Study of Firemen Respirator Fixed Inflatable Device Rapid Inflation Methods Optimization

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Abstract:

The use of air pressure pump for local pressurization in pressure air system is an important application of energy saving technology of pneumatic. The firemen respirator fixed inflatable this basic principle device utilization system design. Due to the different inflation affects firefighters respirator fixed inflatable device energy consumption and filling speed, in this paper, the energy consumption by comparing different charging mode , and the charging mode is optimized to achieve rapid fire breathing bottle inflated and improve firefighter respirator fixed inflatable device efficiency.

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Advanced Materials Research (Volumes 962-965)

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1621-1626

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June 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] Zheng J, Ye J, Yanga J, Tang P, Zhao L, Kern M. An optimized control method for a high utilization ratio and fast filling speed in hydrogen refuelling stations[J]. International Journal of Hydrogen Energy , 2010(3): 301~307.

DOI: 10.1016/j.ijhydene.2009.07.001

Google Scholar

[2] Thomas G, Goulding J, Munteam C. Measurement approval and verification of CNG dispensers[R]. NWML KT11 Report; (2002).

Google Scholar

[3] Shipley E. Study of natural gas vehicles during the fast fills process[D]. Thesis for Master of Science, 2002. College of Engineering and Mineral Resources at West Virginia University.

Google Scholar

[4] Farzaneh-Gord M, Eftekhari H, Hashemi S, Magrebi M, Dorafshan M. The effect of initial conditions on filling process of CNG cylinders[C]. The second International conference on Modelling, Simulation, And Applied optimization, Abu Dhabi, UAE, March 24, 27 1-277.

Google Scholar

[5] Farzaneh-Gord M. Compressed natural gas single reservoir filling process[J]. Gas International Engineering and Management, 2008; 48(6): 16-18.

Google Scholar

[6] Farzaneh-Gord M, Hashemi SH, Farzaneh-Kord A. Thermodynamics analysis of cascade reservoirs filling process of natural gas vehicle cylinders[J]. World Applied Sciences Journal 2008; 5(2): 143-149.

Google Scholar

[7] Farzaneh-Gord M, Deymi Dasht-bayaz M, Rahbari HR. Studying effects of storage types on performance of CNG filling stations[J]. Journal of Natural Gas Science and Engineering 2011(3): 33-40.

DOI: 10.1016/j.jngse.2011.02.001

Google Scholar

[8] Liu YL, Zhao YZ, Zhao L, Li X, Chen HG, Zhang LF, et al. Experimental studies on temperature rise within a hydrogen cylinder during refueling[J]. International Journal of Hydrogen Energy, 2010(35): 262~272.

DOI: 10.1016/j.ijhydene.2009.04.042

Google Scholar