Study on the design of single-seat control valve with stable flow regulation and its fluid flow characteristics and thermal stress

IF 2.3 3区 工程技术 Q2 ENGINEERING, MECHANICAL Flow Measurement and Instrumentation Pub Date : 2023-11-11 DOI:10.1016/j.flowmeasinst.2023.102486
Ruiming Yu , Yunyan Ma , Kuaile Liu , Xiangyu Liu
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Abstract

Aiming at technical problems such as unstable flow at small openings and uneven force on the valve core, the single-seat control valve with stable flow regulation is researched and designed. The tapered surface of the outer edge of the valve core can cooperate with the valve seat when the valve core is running stably, resulting in higher flow regulation accuracy and more stable regulation. The mechanical characteristics and flow characteristics are analyzed. The fluid flow simulation analyzes the pressure, velocity, density, mass flow rate and volume flow rate of the fluid under small and large openings of the single-seat control valve. The relationship between the maximum pressure, maximum velocity, maximum density, mass flow rate and volume flow rate of the inlet and outlet with the opening are analyzed from small opening to large opening and smaller opening. The spool motion simulation analyzes the relationship between actuator driving force, unbalanced force, linear displacement, velocity and acceleration with time. The thermal stress simulation analyzes the thermal temperature, resultant heat flow, thermal stress, thermal strain and safety factor, and the material strength meets the requirements. The valve body pressure test, valve seat sealing test, full stroke and switching time test, drift and jitter test, starting deviation test, basic error and return difference test and dead zone test are carried out on the single-seat control valve. The test results all meet the requirements. The simulation results are compared and analyzed with the test results, and the simulation results are consistent with the test result.

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稳定流量调节单座调节阀的设计及其流体流动特性和热应力研究
针对小开度流量不稳定、阀芯受力不均匀等技术问题,研究设计了流量稳定调节的单座控制阀。阀芯外缘的锥形表面可以在阀芯稳定运行时与阀座配合,从而提高流量调节精度,调节更稳定。对其力学特性和流动特性进行了分析。流体流动仿真分析了单座控制阀小开度和大开度下流体的压力、速度、密度、质量流量和体积流量。从小开度到大开度再到小开度,分析了进出口最大压力、最大速度、最大密度、质量流量和体积流量与开度的关系。阀芯运动仿真分析了执行机构驱动力、不平衡力、线位移、速度和加速度随时间的关系。热应力模拟分析了热温度、合成热流、热应力、热应变和安全系数,材料强度满足要求。对单座控制阀进行阀体压力试验、阀座密封试验、全行程及开关时间试验、漂移及抖动试验、起动偏差试验、基本误差及回程差试验和死区试验。试验结果均符合要求。将仿真结果与试验结果进行对比分析,仿真结果与试验结果基本一致。
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来源期刊
Flow Measurement and Instrumentation
Flow Measurement and Instrumentation 工程技术-工程:机械
CiteScore
4.30
自引率
13.60%
发文量
123
审稿时长
6 months
期刊介绍: Flow Measurement and Instrumentation is dedicated to disseminating the latest research results on all aspects of flow measurement, in both closed conduits and open channels. The design of flow measurement systems involves a wide variety of multidisciplinary activities including modelling the flow sensor, the fluid flow and the sensor/fluid interactions through the use of computation techniques; the development of advanced transducer systems and their associated signal processing and the laboratory and field assessment of the overall system under ideal and disturbed conditions. FMI is the essential forum for critical information exchange, and contributions are particularly encouraged in the following areas of interest: Modelling: the application of mathematical and computational modelling to the interaction of fluid dynamics with flowmeters, including flowmeter behaviour, improved flowmeter design and installation problems. Application of CAD/CAE techniques to flowmeter modelling are eligible. Design and development: the detailed design of the flowmeter head and/or signal processing aspects of novel flowmeters. Emphasis is given to papers identifying new sensor configurations, multisensor flow measurement systems, non-intrusive flow metering techniques and the application of microelectronic techniques in smart or intelligent systems. Calibration techniques: including descriptions of new or existing calibration facilities and techniques, calibration data from different flowmeter types, and calibration intercomparison data from different laboratories. Installation effect data: dealing with the effects of non-ideal flow conditions on flowmeters. Papers combining a theoretical understanding of flowmeter behaviour with experimental work are particularly welcome.
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