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Optimum Number of Stages of the New Multi-Stage
Abjad Pertama Judul Tulisan
&ABDEFGHIJKLMNOPQRSTUW semuanya Daftar
05 16
Al-Arba'a, 28 Rabi Al-Thani 1428 H - 08:05:34
oleh: Ardiyansyah



Optimum Number of Stages of the New Multi-Stage Symmetrical Wobble Plate Compressor
Optimum Number of Stages of the New Multi-Stage oleh Ardiyansyah
Ardiyansyah 1*, Md. Nor Musa2 , Wan Ali Wan Mat2, Ainullotfi Abdul Latif4
Optimum Number of Stages of the New Multi-Stage oleh Ardiyansyah
Faculty of Mechanical Engineering
Universiti Teknologi Malaysia, 81310 UTM Skudai, Johor, Malaysia
Optimum Number of Stages of the New Multi-Stage oleh Ardiyansyah
Abstract
Optimum Number of Stages of the New Multi-Stage oleh Ardiyansyah
A new multistage symmetrical wobble plate compressor had been developed. Working pressure is from 3 bar to 206 bar and to compress natural gas for vehicle (NGV). This paper describes on how to get the optimum number of stages of this new Multi-stage symmetrical wobble plate compressor. There are several parameters involved such as load of compressor, torque, work, pressure ratio, and finally the overall size of the compressor. In this design, number of stages start from 3 (three) to 7 (seven). The optimum number of stages optimum for capacity 10 m3/hr at for pressure ratio of 2.27 the optimum number of stages is five certain pressure ratio could be obtained.
Optimum Number of Stages of the New Multi-Stage oleh Ardiyansyah
Keywords:
Symmetrical Wobble Plate Compressor, Wobble Plate, Compressor, High Pressure, NGV
Optimum Number of Stages of the New Multi-Stage oleh Ardiyansyah
Introduction
Optimum Number of Stages of the New Multi-Stage oleh Ardiyansyah
For allowable number of stages chosen and fixed clearance at certain pressure ratio, discharge temperature and efficiency could be calculated. If the calculated discharge temperature in one stage is too high, therefore more stages are required. During preliminary sizing, the isentropic discharge temperature could be used, but if a certain number of stages create a marginal situation, the discharge temperature should be estimated more accurately. As a first estimate, it can be assumed that equal pressure ratios are used for all stages. In practice it is often better to take a higher-pressure ratio in the low-pressure ratio stages and unload the more critical higher-pressure stages a little.
If stages number is to high, the pressures losses in the valve and piping will offset the gains from inter cooling and the efficiency would be reduced. The cost of the compressor to do a given task usually increases as the number of stages is increased because of the additional compressor cylinder, coolers and piping needed.
In this case, a symmetrical wobble plate compressor could be used to compress a natural gas. An operating conditions are suction pressure 50 psi (3 bar), discharge pressure 3000 psi (206 bar), and capacity 10Nm3/hr. There are several parameters involve in getting the optimum number of stages i. e., load of compressor, torque, work, pressure ratio, and finally is overall size of the compressor.
In this design process the number of design stages will be start from 3 (three) until 7 (seven) and the optimum number of stages could be obtained at certain pressure ratio.
Optimum Number of Stages of the New Multi-Stage oleh Ardiyansyah
Conclusion
Based on the analysis, we conclude that the optimum number of stages for capacity 10 m3/hr is 5.
Optimum Number of Stages of the New Multi-Stage oleh Ardiyansyah
Optimum Number of Stages of the New Multi-Stage oleh Ardiyansyah
Optimum Number of Stages of the New Multi-Stage oleh Ardiyansyah
Reference
Optimum Number of Stages of the New Multi-Stage oleh Ardiyansyah
[1] Ardiyansyah Syahrom., Md. Nor Musa., and Ainullotfi Adb Latif. Wobble Design and Development of a Compressor for Natural Gas Vehicle Refuelling. International Conference Engineering Design 2005. August 15-18, 2005. Melbourne: ICED. 2005.
[2] Ardiyansyah Syahrom., Md. Nor Musa., and Ainullotfi Adb Latif. Wobble Plate Compressor for Natural Gas Vehicle Refueling. Asia Pacific Natural Gas Vehicles Associations Comference &Exhibition. July 26-28, 2005. Kuala Lumpur: ANGVA. 2005. 40.
[3] Ardiyansyah Syahrom., Md. Nor Musa., and Wan Ali Wan Mat. Pembangunan Pemampat Simetri Berperingkat Jenis Plat Wobal Untuk Gas Asli. Malaysian Science and Technology Congress. September 23-25, 2003. Kuala Lumpur: COSTAM. 2003. 237.
[4] A. longo Giovanni., and Gasparella Andrea (2003). Unsteady state analysis of the compression cycle of a hermetic reciprocating compressor. International journal of refrigeration 26.
[5] Eastop. T.D., and McConkey. (1995). Applied Thermodynamics For Engineering Technologists. 5th ed. New York: John Wiley & sons, INC.
[6] Harvey Nix. (2001). Compressor Analysis. In: Paul C. Hanlon. Compressor Handbook. New York: McGraw-Hill. 5.1-5.34.
[7] Hiroshi Toyada., and Masaharu Hiraga. (1990). Historical Review of The Wobble Plate and Scroll Type Compressors. SAE Congress Paper.
[8] Kenji Tojo, Kunihiko Takao, Youzou Nakamura, kenichi Kawasima and Yukio Takahashi. (1988). A Study on The Kinematics of A Variable Displacement Compressor For Automotive Air Conditioning. 1988 International Compressor Engineering Conference at Purdue. July 18-21-1988. West Lafayette: Purdue University. 496-504.
[9] Roycas N. Brown (1986). Compressor Selection and Sizing. Houston: Gulf Publishing Company.
[10] Shimizu Shigemi., Shimizu Hidehiko., and Terauchi Kiyoshi (1989). Wobble plate type compressor. (US4869651).
[11] Takahiro Nishikawa., hirosi Nishikawa., Tomio Obokata., and Tsuneaki Ishima. (2000). A Study for Improvement on High Pressure Multistage Reciprocating Compressor. International Compressor Engineering Conference at Purdue University. July 25-28, 2000. West Lafayette: Purdue University. 105-112.
[12] Woolatt Derek. (2001). Compressor Theory. In: Paul C. Hanlon. Compressor Handbook. New York: McGraw-Hill. 1.1-1.15.
[13] Y.-C. Ma., and O.-K. Min (2001). Pressure Calculation in Compressor Cylinder by A Modified New Helmholtz Modeling. Journal of sound and vibration. 243(5): 775-776.
[14] Zair Asrar Ahmad., Ardiyansyah Syahrom., Md. Nor Musa., and Ainullotfi Adb Latif (2003). Kajian Tegasan Pada Pemampat Plat-Wobal Simetri Baru. Malaysian Science and Technology Congress. September 23-25, 2003. Kuala Lumpur: COSTAM. 2003. 237
Optimum Number of Stages of the New Multi-Stage oleh Ardiyansyah


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