Gas Turbine Stocks List

Related ETFs - A few ETFs which own one or more of the above listed Gas Turbine stocks.

Gas Turbine Stocks Recent News

Date Stock Title
May 2 HAYN Haynes International falls as sale to Acerinox gets Austria phase 2 review
May 2 YPF Should Value Investors Buy YPF Sociedad Anonima (YPF) Stock?
May 1 MG MISTRAS Group Inc (MG) Reports Strong First Quarter 2024 Results, Surpassing Revenue Estimates
May 1 MG Mistras Non-GAAP EPS of $0.07 in-line, revenue of $184.4M beats by $9.23M
May 1 MG MISTRAS Announces First Quarter 2024 Results
May 1 WWD U.S., Saudi Arabia are said to be close to signing defense treaty
May 1 WWD Woodward, Inc. (NASDAQ:WWD) Q2 2024 Earnings Call Transcript
May 1 CETX Cemtrex announces pricing of $10M upsized underwritten public offering
May 1 YPF Here is What to Know Beyond Why YPF Sociedad Anonima (YPF) is a Trending Stock
May 1 CETX Cemtrex, Inc. Announces Pricing of $10 Million Upsized Underwritten Public Offering
Apr 30 TVE Tennessee Valley Authority PARRS A 2029 (TVE) Q2 2024 Earnings Call Transcript
Apr 30 WWD Why Woodward Stock Is Soaring Higher Today
Apr 30 TVE Tennessee Valley Authority PARRS A 2029 2024 Q2 - Results - Earnings Call Presentation
Apr 30 WWD Woodward (WWD) Q2 Earnings & Revenues Top Estimates, Rise Y/Y
Apr 30 TVE Tennessee Valley Authority reports Q2 results
Apr 30 TVE TVA Reports Second Quarter Fiscal Year 2024 Financial Results
Apr 30 WWD Q2 2024 Woodward Inc Earnings Call
Apr 30 WWD Woodward Inc (WWD) Q2 2024 Earnings Call Transcript Highlights: Strong Performance and ...
Apr 29 WWD Woodward, Inc. (WWD) Q2 2024 Earnings Call Transcript
Apr 29 YPF Why YPF Sociedad Anonima (YPF) Outpaced the Stock Market Today
Gas Turbine

A gas turbine, also called a combustion turbine, is a type of continuous combustion, internal combustion engine. There are three main components:

An upstream rotating gas compressor;
A downstream turbine on the same shaft;
A combustion chamber or area, called a combustor, in between 1. and 2. above.A fourth component is often used to increase efficiency (turboprop, turbofan), to convert power into mechanical or electric form (turboshaft, electric generator), or to achieve greater power to mass/volume ratio (afterburner).
The basic operation of the gas turbine is a Brayton cycle with air as the working fluid. Fresh atmospheric air flows through the compressor that brings it to higher pressure. Energy is then added by spraying fuel into the air and igniting it so the combustion generates a high-temperature flow. This high-temperature high-pressure gas enters a turbine, where it expands down to the exhaust pressure, producing a shaft work output in the process. The turbine shaft work is used to drive the compressor; the energy that is not used for shaft work comes out in the exhaust gases that produce thrust. The purpose of the gas turbine determines the design so that the most desirable split of energy between the thrust and the shaft work is achieved. The fourth step of the Brayton cycle (cooling of the working fluid) is omitted, as gas turbines are open systems that do not use the same air again.
Gas turbines are used to power aircraft, trains, ships, electrical generators, pumps, gas compressors, and tanks.

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