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Date of download: 10/27/2017 Copyright © ASME. All rights reserved. From: Modeling and Simulation of the Steady-State and Transient Performance of a Three-Way Pressure Reducing Valve J. Dyn. Sys., Meas., Control. 2016;138(3): doi: / Figure Legend: Three-way pressure reducing valve
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Date of download: 10/27/2017 Copyright © ASME. All rights reserved. From: Modeling and Simulation of the Steady-State and Transient Performance of a Three-Way Pressure Reducing Valve J. Dyn. Sys., Meas., Control. 2016;138(3): doi: / Figure Legend: Schematic diagram of the studied three-way pressure reducing valve
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Date of download: 10/27/2017 Copyright © ASME. All rights reserved. From: Modeling and Simulation of the Steady-State and Transient Performance of a Three-Way Pressure Reducing Valve J. Dyn. Sys., Meas., Control. 2016;138(3): doi: / Figure Legend: Control piston motion
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Date of download: 10/27/2017 Copyright © ASME. All rights reserved. From: Modeling and Simulation of the Steady-State and Transient Performance of a Three-Way Pressure Reducing Valve J. Dyn. Sys., Meas., Control. 2016;138(3): doi: / Figure Legend: Second throttling opening area a2(x)
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Date of download: 10/27/2017 Copyright © ASME. All rights reserved. From: Modeling and Simulation of the Steady-State and Transient Performance of a Three-Way Pressure Reducing Valve J. Dyn. Sys., Meas., Control. 2016;138(3): doi: / Figure Legend: Hydraulic circuit of the test stand
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Date of download: 10/27/2017 Copyright © ASME. All rights reserved. From: Modeling and Simulation of the Steady-State and Transient Performance of a Three-Way Pressure Reducing Valve J. Dyn. Sys., Meas., Control. 2016;138(3): doi: / Figure Legend: Experimental results of the transient response of the DCV throttling opening area av(xv)
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Date of download: 10/27/2017 Copyright © ASME. All rights reserved. From: Modeling and Simulation of the Steady-State and Transient Performance of a Three-Way Pressure Reducing Valve J. Dyn. Sys., Meas., Control. 2016;138(3): doi: / Figure Legend: Measured and simulated results of the Pr(Pc) characteristics of the studied valve at different values of the spring presetting
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Date of download: 10/27/2017 Copyright © ASME. All rights reserved. From: Modeling and Simulation of the Steady-State and Transient Performance of a Three-Way Pressure Reducing Valve J. Dyn. Sys., Meas., Control. 2016;138(3): doi: / Figure Legend: Measured and simulated results of the Qr(Pr) characteristics of the studied valve at different values of the spring presetting
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Date of download: 10/27/2017 Copyright © ASME. All rights reserved. From: Modeling and Simulation of the Steady-State and Transient Performance of a Three-Way Pressure Reducing Valve J. Dyn. Sys., Meas., Control. 2016;138(3): doi: / Figure Legend: Measured and simulated results of the Qt (Pr) characteristics of the studied valve at different values of the spring presetting
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Date of download: 10/27/2017 Copyright © ASME. All rights reserved. From: Modeling and Simulation of the Steady-State and Transient Performance of a Three-Way Pressure Reducing Valve J. Dyn. Sys., Meas., Control. 2016;138(3): doi: / Figure Legend: Measured and simulated results of the transient response of the studied valve for approximately one turn setting of the spring at different positions of the first loading orifice
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Date of download: 10/27/2017 Copyright © ASME. All rights reserved. From: Modeling and Simulation of the Steady-State and Transient Performance of a Three-Way Pressure Reducing Valve J. Dyn. Sys., Meas., Control. 2016;138(3): doi: / Figure Legend: Measured and simulated results of the transient response of the studied valve for approximately two turns setting of the spring at different positions of the first loading orifice
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Date of download: 10/27/2017 Copyright © ASME. All rights reserved. From: Modeling and Simulation of the Steady-State and Transient Performance of a Three-Way Pressure Reducing Valve J. Dyn. Sys., Meas., Control. 2016;138(3): doi: / Figure Legend: Measured and simulated results of the transient response of the studied valve for approximately four turns setting of the spring at different positions of the first loading orifice
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