Main Article Content
Abstract
Sebagai perusahaan penyewaan helikopter, PT. XYZ diwajibkan melaksanakana positioning flight ke berbagai tempat/ bandar udara. Mayoritas konsumen PT. XYZ adalah perusahaan yang bergerak di bidang industri minyak bumi dan gas yang beroperasi di remote area. Dalam melaksanakan positioning flight ke remote area memerlukan waktu beberapa hari karena jarak yang jauh dan daya jelajah yang terbatas dari helikopter Sikorsky S-76 dan juga melewati atmosfir korosif. Pada panduan perawatan mesin Arriel 1S1, jika mesin beroperasi di kondisi atmosfir korosif diharuskan melaksanakan perawatan rinsing pada mesin setelah penerbangan terakhir pada hari tersebut. PT. XYZ harus mempersiapkan alat pencuci kompresor untuk mesin dibeberapa bandar udara tempat helikopter bermalam. Hal ini menyebabkan biaya tambahan untuk penyewaaan maupun pengiriman alat tersebut. Tujuan dirancangnya alat pencuci untuk kompresor mesin adalah: untuk mengurangi biaya tambahan penerbangan dari penyediaan alat tersebut. Hasil perhitungan: dibutuhkan tangki stainless steel 304 dengan ketebalan 1,5 mm, pipa flexible PVC dengan ketebalan 2,75 mm dan pompa torak diaphragm (memiliki kemampuan self-priming) dengan daya 60 watt (12 vdc, 5 A)
– As a air charter company, PT. XYZ required to carry out positioning flights to different places/ airports. The majority of PT. XYZ consumers are oil and gas company which operating in remote areas. Performing positioning flight to the remote areas take several days because of the distance, Sikorsky S-76 helicopter endurance and also passes the saline atmosphere. In the Arriel 1S1 engine maintenance manual, if the engine is operated in a saline atmosphere required to carry out engine rinsing after the last flight of the day. PT. XYZ must prepare engine compressor washer in some airports where the helicopter remain overnight. This leads to additional costs for rent and delivery of the equipment. The purpose of designed engine compressor washer are: to reduce the additional costs from the provision of the equipment. The results of calculations: it needs stainless steel 304 tank with a thickness of 1.5 mm, flexible PVC pipe with a thickness of 2.75 mm and the piston diaphragm pump (has the ability to self-priming) with a power of 60 watts (12 vdc, 5 A)
Keywords
Article Details

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
References
- Featherstone, R., & Nalluri, C. (1988). Civil Engineering Hydraulics. London: BSP Profesional Books.
- Frankel, M. (1996). Facility Piping Systems Handbook. United States of America: McGraw-Hill.
- French, R. H. (1987). Open Channel Hydraulics. New York: McGraw Hill Book Company.
- Hammer, M., & Hammer, Jr., M. (2012). Water and Wastewater Technology (7th ed.). New Jersey: Pearson Education International.
- Harrington. (n.d.). Engineering Handbook for Industrial Plastic Piping Systems. Industrial Plastic.
- Hicks, T., & Edward, T. (1971). Pump Application Engineering. United States of America: McGraw-Hill.
- Hurst, K. (2006). Engineering Design Principles. Kidlington: Elsevier Ltd.
- Inkindo. (2016). Pedoman Standar Minimal 2016. Jakarta: Inkindo.
- Institute, N. D. (n.d.). Design Guidelines for The Selection and Use of Stainless Steel.
- Joko, T. (2010). Unit Air Baku Dalam Sistem Penyediaan Air Minum. Yogyakarta: Graha Ilmu.
- Karassik, I. J., Messina, J. P., Cooper, P., & Heald, C. C. (2001). Pump Handbook (3rd ed.). United States of America: McGraw-Hill.
- Khurmi, R., & Gupta, J. (2005). Machine Design (1st Multicolour ed.). Ram Nagar: Eurasia Publishing Huse (Pvt.) Ltd.
- Kodoatie, R. (2002). Hidrolika Terapan. Yogyakarta: Andi.
- Krist, T. (1979). Fundamentele Pneumatiek. Wurzburg: Vogel.
- Nayyar, M. (1992). Piping Handbook (6th ed.). United States of America: McGraw-Hill.
- Orianto, M., & Pratikto, W. (1989). Mekanika Fluida I. Yogyakarta: BPFE.
- Patty, O. (1994). Tenaga Air. Jakarta: Erlangga.
- Raswari. (1986). Teknologi dan Perencanaan Sistem Perpipaan (1st ed.). Jakarta: Universitas Indonesia.
- Safran Helicopter Engines. (2016, September 10). Retrieved from http://www.safran-helicopter-engines.com/helicopter-engines/lower-1000-shp/arriel/arriel-1s1
- Saskatchewan Environment. (2004). Water Pipeline Design Guidelines. Regina.
- Sherwood, D., & Whistance, D. (1991). The Piping Guide. San Francisco: Syenteck Inc.
- Utomo, Y. (2016). "Equinox" Jelas Punya Dampak, tetapi Apakah Seseram di Pesan Berantai? Retrieved March 30, 2016, from http://www.lapan.go.id
- Weaver, R. (2000). Desain Pipa Proses. Jakarta: Universitas Indonesia.
- Wilks, E. (2001). Industrial Polymers Handbook. Weinheim: Wiley-VCH.
- www.engineeringtoolbox.com. (2016). TheEngineeringToolBox. Retrieved March 18, 2016, from The Engineering ToolBox: http://www.engineeringtoolbox.com/flow-velocity-water-pipes-d_385.html
References
Featherstone, R., & Nalluri, C. (1988). Civil Engineering Hydraulics. London: BSP Profesional Books.
Frankel, M. (1996). Facility Piping Systems Handbook. United States of America: McGraw-Hill.
French, R. H. (1987). Open Channel Hydraulics. New York: McGraw Hill Book Company.
Hammer, M., & Hammer, Jr., M. (2012). Water and Wastewater Technology (7th ed.). New Jersey: Pearson Education International.
Harrington. (n.d.). Engineering Handbook for Industrial Plastic Piping Systems. Industrial Plastic.
Hicks, T., & Edward, T. (1971). Pump Application Engineering. United States of America: McGraw-Hill.
Hurst, K. (2006). Engineering Design Principles. Kidlington: Elsevier Ltd.
Inkindo. (2016). Pedoman Standar Minimal 2016. Jakarta: Inkindo.
Institute, N. D. (n.d.). Design Guidelines for The Selection and Use of Stainless Steel.
Joko, T. (2010). Unit Air Baku Dalam Sistem Penyediaan Air Minum. Yogyakarta: Graha Ilmu.
Karassik, I. J., Messina, J. P., Cooper, P., & Heald, C. C. (2001). Pump Handbook (3rd ed.). United States of America: McGraw-Hill.
Khurmi, R., & Gupta, J. (2005). Machine Design (1st Multicolour ed.). Ram Nagar: Eurasia Publishing Huse (Pvt.) Ltd.
Kodoatie, R. (2002). Hidrolika Terapan. Yogyakarta: Andi.
Krist, T. (1979). Fundamentele Pneumatiek. Wurzburg: Vogel.
Nayyar, M. (1992). Piping Handbook (6th ed.). United States of America: McGraw-Hill.
Orianto, M., & Pratikto, W. (1989). Mekanika Fluida I. Yogyakarta: BPFE.
Patty, O. (1994). Tenaga Air. Jakarta: Erlangga.
Raswari. (1986). Teknologi dan Perencanaan Sistem Perpipaan (1st ed.). Jakarta: Universitas Indonesia.
Safran Helicopter Engines. (2016, September 10). Retrieved from http://www.safran-helicopter-engines.com/helicopter-engines/lower-1000-shp/arriel/arriel-1s1
Saskatchewan Environment. (2004). Water Pipeline Design Guidelines. Regina.
Sherwood, D., & Whistance, D. (1991). The Piping Guide. San Francisco: Syenteck Inc.
Utomo, Y. (2016). "Equinox" Jelas Punya Dampak, tetapi Apakah Seseram di Pesan Berantai? Retrieved March 30, 2016, from http://www.lapan.go.id
Weaver, R. (2000). Desain Pipa Proses. Jakarta: Universitas Indonesia.
Wilks, E. (2001). Industrial Polymers Handbook. Weinheim: Wiley-VCH.
www.engineeringtoolbox.com. (2016). TheEngineeringToolBox. Retrieved March 18, 2016, from The Engineering ToolBox: http://www.engineeringtoolbox.com/flow-velocity-water-pipes-d_385.html
