配子體異型 的英文怎麼說

中文拼音 [pèizixíng]
配子體異型 英文
anisogamonty
  • : Ⅰ動詞1 (兩性結合) join in marriage 2 (使動物交配) mate (animals) 3 (按適當的標準或比例加以...
  • : 子Ⅰ名詞1 (兒子) son 2 (人的通稱) person 3 (古代特指有學問的男人) ancient title of respect f...
  • : 體構詞成分。
  • : 形容詞1 (有分別; 不相同) different 2 (奇異; 特別) strange; unusual; extraordinary 3 (另外的;...
  1. Abstract : a new method, collaborative allocation ( ca ), is proposed to solve the large - scale optimum allocation problem in aircraft conceptual design. according to the characteristics of optimum allocation in aircraft conceptual design. the principle and mathematical model of ca are established. the optimum allocation problem is decomposed into one main optimization problem and several sub - optimization problems. a group of design requirements for subsystems are provided by the main system respectively, and the subsystems execute their own optimizations or further provide the detailed design requirements to the bottom components of aircraft, such as spars, ribs and skins, etc. the subsystems minimize the discrepancy between their own local variables and the corresponding allocated values, and then return the optimization results to main optimization. the main optimization is performed to reallocate the design requirements for improving the integration performance and progressing toward the compatibilities among subsystems. ca provides the general optimum allocation architecture and is easy to be carried out. furthermore, the concurrent computation can also be realized. two examples of optimum reliability allocation are used to describe the implementation procedure of ca for two - level allocation and three - level allocation respectively, and to validate preliminarily its correctness and effectiveness. it is shown that the developed method can be successfully used in optimum allocation of design requirements. then taking weight requirement allocation as example, the mathematical model and solution procedure for collaborative allocation of design requirements in aircraft conceptual design are briefly depicted

    文摘:探討了一種新的設計指標最優分方法- -協同分法,用於處理飛機頂層設計中的大規模設計指標最優分問題.分析了飛機頂層設計中的設計指標最優分特徵,據此給出了協同法的原理並建立了數學模.協同法按設計指標分關系將最優分問題分解為主系統優化和系統優化,主優化對系統設計指標進行最優分優化以最小化分設計指標值與期望設計指標值之間的差為目標,進行系統最優設計,或對底層元件(如飛機翼梁、翼肋和翼盒等)進行設計指標最優分,並把最優解信息反饋給主優化.主優化通過優化最優解信息構成的一致性約束協調分量,提高系統整性能,並重新給出分方案.主系統與系統反復協調,直到得到設計指標最優分方案.兩層可靠度指標分算例初步驗證了本文方法的正確性與可行性,三層可靠度指標分算例證明了本文方法的有效性.最後,以重量指標分為例,簡要敘述了針對飛機頂層設計中設計指標協同分的數學模和求解思路
  2. A new method, collaborative allocation ( ca ), is proposed to solve the large - scale optimum allocation problem in aircraft conceptual design. according to the characteristics of optimum allocation in aircraft conceptual design. the principle and mathematical model of ca are established. the optimum allocation problem is decomposed into one main optimization problem and several sub - optimization problems. a group of design requirements for subsystems are provided by the main system respectively, and the subsystems execute their own optimizations or further provide the detailed design requirements to the bottom components of aircraft, such as spars, ribs and skins, etc. the subsystems minimize the discrepancy between their own local variables and the corresponding allocated values, and then return the optimization results to main optimization. the main optimization is performed to reallocate the design requirements for improving the integration performance and progressing toward the compatibilities among subsystems. ca provides the general optimum allocation architecture and is easy to be carried out. furthermore, the concurrent computation can also be realized. two examples of optimum reliability allocation are used to describe the implementation procedure of ca for two - level allocation and three - level allocation respectively, and to validate preliminarily its correctness and effectiveness. it is shown that the developed method can be successfully used in optimum allocation of design requirements. then taking weight requirement allocation as example, the mathematical model and solution procedure for collaborative allocation of design requirements in aircraft conceptual design are briefly depicted

    探討了一種新的設計指標最優分方法- -協同分法,用於處理飛機頂層設計中的大規模設計指標最優分問題.分析了飛機頂層設計中的設計指標最優分特徵,據此給出了協同法的原理並建立了數學模.協同法按設計指標分關系將最優分問題分解為主系統優化和系統優化,主優化對系統設計指標進行最優分優化以最小化分設計指標值與期望設計指標值之間的差為目標,進行系統最優設計,或對底層元件(如飛機翼梁、翼肋和翼盒等)進行設計指標最優分,並把最優解信息反饋給主優化.主優化通過優化最優解信息構成的一致性約束協調分量,提高系統整性能,並重新給出分方案.主系統與系統反復協調,直到得到設計指標最優分方案.兩層可靠度指標分算例初步驗證了本文方法的正確性與可行性,三層可靠度指標分算例證明了本文方法的有效性.最後,以重量指標分為例,簡要敘述了針對飛機頂層設計中設計指標協同分的數學模和求解思路
  3. Segmented polyurethanes containing amorphous or crystalline soft segments as reversible phase and crosslink points as fixed phase can exhibit shape - memory properties

    摘要聚氨酯是一種具有微相分離本結構的多嵌段共聚物,可通過調節原料的組成和比,得到性能各的新功能高分材料。
  4. Based on the simulation method of finite difference time domain ( fdtd ) ( together with the boundary treatment of an anisotropic perfect matched layer of absorbing media for the truncation of fdtd lattices ) and the theory of ordinary antennas, antennas based on photonic bandgap ( pbg ) materials and meta - materials are studied in the present dissertation

    在開展有限時域差分法(結合各向性完全匹層邊界)演算法研究和普通天線模擬設計研究的工作基礎上,本論文主要進行了基於光( pbg )與向介質的新天線的研究。
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