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- Design of a hybrid laminar flow control nacelle 混合層流控制發(fā)動(dòng)機短艙的設計
- Thus, NLF-1 wing is a better natural laminar flow wing. 因此NLF-1機翼確為較好的層流機翼。
- laminar flow control 層流控制
- Laminar flow principle throughout the system. 完美的層流方式。
- With the development of computer control technology,laminar flow cooling technology is paid attention to progressively. 隨著(zhù)計算機控制技術(shù)的發(fā)展,層流冷卻越來(lái)越受到重視。
- Continental lower crustal flow:channel flow or laminar flow? 大陸下地殼流動(dòng):渠流還是層流?
- Welcome to the world of exotic flow control. 歡迎來(lái)到奇妙的流控制世界。
- Frame Relay Connection and Traffic Flow Control. 幀中繼連接和流量控制。
- Full-bore design provides exceptional flow control. 全內徑結構具有優(yōu)異的流量控制能力。
- Shanghai Pusher Flow Control System Co., Ltd. 上海浦煦流體控制系統有限公司。
- Shanghai Yizhi Flow Control Equipment Co., Ltd. 上海熠智流體控制設備有限公司。
- Be responsible for cash flow control. 負責現金流量管理。
- Objector To evaluate the value of laminar flow in the treatment of bums. 摘要目的探索層流潔凈技術(shù)治療大面積燒傷的價(jià)值。
- The process of flow control is known as windowing. 流量控制的程序被稱(chēng)為視窗化。
- By using volume control method, the basic equations of axial laminar flow for power law fluids in eccentric annuli was seperated and sovled by ADI (Alternate Direction Iterail) method. 利用控制體積法對冪律流體偏心環(huán)空軸向層流流動(dòng)的基本方程進(jìn)行了離散化處理,并用ADI方法進(jìn)行了求解。
- To improve the accuracy of target coiling temperature, and obtain the good structure capability, the hot roll mill introduces the adaptive control system of laminar flow cooling system. 摘要為了提高目標卷取溫度的精度,獲得組織性能和機械性能優(yōu)良的帶鋼,某熱軋廠(chǎng)采用了層流冷卻自適應控制系統。
- Flow control and ladder diagram of PLC are analyzed. 該系統具有操作簡(jiǎn)便,自動(dòng)化程度高,運行速度快、靠性高等特點(diǎn)。
- The laminar flow cooling system and its mathematical model used at the Hot Strip Mill of Panzhihua Iron and Steel Co. 簡(jiǎn)介了攀鋼熱軋板廠(chǎng)層流冷卻裝置及數學(xué)模型,指出該層冷模型是比較實(shí)用的,且工作正常。
- The Positive Solution For All Your Flow Control Applications. 適用于所有流量控制領(lǐng)域的正確地解決方案。
- Friction heat of crude oil is obvious in non-Newtonian laminar flow, which can't be ignored. 結果表明:當原油處于非牛頓層流狀態(tài)時(shí),摩擦熱的影響不可忽略。