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1.
基于危险工艺装置设置安全联锁系统的研究   总被引:1,自引:0,他引:1  
针对危险工艺装置设置安全联锁系统(SIS)问题进行分析和研究,提出在装置建设和改造中,应合理设置独立的SIS,并根据生产装置的安全度等级选择合适的联锁回路,并具有一定的冗余能力,以避免由于硬件随机失效或系统故障时造成联锁功能无法执行;指出SIS在设计时应遵循独立原则、故障安全型原则、共享原则、可靠性原则等。研究结果表明:SIS可提高化工装置的本质安全度,保障生产过程的安全、稳定运行,最大限度地减少由于过程失控造成的人身伤害和设备损坏。  相似文献   

2.
安全仪表系统的应用及发展   总被引:6,自引:1,他引:5  
探讨安全仪表系统在过程工业中的必要性与重要性,以ISA/S84.01安全仪表系统生命周期为基本框架,介绍安全仪表系统的基本组成和生命周期各阶段的主要工作,阐述安全仪表系统与过程控制系统的异同。研究安全仪表系统设计过程中风险分析与安全完整性水平等的关键技术;总结了目前安全仪表系统所呈现出的新特点、新趋势;指出安全仪表系统未来发展的方向;同时认为安全仪表系统作为一种有效的安全保障措施,应当以风险与危害分析为基础,按照最低合理可行原则,根据对象的不同特点,确定适当的安全完整性水平。该应用研究成果对于安全仪表系统的设计与应用具有一定的指导意义。  相似文献   

3.
功能安全的定量评定技术已成为确保石化行业安全生产的重要手段。针对石化行业普遍存在的功能安全问题,笔者以国际电工学会(IEC)专门制定的功能安全评定标准IEC61508及IEC61511为指导,介绍其标准制定的背景、目的、体系结构以及如何利用标准开展石化行业安全联锁系统(Safety Instrumented System,SIS)的安全与误跳车定量分析。通过对SIS开展定量安全评估,可发现联锁功能存在的安全不足与误跳车现象,对于提高我国石化行业安全生产水平具有重要的促进作用,标准中有关寿命周期功能安全管理方法及重要的工程经验也对提高我国石化安全生产水平具有借鉴作用。  相似文献   

4.
The paper discusses the design errors in chemical process industry (CPI) by analyzing major equipment related accident cases from Failure Knowledge Database (FKD). The aim is to recognize the contribution of design to chemical process accidents and to evaluate the time of occurrence of the errors in a plant design project. The analysis of accident cases found out that the contribution of design to accidents is very significant: 79% of accident cases analyzed were contributed by design errors. The most critical design errors were poor layout (17%), insufficient consideration of chemical reactivity and incompatibility (16%) and incorrectly chosen process conditions (16%). The design errors were initiated at basic (32%), detailed (32%) and preliminary (22%) design phases of the project. Errors in fundamental aspects of chemical processes e.g. route selections are more severe (as compared to others errors class) and might creates many similar errors in later phases of design project. Based on the accident information gathered, a straightforward point-to-look list for error detection and elimination was suggested for process lifecycle stages.  相似文献   

5.
The arrangement of components plays a key role in the performance of complex Safety Instrumented Systems (SIS), in which a SIS logic solver is interlocked with other logic solvers, to share a final element, for instance. The position of the components and the way they are utilized affects the reliability characteristics, such as the Probability of Failure on Demand (PFD), Spurious Trip Rate (STR), architectural sensitivity and model uncertainty. This case study uses quantitative and qualitative approaches to elaborate on various aspects of component arrangement in complex SIS. Numerous simplified models are analyzed; new classification is introduced for SIS components based on their response to demand; a set of guidelines are developed for SIS architecture design, with a focus on component arrangement; and the use of these guidelines is demonstrated in a real-life example, where an existing turbine SIS is modified to incorporate a new over-speed protection system. The simplified models and the turbine upgrade project are also used to explain the issue of unknowns and uncertainties in reliability analysis and how these issues can be addressed in SIS architecture by optimizing component arrangement.  相似文献   

6.
安全仪表系统的开发与要求   总被引:1,自引:1,他引:0  
综述安全仪表系统的发展过程;对其主要组成、特点以及其各自要求进行研讨;给出安全仪表系统开发的简化流程;探讨安全仪表系统的经济性分析和仪表选择方法;对安全仪表系统整体生命周期中的计划编制、设计、实施、运行、维护和确认等各阶段活动的关键要求进行了讨论和研究。该研究对安全仪表系统的深入理解有指导作用,并为安全仪表系统的分析、设计、实施、运行和维护等活动提供参考。  相似文献   

7.
为改善跳水池水质的化学安全性和生物学稳定性,保障运动员、教练员以及工作人员身体健康,结合长春市泅渡馆跳水池,阐述了基于pH和ORP的池水处理自动控制系统,确定了自动控制系统的控制参数及其控制范围,为健康跳水池池水处理系统的自动控制系统的设计提供了参考。  相似文献   

8.
Adapting the requirements of IEC 61511 to a batch system can be frustrating, particularly for multi-product units. While a Safety Instrumented System (SIS) for continuous operation is often a straightforward detect-decide-act loop, implementing a SIS for a batch system may involve multiple safety functions, time- or state-dependence, intricate calculations, or complex installations. Relationships between the SIS elements and the basic process control system (BPCS) must be tightly managed, providing both for the safety of the unit and its ability to operate without spurious trips or other hindrances. These issues are further complicated when multiple products requiring different functions or setpoints are produced in the same SIS-protected batch unit.This paper will discuss the challenges particular to the design, operation, and maintenance of a SIS in multi-product batch operations and present practical options for successfully resolving the concerns. A key insight into successful adaptation is treating the batch SIS as a “permission” system for the BPCS to operate. Although many items can be addressed through clever engineering practices, sustainable success relies on proactive, robust management of the safety lifecycle.  相似文献   

9.
施工过程中人因差错控制效率分析   总被引:1,自引:1,他引:0  
以一个钢筋砼单筋梁受弯构件正截面承载力失效概率为例,通过数值模拟发现:检查抽样率为100%的首次检查对控制人因差错非常有效,提高取样率可以有效减少和降低人因差错的发生及其影响程度,但随检查次数增加检查效率直线下降。当对各种工序进行比较细致的检查时,适当提高结构参数设计值可有效防止由较难检查出来的微小人因差错引起的结构失效。显然,质检方法、检查次数、取样率和提高结构参数设计值对人因差错控制效率的提高是十分重要的;人因差错控制效率与检查人力、物力投入成正比。上述结论对合理控制施工过程中人因差错的方案选择具有一定的现实意义。  相似文献   

10.
11.
Integration of a human-machine interface (HMI) with hazard and operability (HAZOP) analysis is proposed in this work. This concept can potentially lead to the identification of some unexpected deviations, and radically decreases the time necessary for hazard identification. A continuous biodiesel production was simulated. This can be divided into two cases, covering both conventional and reactive distillation. Soybean oil (trioleic, trilinoleic and tripalmitic) at 1000 kg/h as raw material is converted to 99 wt% pure biodiesel. The HMI was designed to improve these processes by combining automatic HAZOP analysis. With this approach, users can receive sufficient information from the simulation to analyze the optimum operation and safety. Severity levels are also provided to classify the actions in the process. Severity levels 1 and 2 are concerned with operating conditions, which are 58-64 °C, and 50-150 kPa. If the analysis shows severity level 3, the safety instrumented system (SIS) will automatically manage the operation in order to reduce/restrain the amount of damage at this level. This proposed system could minimize the damage and also improve the overall quality of the process.  相似文献   

12.
为分析LNG加气站安全仪表系统的功能完备性与可靠性,以3座典型的三级LNG加气站为研究对象,全面开展安全仪表功能辨识、安全完整性等级(SIL)定级与验证,进而提出针对性的改进建议。结果表明:3座LNG加气站的安全仪表系统均存在功能不完备、设备组件缺少失效数据的问题;为满足风险控制要求,三级LNG加气站需设置15个安全仪表功能,其中1个应达到SIL2等级,14个应达到SIL1等级;LNG加气站的安全仪表系统应选用获得功能安全认证的设备组件,并在设计阶段开展SIL评估工作。研究结果可为今后LNG加气站安全仪表系统的设计与管理提供重要参考。  相似文献   

13.
IEC 61508和IEC 61511等标准针对连续工艺装置提出了安全仪表系统安全完整性等级评估方法。但对于间歇装置的SIL评估,受人因因素影响水平并未明确,且没有提出相应计算模型。以某六氟磷酸锂间歇生产装置典型SIS为例,采用HAZOP结合LOPA方法对其进行风险分析,在明确间歇生产装置存在人员中毒、窒息及燃烧爆炸风险的基础上,确定并验证其安全仪表系统的SIL,再依据间歇生产装置人工依赖性高,即部分安全仪表系统未接入自动联锁且需人工手动触发的特点,建立人因可靠性模型,来分析人因可靠性对安全仪表系统SIL的影响,并进行改进研究。研究结果表明:人因因素对安全仪表系统SIL有显著影响;可通过改变SIS元件冗余结构、测试策略并结合改进人因管理措施来提高SIL。  相似文献   

14.
基于HAZOP方法的加氢工艺自动化安全控制   总被引:3,自引:3,他引:0  
加氢工艺是国家安全生产监督管理总局首批重点监管的危险化工工艺之一,需要对其进行自动化安全控制。从反应物料、加氢反应等对加氢工艺过程的危险性进行了初步分析。基于HAZOP方法,以加氢反应器为分析对象,深入探讨了反应温度、压力、氢气流量、惰性气体、冷却水、搅拌等方面出现偏差的原因、后果及安全对策措施,这些偏差包括无、多、少。根据加氢工艺HAZOP分析结果,并且在对大量的涉及加氢工艺的化工企业实际调查研究的基础上,结合众多化工安全专家的实践经验,重点从流量、压力、温度等主要偏差提出了安装流量自动控制控制器、超压报警自动控制、超温报警自动控制、可燃气体浓度检测报警探头、搅拌器电流报警等自动化安全控制方案。  相似文献   

15.
为了优化确定化工装置安全仪表系统(SIS)安全完整性等级(SIL),分析了现有确定SIL的不足,针对化工装置的失效数据缺失和不确定性特点,提出模糊事故树-保护层(FFTA-LOPA)模型计算安全仪表系统SIL。以某低密度聚乙烯反应釜为例,建立了该反应釜爆炸事故树,运用模糊理论定量分析顶上事件发生的概率,最终确定其安全仪表系统安全完整性等级为SIL 1。结果表明:该方法结合两种风险分析理论,分析结果与实际和理论统计结果符合性较好,具有一定地准确性和实用性,可以为定量确定系统SIL提供理论指导。  相似文献   

16.
Safety integrity level (SIL) verification of functional safety fieldbus communication is an essential part of SIL verification of safety instrumented system (SIS), and it requires quantifying residual error probability (RP) and residual error rate of function safety communication. The present quantification method of residual error rate uses RP of cyclic redundancy check (CRC) to approximately replace the total RP of functional safety communication. Since CRC only detects data integrity-related errors and CRC has intrinsically undetected error, some other residual errors are not being considered. This research found some residual errors of the present quantification method. Then, this research presents an extended new approach, which takes the found residual errors into account to determine more comprehensive and reasonable RP and residual error rate. From perspective of the composition of safety message, this research studies RPs of those controlling segments (sequence number, time expectation, etc.) to cover the found residual errors beyond CRC detection coverage, and the influences of insertion/masquerade errors and time window on RP are investigated. The results turn out these residual errors, especially insertion/masquerade errors, may have a great influence on quantification of residual error rate and SIL verification of functional safety communication, and they should be treated seriously.  相似文献   

17.
18.
本文针对以往在火炸药热爆炸参数测试过程中,因试样与加热介质之间的热交换所带来的较大测试误差,建立了跟踪控温下的近似绝热测试系统,研制了本测试系统的中枢仪器──四通道数显温度调节自动跟踪仪。通过本测试系统的建立,使得对热爆炸参数的测试更具有科学性和实用性。  相似文献   

19.
The accident rate in the chemical process industry (CPI) has not been decreasing although majority of accident causes have been identified and could have been prevented by using existing knowledge. These recurring accidents show that the existing knowledge has not been used effectively. In this paper, accident knowledge learned from earlier accident analyses are utilized to predict the common design errors during chemical plant design. An accident prevention approach throughout process design life cycle is proposed for a safer design consideration where designers are guided to identify common design errors, accident contributors and critical points to look for. The accident prevention approach has been applied to analyze the BP Texas City Refinery Explosion and Fire tragedy.  相似文献   

20.
The paper discusses the origin of chemical process equipment accidents by analyzing past accident cases available in the Failure Knowledge Database (FKD). The design and operation errors of the process equipment that caused the accidents were analyzed together with their time of occurrence. It was found that design errors contributed to 79% of accidents while the rest were only due to human and organizational errors in the operation stage and external factors. The most common types of errors were related to layout, organizational errors in the operation stage, considerations of reactivity and incompatibility, and wrongly selected process conditions (each approx. 13% of total accident contributors). On average there were about 2 design errors per accident. The timing of the errors was quite evenly distributed between various lifecycle stages. Nearly half (47%) of the errors were made in process design-oriented stages, one fourth (26%) in detailed engineering, and one fifth (20%) in operation. In addition, the most frequent design and operation errors for each equipment type were identified. A points-to-look-for list was created for each equipment type, showing also the typical time of occurrence of the error. The knowledge of type and timing of design errors can be utilized in design to focus the hazard analysis in each stage on the most error-prone features of design.  相似文献   

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