8 ideal vs real operation Training Courses in

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$30.00

10990

Power Cycle Components/Processes Ideal vs Real Operation Analysis

Author: Gordan Feric

Category: Online Information Technology Training > Other

The power cycle components/processes (compression, combustion and expansion) are presented in this course material.In the presented power cycle components/processes analysis, air is used as the working fluid. For compression and expansion, the technical performance of mentioned power cycle compo ... More

Locations:   Alabama, Maine, Oregon, Alaska, Maryland, Pennsylvania, Arizona, Massachusetts, Rhode Island, Arkansas, Michigan, South Carolina, California, Minnesota, South Dakota, Colorado, Mississippi, Tennessee, Connecticut, Missouri, Texas, Delaware, Montana, Utah, Florida, Nebraska, Vermont, Georgia, Nevada, Virginia, Hawaii, New Hampshire, Washington, Idaho, New Jersey, West Virginia, Illinois, New Mexico, Wisconsin, Indiana, New York, Wyoming, Iowa, North Carolina, Puerto Rico, Kansas, North Dakota, Guam, Kentucky, Ohio, US Virgin Islands, Louisiana, Oklahoma

Keywords: Compression, Combustion, Expansion, ideal vs real operation

$25.00

10978

Power Cycles Ideal vs Real Operation Analysis

Author: Gordan Feric

Category: Online Engineering Training > Other

The simple and basic power cycles (Brayton Cycle, Otto Cycle and Diesel Cycle) are presented in this course material.In the presented power cycle analysis, air is used as the working fluid. For each power cycle, the thermal efficiency derivation is presented with a simple mathematical approach.A ... More

Locations:   Alabama, Maine, Oregon, Alaska, Maryland, Pennsylvania, Arizona, Massachusetts, Rhode Island, Arkansas, Michigan, South Carolina, California, Minnesota, South Dakota, Colorado, Mississippi, Tennessee, Connecticut, Missouri, Texas, Delaware, Montana, Utah, Florida, Nebraska, Vermont, Georgia, Nevada, Virginia, Hawaii, New Hampshire, Washington, Idaho, New Jersey, West Virginia, Illinois, New Mexico, Wisconsin, Indiana, New York, Wyoming, Iowa, North Carolina, Puerto Rico, Kansas, North Dakota, Guam, Kentucky, Ohio, US Virgin Islands, Louisiana, Oklahoma

Keywords: Brayton Cycle, Otto Cycle, Diesel Cycle, ideal vs real operation

$20.00

10967

Otto Cycle Ideal vs Real Operation Analysis

Author: Gordan Feric

Category: Online Engineering Training > Other

In this course material, the open, simple Otto Cycle used for stationary power generation is considered. The Otto Cycle thermal efficiency is presented only for the air as the working fluid.The thermal efficiency derivation is presented with a simple mathematical approach.The Otto Cycle is prese ... More

Locations:   Alabama, Maine, Oregon, Alaska, Maryland, Pennsylvania, Arizona, Massachusetts, Rhode Island, Arkansas, Michigan, South Carolina, California, Minnesota, South Dakota, Colorado, Mississippi, Tennessee, Connecticut, Missouri, Texas, Delaware, Montana, Utah, Florida, Nebraska, Vermont, Georgia, Nevada, Virginia, Hawaii, New Hampshire, Washington, Idaho, New Jersey, West Virginia, Illinois, New Mexico, Wisconsin, Indiana, New York, Wyoming, Iowa, North Carolina, Puerto Rico, Kansas, North Dakota, Guam, Kentucky, Ohio, US Virgin Islands, Louisiana, Oklahoma

Keywords: Otto Cycle, ideal vs real operation

$20.00

10989

Combustion Ideal vs Real Operation Analysis

Author: Gordan Feric

Category: Online Engineering Training > Other

Combustion is a process of active oxidation of combustible compounds such as:carbon, hydrogen and sulfur.Therefore, combustion is a chemical reaction.High amount of heat is released during the combustion process.Combustion has a high degree of importance in engineering. Complete combustion at co ... More

Locations:   Alabama, Maine, Oregon, Alaska, Maryland, Pennsylvania, Arizona, Massachusetts, Rhode Island, Arkansas, Michigan, South Carolina, California, Minnesota, South Dakota, Colorado, Mississippi, Tennessee, Connecticut, Missouri, Texas, Delaware, Montana, Utah, Florida, Nebraska, Vermont, Georgia, Nevada, Virginia, Hawaii, New Hampshire, Washington, Idaho, New Jersey, West Virginia, Illinois, New Mexico, Wisconsin, Indiana, New York, Wyoming, Iowa, North Carolina, Puerto Rico, Kansas, North Dakota, Guam, Kentucky, Ohio, US Virgin Islands, Louisiana, Oklahoma

Keywords: Combustion, ideal vs real operation

$25.00

11011

Compressible Flow Components Ideal vs Real Operation Analysis

Author: Gordan Feric

Category: Online Engineering Training > Other

The subsonic nozzle, diffuser and thrust analysis is presented only for the air as the working fluid.The technical performance of mentioned compressible flow components is presented with a given relationship between pressure and temperature as a function of Mach Number and isentropic nozzle and dif ... More

Locations:   Alabama, Maine, Oregon, Alaska, Maryland, Pennsylvania, Arizona, Massachusetts, Rhode Island, Arkansas, Michigan, South Carolina, California, Minnesota, South Dakota, Colorado, Mississippi, Tennessee, Connecticut, Missouri, Texas, Delaware, Montana, Utah, Florida, Nebraska, Vermont, Georgia, Nevada, Virginia, Hawaii, New Hampshire, Washington, Idaho, New Jersey, West Virginia, Illinois, New Mexico, Wisconsin, Indiana, New York, Wyoming, Iowa, North Carolina, Puerto Rico, Kansas, North Dakota, Guam, Kentucky, Ohio, US Virgin Islands, Louisiana, Oklahoma

Keywords: Nozzle, Diffuser and Thrust, ideal vs real operation

$20.00

10937

Brayton Cycle (Gas Turbine) Ideal vs Real Operation for Power Application Analysis

Author: Gordan Feric

Category: Online Engineering Training > Other

In this course material, the open, simple Brayton Cycle used for stationary power generation is considered. The Brayton Cycle thermal efficiency is presented only for the air as the working fluid.The thermal efficiency derivation is presented with a simple mathematical approach.The Brayton Cycle ... More

Locations:   Alabama, Maine, Oregon, Alaska, Maryland, Pennsylvania, Arizona, Massachusetts, Rhode Island, Arkansas, Michigan, South Carolina, California, Minnesota, South Dakota, Colorado, Mississippi, Tennessee, Connecticut, Missouri, Texas, Delaware, Montana, Utah, Florida, Nebraska, Vermont, Georgia, Nevada, Virginia, Hawaii, New Hampshire, Washington, Idaho, New Jersey, West Virginia, Illinois, New Mexico, Wisconsin, Indiana, New York, Wyoming, Iowa, North Carolina, Puerto Rico, Kansas, North Dakota, Guam, Kentucky, Ohio, US Virgin Islands, Louisiana, Oklahoma

Keywords: Brayton Cycle, ideal vs real operation

$25.00

11274

Energy Conversion Ideal vs Real Operation Analysis Webinar

Author: Gordan Feric

Category: Online Academic Training > Energy Conversion

In this webinar, the engineering students and professionals get familiar with the simple and basic power cycles, power cycle components/processes and compressible flow and their T - s, p - V and h - T diagrams, ideal vs real operation and major performance trends when air is considered as the wo ... More

Keywords: Power Cycles, power cycle components/processes, compressible flow, ideal vs real operation

$30.00

10966

Brayton Cycle (Gas Turbine) Ideal vs Real Operation for Propulsion Application Analysis CE 1 Hour Quiz

Author: Gordan Feric

Category: Online Engineering Training > Other

A ten (10) question quiz for the Brayton Cycle (Gas Turbine) Ideal vs Real Operation for Propulsion Application Analysis course.  This quiz is intended for Professional (Licensed) Engineers and upon successful completion of the quiz, the student will get 1 hour of credit. Furthermore, upon succ ... More

Locations:   Alabama, Maine, Oregon, Alaska, Maryland, Pennsylvania, Arizona, Massachusetts, Rhode Island, Arkansas, Michigan, South Carolina, California, Minnesota, South Dakota, Colorado, Mississippi, Tennessee, Connecticut, Missouri, Texas, Delaware, Montana, Utah, Florida, Nebraska, Vermont, Georgia, Nevada, Virginia, Hawaii, New Hampshire, Washington, Idaho, New Jersey, West Virginia, Illinois, New Mexico, Wisconsin, Indiana, New York, Wyoming, Iowa, North Carolina, Puerto Rico, Kansas, North Dakota, Guam, Kentucky, Ohio, US Virgin Islands, Louisiana, Oklahoma

Keywords: Brayton Cycle, ideal vs real operation