Now showing items 21-40 of 1634

    • Sandberg, Mark; Baldassarre, Leonardo; Baumann, Urs; Kuzdzal, Mark; Moore, Jeffrey; Pettinato, Brian; Sorokes, James (Turbomachinery Laboratory, Texas A&M Engineering Experiment Station, 2018)
      Suggested Topics: Meeting current rotordynamics stability standards CO2 Compressors High flow coefficient/Mach number impellers Coupling and alignment impacts on asymmetric rotordynamics Sour gas/Chloride implications ...
    • Baldassarre, Leonardo; Baumann, Urs; Wisler, Scott; Wagner, Nortbert; Al Khateeb, Eyad; Al-Ghamdi, Ali (Turbomachinery Laboratory, Texas A&M Engineering Experiment Station, 2015)
    • Udayashankar, P. (Texas A&M University. Turbomachinery Laboratories, 2011)
    • Sudardjat, Isham; Ganesh, Sankar (Turbomachinery Laboratory, Texas A&M Engineering Experiment Station, 2015)
      Contents: Background Machine description Data analysis: • First Visit • Second Visit Initial Conclusions Machine Inspection results Final Conclusions Actions Taken Lessons Learned
    • Huebner, Michael; Buck, Gordon; Azibert, Henri (Turbomachinery Laboratory, Texas A&M Engineering Experiment Station, 2015)
      API 682 is the leading document for mechanical seals in petrochemical, chemical, and pipeline services worldwide. It has combined the aspects of seal design, testing, standardization, and applications to provide the users ...
    • Huebner, Michael; Buck, Gordon; Azibert, Henri (Turbomachinery Laboratory, Texas A&M Engineering Experiment Station, 2018)
      API 682 is the leading document for mechanical seals in petrochemical, chemical, and pipeline services worldwide. It has combined the aspects of seal design, testing, standardization, and applications to provide the users ...
    • Carbonetto, Ben; Hoch, Greg (Texas A&M University. Turbomachinery Laboratories, 1999)
      Hot gas expander flow path erosion costs the refining industry millions of dollars per shutdown in labor, material, and lost production to replace eroded components. With erosion being the life limiting factor, there is ...
    • Corcoran, Joseph P.; Lyle, Douglas; McCormack, Patrick; Ortel, Tim (Texas A&M University. Turbomachinery Laboratories, 2007)
      Over the last 50 years industrial gas turbines have advanced significantly. Horsepower has increased 200 percent (and even higher) within the same envelope. Improvements in efficiencies and reliability (more operating time ...
    • Van Buskirk, Jon; Talabisco, George (Turbomachinery Laboratory, Texas A&M Engineering Experiment Station, 2017)
    • Multiple authors (Texas A&M University. Turbomachinery Laboratories, 2007)
    • Multiple authors (Texas A&M University. Turbomachinery Laboratories, 2009)
    • Toni, Lorenzo; Gatta, Giuseppe; Moyroud, François; Guglielmo, Alberto; Rubino, Dante Tommaso; Ramakrishnan, Kishore (Turbomachinery Laboratories, Texas A&M Engineering Experiment Station, 2016)
      Great interest is being paid by Oil & Gas industry to the design of high speed and high pressure ratio centrifugal compressors. Static and dynamic stresses are becoming higher and, under critical conditions, aerodynamic ...
    • Konig, Sven; Petry, Nico; Wagner, Norbert (Texas A&M University. Turbomachinery Laboratories, 2009)
      During the past decades studies of aeroacoustic phenomena in turbomachinery were mainly carried out by research institution. The aerospace industry was the main driver in this field since noise issues gained more and more ...
    • Haught, Jeff (Texas A&M University. Turbomachinery Laboratories, 2010)
      The purpose of this tutorial is to compare Industrial, aeroderivative, and light industrial gas turbine characteristics and their application. It will also provide some example economic comparison for different applications ...
    • Thompson, W. E. (Texas A&M University. Gas Turbine Laboratories, 1972)
      The transformation between work and other forms of energy is accomplished in turbomachinery. The ability of a turbine to produce work when handling a compressible fluid and when taking either its axial or radial configuration ...
    • Boyce, Meherwan P.; Meher-Homji, Cyrus B. (Texas A&M University. Turbomachinery Laboratories, 1982)
      High speed turbomachinery plays a critical role in today's petrochemical industry. There are very high penalty costs associated with nonavailability and catastrophic failure of critical unspared trains. Additionally the ...
    • Jummonville, Jigger; Yates, Kevin (Texas A&M University. Turbomachinery Laboratories, 2003)
      Magnetic bearings continue to be successfully applied throughout industry. As the population of machines using magnetic bearings grows, so does the interest in the appropriate predictive and preventive maintenance (PPM) ...
    • Ganesan, S.T. (Texas A&M University. Turbomachinery Laboratories, 2004)
      Air Compressor Site Performance Testing: Apparent Simplicity and Practical Complexity: The performance of a steam turbine driven air compressor deteriorated by 35% over a span of four months. This Case Study elaborates ...
    • Lages, F. P. (Texas A&M University. Gas Turbine Laboratories, 1979)
      This paper discusses some of the latest design concepts and materials currently being utilized in the design and manufacture of noise control equipment for gas turbine engines. Some related areas which are also discussed ...
    • Jackson, Charles (Texas A&M University. Gas Turbine Laboratories, 1980)
      This paper covers one of seven techniques in alignment being presented at an alignment tutorium at Texas A&M University’s Ninth Turbomachinery Symposium. The specific procedure will be covered only, without delving into ...