Turbocharged Spark Ignition Two Stroke Engine

Turbocharged Spark Ignition Two Stroke Engine PDF Author: Kenneth Edgar Hardman
Publisher:
ISBN:
Category :
Languages : en
Pages : 96

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Book Description

Turbocharged Spark Ignition Two Stroke Engine

Turbocharged Spark Ignition Two Stroke Engine PDF Author: Kenneth Edgar Hardman
Publisher:
ISBN:
Category :
Languages : en
Pages : 96

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Book Description


Two-Stroke Cycle Engine

Two-Stroke Cycle Engine PDF Author: JohnB. Heywood
Publisher: Routledge
ISBN: 1351406469
Category : Technology & Engineering
Languages : en
Pages : 472

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Book Description
This book addresses the two-stroke cycle internal combustion engine, used in compact, lightweight form in everything from motorcycles to chainsaws to outboard motors, and in large sizes for marine propulsion and power generation. It first provides an overview of the principles, characteristics, applications, and history of the two-stroke cycle engine, followed by descriptions and evaluations of various types of models that have been developed to predict aspects of two-stroke engine operation.

Devices to Improve the Performance of a Conventional Two-stroke Spark Ignition Engine

Devices to Improve the Performance of a Conventional Two-stroke Spark Ignition Engine PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 19

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Book Description
This paper presents research efforts made in three different phases with the objective of improving the fuel economy of and reducing exhaust emissions from conventional, carbureted, two-stroke spark ignition (SI) engines, which are widely employed in two-wheel transportation in India. A review concerning the existing two-stroke engine technology for this application is included. In the first phase, a new scavenging system was developed and tested to reduce the loss of fresh charge through the exhaust port. In die second phase, the following measures were carried out to improve the combustion process: (1) using an in-cylinder catalyst, such as copper, chromium, and nickel, in the form of coating; (2) providing moderate thermal insulation in the combustion chamber, either by depositing thin ceramic material or by metal inserts; (3) developing a high-energy ignition system; and (4) employing high-octane fuel, such as methanol, ethanol, eucalyptus oil, and orange oil, as a blending agent with gasoline. Based on the effectiveness of the above measures, an optimized design was developed in the final phase to achieve improved performance. Test results indicate that with an optimized two-stroke SI engine, the maximum percentage improvement in brake thermal efficiency is about 31%, together with a reduction of 3400 ppm in hydrocarbons (HC) and 3% by volume of carbon monoxide (CO) emissions over the normal engine (at 3 kW, 3000 rpm). Higher cylinder peak pressures (3-5 bar), lower ignition delay (2-4°CA)° and shorter combustion duration (4-10 °CA) are obtained. The knock-limited power output is also enhanced by 12.7% at a high compression ratio (CR) of 9:1. The proposed modifications in the optimized design are simple, low-cost and easy to adopt for both production and existing engines.

Assessment of Fuel Economy Technologies for Light-Duty Vehicles

Assessment of Fuel Economy Technologies for Light-Duty Vehicles PDF Author: National Research Council
Publisher: National Academies Press
ISBN: 0309216389
Category : Science
Languages : en
Pages : 373

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Book Description
Various combinations of commercially available technologies could greatly reduce fuel consumption in passenger cars, sport-utility vehicles, minivans, and other light-duty vehicles without compromising vehicle performance or safety. Assessment of Technologies for Improving Light Duty Vehicle Fuel Economy estimates the potential fuel savings and costs to consumers of available technology combinations for three types of engines: spark-ignition gasoline, compression-ignition diesel, and hybrid. According to its estimates, adopting the full combination of improved technologies in medium and large cars and pickup trucks with spark-ignition engines could reduce fuel consumption by 29 percent at an additional cost of $2,200 to the consumer. Replacing spark-ignition engines with diesel engines and components would yield fuel savings of about 37 percent at an added cost of approximately $5,900 per vehicle, and replacing spark-ignition engines with hybrid engines and components would reduce fuel consumption by 43 percent at an increase of $6,000 per vehicle. The book focuses on fuel consumption-the amount of fuel consumed in a given driving distance-because energy savings are directly related to the amount of fuel used. In contrast, fuel economy measures how far a vehicle will travel with a gallon of fuel. Because fuel consumption data indicate money saved on fuel purchases and reductions in carbon dioxide emissions, the book finds that vehicle stickers should provide consumers with fuel consumption data in addition to fuel economy information.

the turbo-supercharged spark ignition engine with variable compression ratio

the turbo-supercharged spark ignition engine with variable compression ratio PDF Author: e.t. vincent
Publisher:
ISBN:
Category :
Languages : en
Pages : 82

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Book Description


Investigation of 1-dimensional Analysis for Two-stroke Spark Ignition (SI) Engine

Investigation of 1-dimensional Analysis for Two-stroke Spark Ignition (SI) Engine PDF Author: Zabidi Mohamad
Publisher:
ISBN:
Category : Internal combustion engines
Languages : en
Pages : 65

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Book Description
The project is based on two-stroke engine. The two-stroke engine will be used as the testing engine that the performances can be determined. The objective of this project is to investigate and analysis the performance of two-stroke engine using a 1-Dimensional (engine gas dynamic) software. From this objective, the outcome of the project can be determined by using the 1-Dimensional software. The outcomes that need to be determined from this project are the performances of the engine. The 1-Dimensional software that was using in this project is GT-Power. GT-Power is using to model and simulate the two-stroke engine. First, the parameters of the two-stroke engine had been measured and then the modeling of the two-stroke engine had been built and simulated. After simulation process, the performances of the engines can be obtained right away. There are many information that can be taken from the GT-Power after simulating the engine but for analyzing, only several data had been chosen. Those data are pressure for scavenged port, in-cylinder and exhaust port, temperature for scavenged port, in-cylinder and exhaust port, brake power, brake torque, indicated mean effective pressure and brake specific fuel consumption. All of this information had been analyzed and the optimum engine speed had been determined at 1500 RPM to 2500 RPM because in this range, the brake torque and brake power is maximum while the brake specific fuel consumption also low.

Turbocharging of Spark Ignition Engines

Turbocharging of Spark Ignition Engines PDF Author: Sunny Narayan
Publisher: LAP Lambert Academic Publishing
ISBN: 9783659778476
Category :
Languages : en
Pages : 52

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Book Description
Turbochargers are commonly being used on diesel engines for many years. In contrast only a few petrol engines have been turbocharged until recently and it is unlikely that a large fraction of the world petrol engine will be so equipped. Most of the vehicles in the Indian automobile market continue to utilize turbocharged diesel engines compared to gasoline engines. However, experts are of the opinion that turbo growth, in the future would not be confined to diesel sector alone. There would be a tremendous growth in demand of Gasoline downsizing, in next few years. The whole industry is drifting away from naturally aspirated engines & companies like Mercedes & Volkswagen are planning to come up with commercial turbo-charged, downsized gasoline engines. Thus according to experts if automotive sector, as a whole, is growing at 2%, then turbocharger industry is growing at about 10%, with maximum growth rates coming from turbos incorporated in gasoline engines. The present project aims at analyzing the various benefits associated with "Turbo charging in SI engines" and designing it for future automotive applications.

A Turbocharged Spark-ignition Engine for Low Exhaust Emissions

A Turbocharged Spark-ignition Engine for Low Exhaust Emissions PDF Author: John F. Schweikert
Publisher:
ISBN:
Category :
Languages : en
Pages : 278

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Book Description


Internal Combustion Engines

Internal Combustion Engines PDF Author: Rowland S. Benson
Publisher: Pergamon
ISBN:
Category : Internal combustion engines
Languages : en
Pages : 250

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Book Description


Liquid Piston Engines

Liquid Piston Engines PDF Author: Aman Gupta
Publisher: John Wiley & Sons
ISBN: 1119323231
Category : Technology & Engineering
Languages : en
Pages : 273

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Book Description
The only book available on liquid piston engines, covering the design, application, maintenance, troubleshooting, and advances in the technology. Whether used in irrigation, cooling nuclear reactors, pumping wastewater, or any number of other uses, the liquid piston engine is a much more efficient, effective, and "greener" choice than many other choices available to industry. Especially if being used in conjunction with solar panels, the liquid piston engine can be extremely cost-effective and has very few, if any, downsides or unwanted side effects. As industries all over the world become more environmentally conscious, the liquid piston engine will continue growing in popularity as a better choice, and its low implementation and operational costs will be attractive to end-users in developing countries. This is the only comprehensive, up-to-date text available on liquid piston engines. The first part focuses on the identification, design, construction and testing of the liquid piston engine, a simple, yet elegant, device which has the ability to pump water but which can be manufactured easily without any special tooling or exotic materials and which can be powered from either combustion of organic matter or directly from solar heating. It has been tested, and the authors recommend how it might be improved upon. The underlying theory of the device is also presented and discussed. The second part deals with the performance, troubleshooting, and maintenance of the engine. This volume is the only one of its kind, a groundbreaking examination of a fascinating and environmentally friendly technology which is useful in many industrial applications. It is a must-have for any engineer, manager, or technician working with pumps or engines.