GB/T 37170-2018 in English
VALIDTechnical code for safety of stationary gas engine
- Issued on:2018-12-28
- Implemented on:2019-07-01
- File Format:PDF
- Delivery:Within 1 day
$109.00
| Standard No: | GB/T 37170-2018 |
| Document status: | VALID |
| Title in English: | Technical code for safety of stationary gas engine |
| Title in Chinese: | 固定式燃气发动机安全技术规范 |
| Language: | English |
| File Format: | Electronic (PDF) |
| Delivery: | Within 1 day |
| Issued on: | 2018-12-28 |
| Implemented on: | 2019-07-01 |
| ICS Classification: | 27.020-Internal combustion engines |
| Chinese Classification: | J91-Internal combustion engine and auxiliary equipment |
| Professional Classification: | GB-National Standard |
| Related Keywords: | safety technical specifications
stationary gas engines stationary gas engine introduction national standard stationary gas engines background gas engines |
| Related Topics: | gas engine
gas engine Engine Test Technology GBT37170 GB/T 37170-2018 Engine DTG technology Specifications for gas generators |
《GB/T 37170-2018固定式燃气发动机安全技术规范》由TC177(全国内燃机标准化技术委员会)归口,主管部门为中国机械工业联合会。
Introduction
National Standard of the People's Republic of China GB/T 37170—2018
In-depth Interpretation of Safety Technical Specifications for Stationary Gas Engines
Background and Significance of Standard Formulation
With the widespread application of gas engines in power generation, compressors and other fields, their safety issues have received increasing attention. GB/T 37170—2018 "Safety Technical Specifications for Stationary Gas Engines" aims to ensure the safety of engines during design, manufacturing and use, and prevent mechanical, electrical, thermal hazards and other potential risks.
Comparative analysis of standard frameworks
| Dimensions | GB/T 37170—2018 | Comparison with international standards |
|---|---|---|
| Safety requirements | Covering various aspects such as starting system, shutdown system, and control device. | In line with international standards such as EN 983, it focuses on explosion-proof and fire-proof design. |
| Technical indicators | Clearly define key technical parameters such as voltage, pressure, and temperature. | Coordinated with GB 50058—2014 "Design Specifications for Electrical Installations in Explosive Atmospheres". |
| Protection measures | Emphasis on protection against mechanical, electrical and thermal hazards. | Comply with internationally accepted safety design concepts and focus on user operating experience. |
Interpretation and implementation suggestions for core clauses
5.10 Explosion-proof design requirements
Key data:When the engine is used in a potentially explosive environment, it must comply with the GB20800 series of standards.
Implementation suggestions:
- Select explosion-proof electrical equipment and ensure that the voltage does not exceed 24V.
- Install flame arresters and safety valves in gas pipelines.
- Regularly check the conductivity of the flange connection to ensure that the resistance value is less than 0.03Ω.
5.7 Protection design requirements
Key data:The protection device must prevent the danger of mechanical parts ejection and high-pressure fluid injection.
Implementation suggestions:
- Set up a rigid protective cover around the moving parts of the engine.
- Ensure that there is enough space between the protection device and the equipment to avoid friction.
- Regularly check the strength and sealing performance of the protection device.
Technical evolution analysis of standards
From GB/T 37170-2018, it can be seen that the safety technical specifications for stationary gas engines are developing in the following directions:
- Intelligent:Introduce automatic monitoring and alarm systems to improve the safety factor.
- Modular:Optimize the equipment structure design for easy installation and maintenance.
- Environmental protection: Strengthen waste gas treatment and explosion-proof design to reduce environmental risks.
Implementation suggestions
To ensure the effective implementation of GB/T 37170-2018, it is recommended to take the following measures:
- Training: Conduct regular safety training for operators and maintenance personnel.
- Inspection: Establish a regular safety inspection system to ensure that the equipment meets the standard requirements.
- Optimization: According to actual use, gradually optimize the equipment protection design.

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