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2017 | OriginalPaper | Buchkapitel

The Research About Explosive Gas Atmosphere and Explosion Proof Technique of Waste Gas Treatment System in Nuclear Power Plant

verfasst von : Dan Xu, Hua Huang, Jing-Jie Bo

Erschienen in: Nuclear Power Plants: Innovative Technologies for Instrumentation and Control Systems

Verlag: Springer Singapore

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Abstract

Hydrogen waste gas has been produced during normal operation of pressurized water reactor nuclear power plant and sent to the atmospheric environment after treatment in confined space areas. In this process, hydrogen explosive atmosphere is formed and it becomes a threat to the production safety. This article analyzed the potential release resource and explosive environment in the wastes treatment buildings, and presented a few of I&C explosion proof techniques applicable to the nuclear power plant. Commonly used explosion proof techniques of I&C design include flameproof enclosure type and intrinsically safe type. Flameproof enclosure technique focuses on the integrity while intrinsically safe technique emphasizes the compatibility of equipment installation environment and all the apparatuses in the system. The analyses show that the explosive gas atmosphere can be classified as secondary zone and application of different explosion proof techniques should take consideration of different aspects.

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Literatur
1.
Zurück zum Zitat GB 50058-2014 Code for design of electrical installations in explosive atmosphere. GB 50058-2014 Code for design of electrical installations in explosive atmosphere.
2.
Zurück zum Zitat SY/T 6671-2006 Recommended practice for classification of locations for electrical installations at petroleum facilities classified as class I, zone 0, zone 1, and zone 2. SY/T 6671-2006 Recommended practice for classification of locations for electrical installations at petroleum facilities classified as class I, zone 0, zone 1, and zone 2.
3.
Zurück zum Zitat IEC 60079-1-2007 Explosive atmospheres-part 1: Equipment protection by flameproof enclosures “d”. IEC 60079-1-2007 Explosive atmospheres-part 1: Equipment protection by flameproof enclosures “d”.
4.
Zurück zum Zitat IEC 60079-11-2006 Explosive atmospheres-part 11: Equipment protection by intrinsic safety “i”. IEC 60079-11-2006 Explosive atmospheres-part 11: Equipment protection by intrinsic safety “i”.
5.
Zurück zum Zitat SUN, J. P., WANG, Z. L., LIU, X. Y., ZHANG, L. Y., & CUI, L. Z. (2010). The distributed parameters and discharge characteristic of communication and signal cable. Journal of China Coal Society, 7, 040. SUN, J. P., WANG, Z. L., LIU, X. Y., ZHANG, L. Y., & CUI, L. Z. (2010). The distributed parameters and discharge characteristic of communication and signal cable. Journal of China Coal Society, 7, 040.
6.
Zurück zum Zitat IEC 60079-25-2010 Explosive atmospheres-part 25: Intrinsically safe electrical systems. IEC 60079-25-2010 Explosive atmospheres-part 25: Intrinsically safe electrical systems.
7.
Zurück zum Zitat Li, S.L. (2000). The application of safety barrier in intrinsically safe electrical systems. Automation in Petro-Chemical Industry, (1), 6–7. Li, S.L. (2000). The application of safety barrier in intrinsically safe electrical systems. Automation in Petro-Chemical Industry, (1), 6–7.
Metadaten
Titel
The Research About Explosive Gas Atmosphere and Explosion Proof Technique of Waste Gas Treatment System in Nuclear Power Plant
verfasst von
Dan Xu
Hua Huang
Jing-Jie Bo
Copyright-Jahr
2017
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-10-3361-2_6