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氟利昂预冷双氮膨胀液化工艺动态仿真与验证 被引量:7

Dynamic simulation and verification of nature gas liquefaction process with dual nitrogen expanders and R22 pre-cooling
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摘要 为了研究带预冷的双氮膨胀液化工艺的动态特性,在小型撬装液化实验装置基础上建立相应的工艺动态模型,对电磁阀的流量系数进行微调,以适应蒸发器热负荷的变化;对压缩机控制与启动、预冷机组能量调节、LNG节流控制等实验工况进行仿真,并与实验结果进行对比。结果表明:氮气压缩机的控制与启动与实验测试结果一致,验证了压缩机控制动态模型的准确性;预冷机组能量调节受电磁阀流量系数的影响。LNG节流阀串级控制有效克服了温度响应的滞后,提高了控制质量。动态仿真可优化天然气液化工艺设计,指导设备的操作和运行,提高装置的安全性。 A dynamic simulation model based on a small-scale natural gas liquefaction facility was established in order tostudy the dynamic characteristics of the natural gas liquefaction process with dual nitrogen expanders and pre-cooling. Differentprocesses involved in the liquefaction were simulated and compared with experimental results, including the compressorstarting and control,the energy regulation of the pre-cooling system and L N G throttle control. The results show- that the simulationresults of the compressor starting and control process were consistent with the experimental results, verifying the effectivenessof the dynamic model. The performance of the pre-cooling system for energy regulation can be affected by the flowcoefficient of the electromagnetic valve, which needs to be adjusted to adapt to the thermal load of the evaporator. The delayof temperature response can be effectively reduced by L N G throttle cascade control, which can increase the control quality.The results show,that,through the dynamic simulation,the design of the natural gas liquefaction process can be optimized,and the operation of the equipment can be well supervised for improved safety control.
出处 《中国石油大学学报(自然科学版)》 EI CAS CSCD 北大核心 2016年第4期146-153,共8页 Journal of China University of Petroleum(Edition of Natural Science)
基金 国家自然科学基金项目(51504278) 山东省优秀中青年科学家科研奖励基金项目(BS2014ZZ009) 青岛市应用基础研究计划项目(14-2-4-81-jch)
关键词 天然气液化工艺 动态仿真 控制 节流阀 能量调节 natural gas liquefaction process dynamic simulation control throttle energy regulation
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