MODELING OF AN EXPERIMENTAL HYDRAULIC SYSTEM WITH TWO FLOW CONTROL PARAMETERS

被引:0
作者
Ben-Galim, Y. [1 ]
Bar-Or, L. [2 ]
Cahana, Y. [1 ]
Kadmon, Y. [1 ]
Barda, K. [2 ]
Horesh, N. [2 ]
Miron, G. [2 ]
Weiss, Y. [2 ]
机构
[1] NRC Negev, POB 9001, IL-84190 Beer Sheva, Israel
[2] ECMC Rotem Ind Ltd, IL-86800 Mishoryamin Dn Arava, Israel
来源
PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION, 2016, VOL. 11 | 2017年
关键词
D O I
暂无
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
This study suggests an innovative method for analyzing the behavior of hydraulic experimental systems that can be used as a tool for a system design. Design of experimental hydraulic systems can be a complicated challenge. Unlike industrial facilities, where the process is designated to work in a single or a limited narrow range of duty points and therefore classical design methods can be used, in experimental systems, where any selected duty point within a vast range may be needed, the system design may require much more advanced methods. Such an example is presented in this work where modeling of flow characteristics for an experimental hydraulic system is required. In this example, the system should provide any desired water flow rate in the wide range of 10-450 m(3)/h (an exceptional ratio in industrial facilities) with accuracy of +/- 2% while maintaining good stability. Review of former studies in this field didn't reveal any suggested methods for such a design. In addition, standard process and piping software were examined and found unsuitable for this challenge. Therefore, an independent hydraulic model was developed. The modeling method is based on conventional analytical correlations of hydraulic resistance for a fully developed turbulent flow, modeling of centrifugal pump's Pressure-Flow Curve (PFC) which depends on the frequency of the supplied voltage and by modeling the varying hydraulic resistance of a throttle control valve. This technique enables analytic evaluation of the possible flow rates in the system, to inspect the system stability and to perform a parametric study of the piping characteristics (diameter, valve type etc.) for two design alternatives. The code of the model was written in a free open-source Scilab platform. The results of the analytical model were illustrated on three dimensional plots displaying the system's flow-rate versus the pumps frequency and the degree of rotation of the throttle control valve. According to these results, the most prominent alternative was chosen for manufacture.
引用
收藏
页数:6
相关论文
共 50 条
[21]   EXPERIMENTAL MODELLING AND CONTROL OF A SERVO-HYDRAULIC FORCE CONTROL SYSTEM [J].
Kennedy, Joseph ;
Fales, Roger .
INTERNATIONAL JOURNAL OF FLUID POWER, 2010, 11 (01) :7-19
[22]   Control and Monitoring System of Hydraulic Parameters for Rainbow Trout Culture [J].
Huayta Uribe, Alem ;
Macuri Vasquez, Jalber Brayan ;
Miranda Yauri, Alexander Claudio ;
Huamanchahua, Deyby .
2021 IEEE 12TH ANNUAL UBIQUITOUS COMPUTING, ELECTRONICS & MOBILE COMMUNICATION CONFERENCE (UEMCON), 2021, :780-784
[23]   The impact of modeling complexity and two-phase flow parameters on the accuracy of system modeling for unitary air conditioners [J].
Harms, TM ;
Braun, JE ;
Groll, EA .
HVAC&R RESEARCH, 2004, 10 (01) :5-20
[24]   Modeling unsaturated flow in fractured rocks with scaling relationships between hydraulic parameters [J].
Chen, Yi-Feng ;
Ye, Yuke ;
Hu, Ran ;
Yang, Zhibing ;
Zhou, Chuang-Bing .
JOURNAL OF ROCK MECHANICS AND GEOTECHNICAL ENGINEERING, 2022, 14 (06) :1697-1709
[25]   Modeling unsaturated flow in fractured rocks with scaling relationships between hydraulic parameters [J].
Yi-Feng Chen ;
Yuke Ye ;
Ran Hu ;
Zhibing Yang ;
Chuang-Bing Zhou .
Journal of Rock Mechanics and Geotechnical Engineering, 2022, 14 (06) :1697-1709
[26]   NUMERICAL AND EXPERIMENTAL ANALYSIS OF THE CONTROL ROD HYDRAULIC DECELERATION DEVICE FOR THE CONTROL ROD HYDRAULIC DRIVE SYSTEM [J].
Qin Benke ;
Li Leishi ;
Bo Hanliang .
PROCEEDINGS OF THE 25TH INTERNATIONAL CONFERENCE ON NUCLEAR ENGINEERING, 2017, VOL 2, 2017,
[27]   Hydraulic pitch control system for wind turbines: Advanced modeling and verification of an hydraulic accumulator [J].
Irizar, Victor ;
Andreasen, Casper Schousboe .
SIMULATION MODELLING PRACTICE AND THEORY, 2017, 79 :1-22
[28]   Modeling, control and experimental investigation of horizontal hydraulic flight motion simulator* [J].
Chen, Xinghua ;
Liu, Xiaochao ;
Li, Xinglu ;
Qi, Pengyuan ;
Liu, Xiaoting ;
Shang, Yaoxing ;
Jiao, Zongxia .
MECHATRONICS, 2023, 91
[29]   Experimental modeling for hydraulic valves [J].
Cheng, H ;
Yun, XY ;
Du, LS .
ISTM/2005: 6th International Symposium on Test and Measurement, Vols 1-9, Conference Proceedings, 2005, :735-738
[30]   United simulation of hydraulic system and control system of dumping casting machine by low flow hydraulic driving [J].
Jin Kai ;
Yan Hong-zhi ;
Tan Wu-zong ;
Chen Xin-yu .
2012 POWER ENGINEERING AND AUTOMATION CONFERENCE (PEAM), 2012, :788-791