STUDI KERUSAKAN HIGH PRESSURE TURBINE VANE PESAWAT ATR72-500 WINGS AIR DI BANDARA SULTAN SYARIF KASIIM II PEKANBARU

  • Muhammad Desmico Ekta W Universitas Muhammadiyah Riau
  • Abrar Ridwan Universitas Muhammadiyah Riau
Keywords: chloride, sulfur, The thermal efficiency of gases, Brayton cycle, High pressure turbine vane

Abstract

The aircraft can fly as there is a thrust from the engine that causes the aircraft to have speed. The components of the aircraft engines are compressor, combustion chamber, turbine and propeller. High pressure turbine vanes is a component in the Hot section or turbine section that serves to direct the hot gas flow from the combustion chamber to the turbine. The purpose to be achieved in this research is to analyze and find out the cause of high pressure turbine vane damage and know the gas engine efficiency PW127. Cause of damage due to treatment not done according to the schedule until the phenomenon of overtemperature after combustion chamber and the content of impurities in the water laundering results. After the Brayton cycle calculation is obtained the temperature value of the turbine entry 1563oC (1836 K). These results exceed the turbine inlet temperature according to manual maintenance engine. Based on laboratory test, the content of 250 mg/m2 sulfur and 1800 mg/m2 chloride is obtained. This content causes damage by erosion or corrosion of high pressure turbine vane components.  The value of gas efficiency is 42% according to the outside Air tempetarure. The thermal efficiency of gases will increase with increasing temperature conditions.

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References

[1] UU Republik Indonesia nomor 1 tahun 2009 tentang Penerbangan
[2] Sukadana, I Gusti Ketut,2015, Teori turbin gas dan jet propulsi, Buku ajar ISBN, Universitas Udayana, Bali
[3] ATR Training Centre, 2008, ATR training manual ATA 00 General familirization, Toulouse, Airbus company
[4] Whitney, and Pratt, 2018, Type-Certificate data sheet PW100 engine series, European Aviation Safety Agency, issue 04, No.041
[5] ATR Training Centre, 2008, ATR training manual ATA 70 powerplant, Toulouse, Airbus company
[6] Pratt & Whitney Canada, 2010, Engine Maintenance Manual, Pratt & Whitney Canada
[7] ATR Training Centre, 2008, ATR training manual ATA 61 propeller, Toulouse, Airbus company
[8] UTC Aerospace System, 2018, Hamilton Sundstrand's maintenance manual, United state America, Hamilton Sundstrand's corporation
[9] Pratt & Whitney Canada, 1997, Large PW100 Training Manual, Pratt & Whitney Canada
[10] Moran, Michael J dan Howard ,2006, Fundamentals of engineering thermodynamics, Fifth edition, Scotprint, East Lothian
[11] Federal Aviation Administration, 2012, Aviation maintenance technician handbook, Volume 1, U.S. Department of transportation, Oklahoma city.
[12] Pratt & Whitney Canada, 2010, Ilustrated part catalogue, Pratt & Whitney Canada
[13] Akuan, Abrianto, 2008, Analisa kegagalan logam, TechnoMET UNJANI
[14] Utomo, Budi, 2009, Jenis korosi dan penanggulangannya, KAPAL, Vol. 6, No.2.
[15] ATR Training Centre, 2008, ATR training manual ATA 28 fuel system, Toulouse, Airbus company
[16] DGCA-Indonesia, 2000, Civil aviation safety regulations part 43, Jakarta, Keputusan menteri perhubungan dan telekomunikasi
[17] ATR72-212, 2018, Continous airworthiness maintenance program, Jakarta, Wings Air.
[18] Suparman, 2013, Analisa kerusakan di high pressure nozzle guide vanes turbine tipe adour mk.871-4 pesawat tempur hawk 109/209 di skadron udara 12,Jurnal Surya Teknika, Vol. 1, No. 1
[19] Rathore, Mahesh M, 2010, Thermal engineering, Privateedition, McGraw hill, New Delhi
[20] Widyastuti, Alfina dan Wawan Aries, 2012, Analisa termodinamika pengaruh ambient temperature terhadap unjuk kerja turbin gas TEG 6210 dan TEG 6220 (Tipe Centaur 40 4501) pada tambora fiend oper 12,Jurnal Surya Teknika, Vol. 1, No.

[21] Yudi,A, 2010, Review dan analisa karakteristik dan penyebab kerusakan sudu turbin gas, Jurnal Mechanical, Vol. 1, No. 1.

[22] Ruhyat,Nanang, 2010, Pendekatan analisa thermodinamika pada mesin turbin gas pesawat terbang turbofan, Jurnal Sinergi, Vol. 14, No. 1.
[23] Sunarto, dan Heru Santoso, 2020, Buku Saku Analisis Pareto, First edition, Poltekkes Surabaya, Magetan
Published
2020-12-13
How to Cite
Desmico Ekta W, M., & Ridwan, A. (2020). STUDI KERUSAKAN HIGH PRESSURE TURBINE VANE PESAWAT ATR72-500 WINGS AIR DI BANDARA SULTAN SYARIF KASIIM II PEKANBARU. Jurnal Surya Teknika, 7(1), 104-110. https://doi.org/10.37859/jst.v7i1.2357
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