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深水設(shè)備投放雙卷筒絞車(chē)系統(tǒng)設(shè)計(jì)

發(fā)布時(shí)間:2017-08-18 09:12

  本文關(guān)鍵詞:深水設(shè)備投放雙卷筒絞車(chē)系統(tǒng)設(shè)計(jì)


  更多相關(guān)文章: 深水 設(shè)備 投放 卷筒 絞車(chē) 系統(tǒng) 設(shè)計(jì)


【摘要】:
【關(guān)鍵詞】:
【學(xué)位授予單位】:中國(guó)海洋大學(xué)
【學(xué)位級(jí)別】:碩士
【學(xué)位授予年份】:2015
【分類(lèi)號(hào)】:P715.1
【目錄】:
  • Abstract5-9
  • 1. Introduction9-18
  • 1.1. Background and significance9-11
  • 1.2. Current research11-14
  • 1.2.1. The status of domestic research11-12
  • 1.2.2.Abroad research status12-14
  • 1.3. Deep-sea exploration winch trends14-16
  • 1.4. The research contents and methods16-18
  • 2. Double drum traction winch systems for oceanographic research18-22
  • 2.1. Traction winch system advantages18-19
  • 2.2. Application suitability of a traction winch system19-20
  • 2.3. Applications20-21
  • 2.3.1. Deep-sea Mining20
  • 2.3.2. Deep-sea offshore oil exploration20-21
  • 2.4. Economic justification of traction winch systems21-22
  • 3. Double drum winch design22-32
  • 3.1. Dual drum winch deep sea exploration function and principle23-28
  • 3.1.1. Double drum deep sea exploration winch features23-24
  • 3.1.2. Analysis of double drum winch deep-sea detection function24-25
  • 3.1.3. Double drum winch deep sea exploration works25-28
  • 3.2. Selection of main parts28-31
  • 3.2.1. Power type selection28
  • 3.2.2. Design of driving scheme28-30
  • 3.2.3. The design scheme of control system30-31
  • 3.3. The summary of this chapter31-32
  • 4. Deep-sea exploration Double drum winch system parameter calculation32-51
  • 4.1. The winch design requirements32-33
  • 4.2. Design parameters of the traction winch parts33-41
  • 4.2.1. The cable carrying capacity analysis33-35
  • 4.2.2. Traction winch drive motor selection35-41
  • 4.3. Tension measuring mechanism design parameters41-48
  • 4.3.1. Tension measurement principle41-42
  • 4.3.2. Derivation of tension measuring formula42-46
  • 4.3.3. Selection of the pressure sensor46-48
  • 4.4. The overall structural design of the winch48-50
  • 4.5. Summary50-51
  • 5. PID and PDFF Compensators for Motion Control51-67
  • 5.1. Introduction51-54
  • 5.2. Problem formulation54-57
  • 5.3. Performance comparison57-61
  • 5.4. Extension to higher order model61-65
  • 5.5. Summary65-66
  • Appendix a66-67
  • 6. Double drum winch system PLC control system design67-77
  • 6.1. Hardware design of control system67-74
  • 6.1.1. Selection of PLC controller67-70
  • 6.1.2. Design of PLC control circuit70-73
  • 6.1.3. Design of the electrical control cabinet73-74
  • 6.2. PLC program design74-75
  • 6.3. Control system software interface design75-76
  • 6.4. Chapter Summary76-77
  • 7. Conclusion and Prospective77-80
  • 7.1. Conclusion77-78
  • 7.2. Prospective78-80
  • References80-83
  • Acknowledgement83-84
  • 致謝84-85
  • Resume85
  • 個(gè)人簡(jiǎn)歷85

【參考文獻(xiàn)】

中國(guó)期刊全文數(shù)據(jù)庫(kù) 前4條

1 蘇寧寧;李懷亮;段夢(mèng)蘭;毛東風(fēng);趙天奉;張九菊;;深水A&R絞車(chē)動(dòng)力滾筒牽引力計(jì)算及有限元強(qiáng)度分析[J];石油礦場(chǎng)機(jī)械;2011年10期

2 陳育喜;張?bào)糜?;深海ROV臍帶纜絞車(chē)設(shè)計(jì)研究[J];機(jī)械設(shè)計(jì)與制造;2010年04期

3 陳遠(yuǎn)龍;賈志華;黃振東;萬(wàn)勝美;;基于PLC的電解加工機(jī)床控制系統(tǒng)的設(shè)計(jì)與實(shí)現(xiàn)[J];組合機(jī)床與自動(dòng)化加工技術(shù);2008年07期

4 翟慶光;聶杰;康岳偉;;深海取樣絞車(chē)牽引卷筒上鋼纜張力分析[J];海洋技術(shù);2008年02期

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