縦軸掘削リグの周波数変換 電子制御設計とエネルギー節約と騒音削減効果の分析
Guoliang Tian1,2,3, Zhengjiang Ding2,3, Baolin Liu1
1China University of Geosciences (Beijing), Beijing 100083, China.
ACS omega
|August 25, 2025
まとめ
この研究では,垂直シャフト掘削装置の周波数変換制御スキームを導入し,効率を大幅に向上させ,エネルギー消費を削減します. 地質掘削装置の運用安全性と持続性を向上させる.
科学分野:
- エンジニアリング
- 地質掘削技術
背景:
- 従来型の垂直シャフト掘削機は 不規則な速度調節,高エネルギー消費,過度の騒音に 直面しています
- これらの制限は,運用効率と様々な地質条件への適応を妨げます.
研究 の 目的:
- 従来の垂直シャフト掘削機を改装するための周波数変換制御スキームを提案し,検証する.
- 掘削の効率を高め,エネルギー消費を削減し,運用の安全性と持続可能性を向上させる.
主な方法:
- モーターの周波数と電圧のダイナミック制御によるステップレス速度調整のための変頻駆動装置 (VFD) を実装した.
- 提案された制御スキームを検証するための理論的分析と実験的試験を実施した.
- 電子制御システムに超電流と超電圧の保護などの安全機能が組み込まれている.
主要な成果:
- 継続的に変化する速度調節を実現し,掘削の効率と適応性を高めます.
- 年間エネルギー消費量を35%以上削減し 年間エネルギー消費量を大幅に削減しました
- 平均騒音レベルが94.28dBから89.51dBに低下し,職業用曝露の限界値90dBを下回った.
- 統合された保護機能により 運用の安全性の向上が確認されています.
結論:
- インバーターベースの改修は従来の掘削機を近代化するための実用的な解決策です.
- 計画では,掘削機器の効率化,インテリジェンス,持続可能性が向上します.
- 地質掘削機器の改良に役立つ技術的な洞察を 提供しています
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