浮力平臺 的英文怎麼說

中文拼音 [píngtái]
浮力平臺 英文
buoyant structure
  • : Ⅰ動詞1 (漂在液體表面) float; drift 2 [方言] (在水裡游) swim Ⅱ形容詞1 (在表面上的) superfici...
  • : Ⅰ名1 (力量; 能力) power; strength; ability; capacity 2 [物理學] (改變物體運動狀態的作用) forc...
  • : Ⅰ形容詞1 (沒有高低凹凸 不頃斜) flat; level; even; smooth 2 (高度相同; 不相上下) on the same l...
  • : 臺名詞(指臺州) short for taizhou (in zhejiang province)
  • 浮力 : [流] buoyancy; buoyant force; buoyance; floatage; rising force; buoyancy force浮力參數 [流] buoya...
  1. Because it is impossible to adjust the air bearing absolutely balance, the difference between mass center and rotation center must lead to a notable gravity disturbance torque. in the process of identification, modeling and identification of gravity disturbance torque is considered, and an extended kalman filter is educed for identifying air bearing inertia matrix and gravity disturbance torque, and then the algorithm is validated

    由於氣衡調試方法和手段的限制,實驗過程中氣質心與轉動中心有一定的位置偏差,必將導致較大的重干擾矩,在辨識演算法的推導過程中,重點考慮了重干擾矩的建模和參數辨識問題,推導了氣的轉動慣量和重干擾矩辨識的擴展卡爾曼濾波演算法,並對演算法進行了數學模擬和全物理模擬驗證。
  2. Referencing the existing laser lithography tools and according the structure principle of maglev - bearing and maglev - vehicle, two structure patterns of precision stage based on maglev technology and driven non - contactly by linear motor are designed and researched. the two maglev precision stages will be of freedom information property and adapt to develop and manufacture laser lithography tools by ourselves

    在參考國內外光刻機現有定位結構形式的基礎上,根據磁懸軸承和列車的結構原理,以磁懸技術為基礎、以直線電機無接觸驅動為動,研究並設計了具有自主知識產權的兩種結構模式磁懸精密定位,以適應我國自主研製開發新一代光刻機的需要。
  3. The magnetic force coupling is analyzed and calculated. after building the dynamics model for the maglev system, discoupling design is run, and the simulation experiment with the leap response and capability of anti - jamming for maglev stage are carried out

    在建立了磁懸系統的動學模型基礎上,對磁懸系統進行了解耦控制設計,並對解耦后的磁懸定位進行了階躍響應和抗干擾能的模擬試驗。
  4. 3. it studied the radiation problem of tlp, and paid attention to the computation of added mass and added damping about tlp which cylinders are set as regular polygon

    3 .研究了張的輻射問題,重點研究了筒柱正多邊形分佈情況下,總體輻射附加質量和阻尼系數計算問題。
  5. In which, it gives inquiring of the construction of deep - water foundations and the usage of floating crane. the construction program of bridge pier foundation will be fixed according to the water depth. if the water depth is less than 4m, pier foundation will adopt the method of building island by earth filling ; if the water depth is more than 4m and there is over burden at river bed, at the same time, it has sufficient bearing capacity to load steel pipe pile, the steel pipe pile platform will be adopted

    其中,對深水基礎的施工及吊的使用進行了探討,根據水深確定橋墩基礎的施工方法,對水深不超過四米的橋墩基礎,採用填土築島的方法:對水深大於四米,河床有覆蓋層,且能保證鋼管樁具有足夠的承載的橋墩,採用鋼管樁;對主河道上河床沒有覆蓋層,鋼管樁無法插打的橋墩,採用
  6. This subject belongs to three - dimensional layout problems with behavioral constraints theoretically and concerns the knowledge of spacecraft design, mechanical engineering, computer science, mathematics, mechanics and system engineering. so it can be ascribed as the frontier fundamental and applied research of cross - discipline subject with np complexity theoretically. in term of engineering practice, this subject has extensive applications, such as layout design of spacecraft module, engineering machinery, submarine and shipping, tank, under - water suspension engineering, platform of marine drilling well, bullet train, multiple spindle box of machine tool, robot

    該課題在理論上,屬帶性能約束的三維布局問題,涉及航天器設計、機械工程、計算機、數學、學和系統工程等學科,為交叉學科前沿課題的基礎理論和應用基礎研究,具有np難度;在實踐上,具有廣泛的工程應用背景,如航天器艙、工程機械、潛艇、船舶、坦克、水下懸工程、海上鉆井、高速列車、組合機床多軸箱、機器人等的布局方案設計問題。
  7. In order to research work principle and performance for magnetic levitation precise position stage, this paper mainly researches the principle prototype of the stage through mechatronics cad / cae. the 3d solid models of the principle prototype were built, the mechanism simulation and interferential c hecks were done by using ugnxl. o software. by translating three - dimension into two - dimension and drafting, the 2d draws were got

    為了對磁懸定位工作的工作原理、性能進行深入研究,從基礎作起,本文主要對磁懸定位原理樣機進行了機電一體化cad cae研究,進行了原理樣機的虛擬樣機設計,機構運動分析模擬和干涉檢查,將三維轉成二維,進行cad詳圖設計,並在cad結構設計基礎上,進行了電磁場分析、有限元學分析、原理樣機製作和實驗測試。
  8. Topics include the principles of conservation of mass, momentum and energy ; hydrostatic behavior of floating and submerged bodies ; lift and drag forces ; dimensional anaylsis ; wave forces on ships and offshore platforms ; laminar and turbulent flows

    主題涵蓋質量守恆、動量守恆及能量守恆等原理、體及沈體之流體靜行為、升、拖曳、因次分析、船舶及離岸上作用的波、層流及紊流。
  9. By magnetic field analysis for the stage, three formulas reached : one is magnetic road magnetic force calculational formula of magnetic levitation system that except flux leakage, the second is magnetic driving force calculational formula for open magnetic road dc linear motor, the third is magnetic flux density calculational formula for dc linear motor. these formulas make reference for design, analysis and control

    本文對磁懸定位進行了電磁場分析,推導出磁懸系統不計漏磁的簡單磁路、磁計算公式和原理樣機所採用的開磁路直流直線電機推及磁通密度計算公式,為設計、分析及控制提供參考。
  10. However flux leakage is really exist, calculation through formular analytic method has more error, so electromagnetic field analysis is made by using finite element method ( fem ) in ansys7. 1 / multiphysics and ansys / emag programs. typical quantities of interest in a magnetic analysis are available such as magnetic flux density, magnetic field intensity, magnetic forces, power loss and flux leakage in the system of magnetic levitation. then gain the current in the coil which control levitation gap when the stage is stable

    由於存在漏磁,用公式的解析法計算有很大的誤差,因此本文採用有限元法( fem )來計算磁懸系統磁場分佈,從而計算磁,通過用ansys7 . 1軟體進行有限元電磁場分析計算,得到穩定懸時電磁線圈所需電流、懸氣隙等控制參數,由於設計的磁懸系統為非軸對稱結構,採用2d磁場分析有一定的誤差,而採用3d電磁場分析更接近實際。
  11. On the basis of electromagnetic field analysis with ansys7. 1, the result of magnetic force calculation is introduced to the software of msc patran / nastran, and the analysis of statics and dynamics for magnetic levitation stag are effectively carried out through coupling the magnetic force with structure force

    在ansys軟體進行電磁場分析的基礎上,將磁計算結果調入cae軟體mscpatran nastran中,磁計算與結構學耦合計算,有效地進行磁懸工作學分析和動學分析,合理地評價了磁懸移動的性能。
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