Energy Regeneration Hydraulic System via a Relief Valve with Energy Regeneration Unit

Relief valves are widely used in industrial machinery. Due to the outlet of the relief valve being connected to the tank, the pressure drop of the relief valve is frequently equal to the inlet pressure. Accordingly, the energy loss of the relief valve is very high in some cases and this will worsen...

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Main Authors: Tianliang Lin, Qiang Chen, Haoling Ren, Yi Zhao, Cheng Miao, Shengjie Fu, Qihuai Chen
Format: Article
Language:English
Published: MDPI AG 2017-06-01
Series:Applied Sciences
Subjects:
Online Access:http://www.mdpi.com/2076-3417/7/6/613
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spelling doaj-ef1e60e53bec478f8fd63baf7b37bf6c2020-11-25T01:52:54ZengMDPI AGApplied Sciences2076-34172017-06-017661310.3390/app7060613app7060613Energy Regeneration Hydraulic System via a Relief Valve with Energy Regeneration UnitTianliang Lin0Qiang Chen1Haoling Ren2Yi Zhao3Cheng Miao4Shengjie Fu5Qihuai Chen6College of Mechanical Engineering and Automation, Huaqiao University, Xiamen 361021, ChinaCollege of Mechanical Engineering and Automation, Huaqiao University, Xiamen 361021, ChinaCollege of Mechanical Engineering and Automation, Huaqiao University, Xiamen 361021, ChinaCollege of Mechanical Engineering and Automation, Huaqiao University, Xiamen 361021, ChinaCollege of Mechanical Engineering and Automation, Huaqiao University, Xiamen 361021, ChinaCollege of Mechanical Engineering and Automation, Huaqiao University, Xiamen 361021, ChinaCollege of Mechanical Engineering and Automation, Huaqiao University, Xiamen 361021, ChinaRelief valves are widely used in industrial machinery. Due to the outlet of the relief valve being connected to the tank, the pressure drop of the relief valve is frequently equal to the inlet pressure. Accordingly, the energy loss of the relief valve is very high in some cases and this will worsen with an increase in the rated pressure of the hydraulic system. In order to overcome the disadvantage of overflow energy loss in a relief valve, a hydraulic energy regeneration unit (HERU) is connected to the outlet of the relief valve to decrease the pressure drop between the inlet and outlet of the relief valve. The overflow loss, which is characterized by the pressure drop, can be reduced accordingly. The approach is to convert the overflow energy loss in hydraulic form and allow for release when needed. The configuration and working principle of the relief valve with HERU is introduced in this present study. The mathematical model is established to obtain the factors influencing the stability of the relief valve. The working pressure of the hydraulic accumulator (HA) is explored. Furthermore, the control process of the operating state of the HA is scheduled to decide whether to regenerate the energy via the HERU. The software AMESim is utilized to analyze the performance and characteristics of the relief valve with HERU. Following this, the test rig is built and used to verify the effectiveness of the proposed relief valve with HERU. The experimental results show that the relief valve with the HERU connected to its outlet can still achieve better pressure-regulating characteristics. The energy regeneration efficiency saved by the HA is up to 83.6%, with a higher pre-charge pressure of the HA. This indicates that the proposed structure of the relief valve with HERU can achieve a better performance and higher regeneration efficiency.http://www.mdpi.com/2076-3417/7/6/613pilot relief valveenergy regeneration unitpressure fluctuationregeneration efficiency
collection DOAJ
language English
format Article
sources DOAJ
author Tianliang Lin
Qiang Chen
Haoling Ren
Yi Zhao
Cheng Miao
Shengjie Fu
Qihuai Chen
spellingShingle Tianliang Lin
Qiang Chen
Haoling Ren
Yi Zhao
Cheng Miao
Shengjie Fu
Qihuai Chen
Energy Regeneration Hydraulic System via a Relief Valve with Energy Regeneration Unit
Applied Sciences
pilot relief valve
energy regeneration unit
pressure fluctuation
regeneration efficiency
author_facet Tianliang Lin
Qiang Chen
Haoling Ren
Yi Zhao
Cheng Miao
Shengjie Fu
Qihuai Chen
author_sort Tianliang Lin
title Energy Regeneration Hydraulic System via a Relief Valve with Energy Regeneration Unit
title_short Energy Regeneration Hydraulic System via a Relief Valve with Energy Regeneration Unit
title_full Energy Regeneration Hydraulic System via a Relief Valve with Energy Regeneration Unit
title_fullStr Energy Regeneration Hydraulic System via a Relief Valve with Energy Regeneration Unit
title_full_unstemmed Energy Regeneration Hydraulic System via a Relief Valve with Energy Regeneration Unit
title_sort energy regeneration hydraulic system via a relief valve with energy regeneration unit
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2017-06-01
description Relief valves are widely used in industrial machinery. Due to the outlet of the relief valve being connected to the tank, the pressure drop of the relief valve is frequently equal to the inlet pressure. Accordingly, the energy loss of the relief valve is very high in some cases and this will worsen with an increase in the rated pressure of the hydraulic system. In order to overcome the disadvantage of overflow energy loss in a relief valve, a hydraulic energy regeneration unit (HERU) is connected to the outlet of the relief valve to decrease the pressure drop between the inlet and outlet of the relief valve. The overflow loss, which is characterized by the pressure drop, can be reduced accordingly. The approach is to convert the overflow energy loss in hydraulic form and allow for release when needed. The configuration and working principle of the relief valve with HERU is introduced in this present study. The mathematical model is established to obtain the factors influencing the stability of the relief valve. The working pressure of the hydraulic accumulator (HA) is explored. Furthermore, the control process of the operating state of the HA is scheduled to decide whether to regenerate the energy via the HERU. The software AMESim is utilized to analyze the performance and characteristics of the relief valve with HERU. Following this, the test rig is built and used to verify the effectiveness of the proposed relief valve with HERU. The experimental results show that the relief valve with the HERU connected to its outlet can still achieve better pressure-regulating characteristics. The energy regeneration efficiency saved by the HA is up to 83.6%, with a higher pre-charge pressure of the HA. This indicates that the proposed structure of the relief valve with HERU can achieve a better performance and higher regeneration efficiency.
topic pilot relief valve
energy regeneration unit
pressure fluctuation
regeneration efficiency
url http://www.mdpi.com/2076-3417/7/6/613
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