基于剛?cè)狁詈系碾p驢頭抽油機(jī)動(dòng)力學(xué)仿真研究
[Abstract]:With the development of oil field, it is very important to improve the reliability of double-donkey beam pumping unit and give full play to its remarkable energy-saving effect. At present, the design method of pumping unit is mostly static design. The empirical method used in the design process can not accurately reflect the effect of dynamic load. In order to solve this problem, the researchers introduced virtual prototyping technology in the process of research and development, established the virtual prototype model of pumping unit by computer, and simulated and analyzed the mechanical condition of pumping unit during operation. The mechanical characteristics of the virtual prototype are obtained to optimize and improve the pumping unit structure. In this paper, the rigid-flexible coupling model of CYJS10-5-37HB double donkey head pumping unit is established, and the dynamic simulation analysis is carried out based on the SolidWorks,Adams,ANSYS software platform and the rigid-flexible coupling modeling method of CYJS10-5-37HB double-donkey head pumping unit. Get the relevant simulation analysis data. The main contents of this paper are as follows: 1. Based on the theory of flexible body modeling, the rigid-flexible coupling model of CYJS10-5-37HB double donkey head pumping unit is established, in which the beam and the rear donkey head are the flexible body model. 2. The rigid-flexible coupling model of CYJS10-5-37HB double donkey head pumping unit is simulated by multi-body dynamics simulation. Finally, the mechanical characteristics of key components (donkey head and beam) are obtained. By comparing with the traditional calculation results, the correctness of the results obtained by using the rigid-flexible coupling model is verified, which provides a theoretical basis and a reference for the dynamic simulation and analysis of other more complex mechanical systems. The structural mechanics analysis of the complex structure of CYJS10-5-37HB double donkey head pumping unit by using computer technology is a further discussion on the application of simulation technology. The research results can provide a reference basis for the optimization of pumping unit equipment.
【學(xué)位授予單位】:東北石油大學(xué)
【學(xué)位級(jí)別】:碩士
【學(xué)位授予年份】:2017
【分類號(hào)】:TE933.1
【參考文獻(xiàn)】
相關(guān)期刊論文 前10條
1 王彥軍;楊霞霞;;基于ANSYS Workbench標(biāo)準(zhǔn)直齒圓柱齒輪傳動(dòng)有限元分析[J];機(jī)電技術(shù);2016年06期
2 昝帥;李偉偉;;游梁式抽油機(jī)節(jié)能原理分析[J];南方農(nóng)機(jī);2016年12期
3 馮子明;方欣;趙宇;高啟明;;游梁式抽油機(jī)平衡度與運(yùn)行性能研究[J];雞西大學(xué)學(xué)報(bào);2016年12期
4 李寧會(huì);;游梁式抽油機(jī)技術(shù)標(biāo)準(zhǔn)探討[J];石油工業(yè)技術(shù)監(jiān)督;2016年12期
5 郭娟;馬龍;;游梁式抽油機(jī)在油田應(yīng)用中的發(fā)展歷程[J];石化技術(shù);2016年11期
6 付憲;付亞榮;馬永忠;姚慶童;付麗霞;孫學(xué)峰;于志銘;梁志宏;;游梁式抽油機(jī)液力偶合傳動(dòng)的節(jié)能控制技術(shù)[J];節(jié)能技術(shù);2016年06期
7 孫曉麗;張丹丹;劉洪軍;曹鼎洪;侯志欣;;游梁式抽油機(jī)傳動(dòng)技術(shù)改進(jìn)[J];石油石化節(jié)能;2016年11期
8 李琨;韓瑩;佘東生;魏澤飛;黃海礁;;基于IFOA-KELM-MEA模型的游梁式抽油機(jī)采油系統(tǒng)井下工況的短期預(yù)測(cè)[J];化工學(xué)報(bào);2017年01期
9 岑學(xué)齊;吳曉東;王磊;鄭磊;葛磊;;游梁式抽油機(jī)游梁平衡重計(jì)算新模型[J];石油鉆探技術(shù);2016年02期
10 黃炯舟;;抽油機(jī)電動(dòng)機(jī)負(fù)載自動(dòng)跟蹤節(jié)能器應(yīng)用效果探討[J];石油石化節(jié)能;2016年02期
相關(guān)碩士學(xué)位論文 前10條
1 于嘉驥;抽油機(jī)游梁平衡自動(dòng)調(diào)節(jié)裝置的設(shè)計(jì)與仿真[D];東北石油大學(xué);2016年
2 楊保貴;游梁式抽油機(jī)虛擬樣機(jī)測(cè)試及有限元仿真分析[D];長(zhǎng)安大學(xué);2015年
3 王紅濤;抽油機(jī)減載器減載機(jī)理研究[D];西安石油大學(xué);2014年
4 張曉東;游梁式抽油機(jī)節(jié)能控制器的研究[D];西安石油大學(xué);2013年
5 程歡;基于機(jī)理分析的抽油機(jī)動(dòng)態(tài)建模及控制[D];中國(guó)石油大學(xué);2011年
6 田丹丹;螺旋凸輪式抽油機(jī)的優(yōu)化設(shè)計(jì)與性能仿真[D];燕山大學(xué);2010年
7 馮亮亮;CAD/PDM系統(tǒng)一體化產(chǎn)品快速設(shè)計(jì)研究與應(yīng)用[D];重慶大學(xué);2010年
8 周超;游梁式抽油系統(tǒng)效率分析及提高對(duì)策[D];中國(guó)石油大學(xué);2009年
9 連潁;雙驢頭抽油機(jī)的動(dòng)力學(xué)分析與優(yōu)化設(shè)計(jì)[D];南京理工大學(xué);2007年
10 徐中文;抽油機(jī)設(shè)計(jì)軟件開發(fā)及優(yōu)化設(shè)計(jì)[D];大慶石油大學(xué);2006年
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