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劉高聯(lián)文選(上下冊(cè))

劉高聯(lián)文選(上下冊(cè))

定 價(jià):¥300.00

作 者: 劉高聯(lián) 著
出版社: 上海大學(xué)出版社有限公司
叢編項(xiàng):
標(biāo) 簽: 力學(xué)

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ISBN: 9787811185782 出版時(shí)間: 2010-03-01 包裝: 精裝
開(kāi)本: 16開(kāi) 頁(yè)數(shù): 全2冊(cè) 字?jǐn)?shù):  

內(nèi)容簡(jiǎn)介

  為了紀(jì)念與緬懷劉先生一生的學(xué)術(shù)偉業(yè),上海大學(xué)出版了這部《劉高聯(lián)文選》,精選了劉先生各個(gè)時(shí)期的研究論文,集中反映了他在葉輪機(jī)械氣動(dòng)熱力學(xué)領(lǐng)域的突出貢獻(xiàn)。 全書(shū)分為上下兩冊(cè),從“流體力學(xué)正命題、反命題與雜交命題”、“流熱固耦合問(wèn)題”、“非定常與多工況問(wèn)題”、“其他”這四個(gè)方面進(jìn)行了介紹。

作者簡(jiǎn)介

暫缺《劉高聯(lián)文選(上下冊(cè))》作者簡(jiǎn)介

圖書(shū)目錄

第一部分 流體力學(xué)正命題、反命題與雜交命題
葉輪機(jī)械氣體動(dòng)力學(xué)設(shè)計(jì)與分析
任意旋成面葉柵氣動(dòng)正命題的廣義變分原理、變分原理與互偶極值原理
平面葉柵氣動(dòng)設(shè)計(jì)的最優(yōu)化理論
Variational Principles and Generalized Variational Principles for the
Hybrid Aerodynamic Problem of Airfoil Cascades OFt an Arbitrary
Stream Sheet of Revolution
任意旋成面葉柵雜交型氣動(dòng)命題的變分原理與廣義變分原理(II)
任意旋成面葉柵氣動(dòng)反命題及雜交型命題的通用解法
軸流式葉輪機(jī)S:流面氣動(dòng)半反命題的變分原理與廣義變分原理
旋轉(zhuǎn)葉輪內(nèi)含激波的跨聲速三元流動(dòng)的變分原理與廣義變分原理
旋轉(zhuǎn)葉輪內(nèi)含激波跨聲速三元流動(dòng)的變分原理與廣義變分原理(1I)
矩函數(shù)及其在旋成面葉柵氣動(dòng)反命題及雜交命題中的應(yīng)用
平面葉柵氣動(dòng)設(shè)計(jì)的最優(yōu)化理論(Ⅱ)
旋成面葉柵一些雜交氣動(dòng)命題的新解法(Ⅰ)
旋轉(zhuǎn)葉輪內(nèi)完全三元不可壓縮流動(dòng)各類(lèi)雜交命題統(tǒng)一的變域變分理論
葉輪機(jī)葉片氣動(dòng)優(yōu)化理論的進(jìn)展
旋成面葉柵各類(lèi)雜交氣動(dòng)命題統(tǒng)一的變域變分理論
旋轉(zhuǎn)葉輪內(nèi)完全三元可壓縮勢(shì)流各類(lèi)雜交命題通用理論與解法:(Ⅰ)軸流式、流函數(shù)形式
A Unified Theory of Hybrid Problems for Fully Three-Dimensional
Incompressible Rotor Flow Based on Variational Principles with
Variable Domain
軸流式葉輪機(jī)S2流面雜交氣動(dòng)命題的廣義變分原理與變分原理
Families of Variational Principles for Inverse and HA Hybrid Problems of
an S2 Stream Sheet in Mixed Flow Turbomachines
轉(zhuǎn)子內(nèi)含激波跨聲速全三元流動(dòng)各類(lèi)雜交命題統(tǒng)一的變域變分理論:(Ⅰ)勢(shì)流
旋轉(zhuǎn)葉輪內(nèi)完全三元可壓縮勢(shì)流各類(lèi)雜交命題的通用理論與解法:(Ⅱ)軸流式、勢(shì)函數(shù)形式
S2流面正命題適用于純物質(zhì)流體的變分原理族及實(shí)際蒸汽跨聲流動(dòng)的
變分有限元解
流體力學(xué)變分原理及有限元法研究的進(jìn)展
流體力學(xué)變分原理的建立與變換的系統(tǒng)性途徑
軸對(duì)稱(chēng)流道氣動(dòng)雜交命題的變分原理族
S2流面正命題適用于純物質(zhì)流體的變分原理族及其對(duì)偶變分原理族
有旋流動(dòng)的贗勢(shì)函數(shù)及其對(duì)超跨聲速流動(dòng)的應(yīng)用
Variational Principles and Generalized Variational Principles for Fullv 3-D
Transonic Flow with Shocks in a Turbo-Rotor:Part Ⅰ.Potential
Flow
Variational Principles and Generalized Variational Principles for Fullv 3-D
Transonic Flow with Shocks in a Turbo-Rotor:Part Ⅱ.Rotational
Flow
Improved Scalar-Vector Potential Formulations of 3-D Compressible
Rotational Flow
The Radial Equilibrium Problem of Flow in Wave Machinery
Simple Formulae for Optimal Solidity of Two-Dimensional Compressor
Cascades Based on Diffusion Concept
A New Finite Element with Self-Adapting Built-in Discontinuity for
Shock-Capturing in Transonic Flow
Generalized Finite Element Method via Variable-Domain Variations:
Cogeneration of Optimal Grid and Flow Field
A Unified Variable-Domain Variational Approach to Hybrid Problems
of Compressible Blade-to-Blade Flow
A Variable-Domain Variational Theory Using Clebsch Variables for
Hybrid Problems of 2-D Transonic Rotational Flow
Variational Variable-Domain Finite Element Method for Hybrid Problems
of Three-Dimensional Incompressible Rotor Flow
Unified Variable-Domain Variational Theory of Hybrid Problems
for Compressible S2-Flow in Mixed-Flow Turbomachinery
Advances in Research on Inverse and Hybrid Problems of Turbomachinery
Aerothermodynamics in China
Optimization of Axial-Flow Pump Cascade Solidity Subject to Cavitation-
and Separation-Free Constraints
A Unified Variational Theory of Hybrid Problems for Fully 3-D
Transonic Rotor-Flow with Shocks. Part Ⅰ. Potential Flow
Variable-Domain Finite Element Method Based on Variational Principles
for Solving Hybrid Problems of Fully 3-D Compressible Rotor flow
Generalized Euler's Turbomachine Equation and Free Vortex Sheet
Conditions in Separated/Cavitated Turbo-Flows
A New Pseudo:Potential Model for Rotational Turbo-How. ( Ⅰ ) Variational
Formulation and Finite Element Solution for Transonic Blade-to-
Blade Flow
Variable-Domain Variational Finite Element Method. a General Approach
to Free/Moving Boundary Problems in Heat and Fluid Flow
……
第二部分 流熱固耦合問(wèn)題
第三部分 非定常與多工況問(wèn)題
第四部分 其他

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