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A THERMO-HYDRAULIC TOOL FOR AUTOMATIC VIRTUAL HAZOP EVALUATION

机译:THERMO-HYDRAULIC工具自动虚拟HAZOP评价

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摘要

Development of complex lubrication systems in the Oil&Gas industry has reached high levels of competitiveness in terms of requested performances and reliability. In particular, the use of HazOp (acronym of Hazard and Operability) analysis represents a decisive factor to evaluate safety and reliability of plants. The HazOp analysis is a structured and systematic examination of a planned or existing operation in order to identify and evaluate problems that may represent risks to personnel or equipment. In particular, P&ID schemes (acronym of Piping and Instrument Diagram according to regulation in force ISO 14617) are used to evaluate the design of the plant in order to increase its safety and reliability in different operating conditions. The use of a simulation tool can drastically increase speed, efficiency and reliability of the design process. In this work, a tool, called TTH lib (acronym of Transient Thermal Hydraulic Library) for the 1-D simulation of thermal hydraulic plants is presented. The proposed tool is applied to the analysis of safety relevant components of compressor and pumping units, such as lubrication circuits. Opposed to the known commercial products, TTH lib has been customized in order to ease simulation of complex interactions with digital logic components and plant controllers including their sensors and measurement systems. In particular, the proposed tool is optimized for fixed step execution and fast prototyping of Real Time code both for testing and production purposes. TTH lib can be used as a standard SimScape-Simulink library of components optimized and specifically designed in accordance with the P&ID definitions. Finally, an automatic code generation procedure has been developed, so TTH simulation models can be directly assembled from the P&ID schemes and technical documentation including detailed informations of sensor and measurement system.
机译:开发复杂的润滑系统石油行业已经达到了高水平的竞争力的要求性能和可靠性。使用HazOp(危险和可操作性的缩写)代表一个决定性因素评价分析植物的安全性和可靠性。是一种结构化和系统化的分析检查现有或计划中的操作为了识别和评估可能的问题代表风险人员或设备。特别P&ID计划(缩写的管道和根据监管仪表图ISO 14617)用于评价设计工厂为了增加它的安全在不同操作条件下的可靠性。使用仿真工具可以大大的提高速度、效率和可靠性设计过程。自由(缩写的瞬态热液压一维模拟热库)水力发电厂。应用于安全相关的分析吗等组件的压缩机和抽油机作为润滑电路。商业产品,t自由定制为了缓解复杂的模拟与数字逻辑组件和交互装置包括传感器和控制器测量系统。工具是固定的步骤执行和优化实时的快速原型代码的测试和生产的目的。用作标准SimScape-Simulink库优化和专门设计的组件按照P&ID定义。自动代码生成过程发达,所以t仿真模型直接从P&ID方案和组装技术文档包括详细的信息的传感器和测量系统。

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