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Frequency Conversion Controlled Vapor Recovery System by Temperature and Flow Signals: Model Design and Parameters Optimization

机译:频率转换控制蒸汽回收系统通过温度和流量信号:模型设计和参数优化

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Current gasoline-gas vapor recovery system is incomplete, for it cannot adjust the vapor-liquid ratio automatically due to the change of working temperature. To solve this problem, this paper intends to design a new system and optimize its parameters. In this research, variables control method is used for tests while linear regression is used for data processing. This new system moves proportion valve away and adds a DSP control module, a frequency conversion device, and a temperature sensor. With this research, it is clearly reviewed that the vapor-liquid ratio should remains 1.0 from 0°C to 20°C as its working temperature, be changed into 1.1 from 20°C to 25°C, be changed into 1.2 from 25°C to 30°C, and be changed into 1.3 when the working temperature is above 30°C.
机译:目前的汽油 - 气体蒸汽回收系统不完整,因为它不能由于工作温度的变化而自动调节气液比。为了解决这个问题,本文打算设计一个新系统并优化其参数。在本研究中,变量控制方法用于测试,而线性回归用于数据处理。该新系统将比例阀门移动并添加DSP控制模块,变频装置和温度传感器。通过该研究,清楚地审查了蒸汽液体比应保持1.0从0°C至20°C,以其工作温度从20℃变​​为1.1,从25°变为1.2当工作温度高于30°C时,C至30°C,并改为1.3。

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