching different products in a pipeline.