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computational domain in Chinese

Pronunciation:
How to pronounce "computational domain""computational domain" in a sentence

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  • 計(jì)算區(qū)域

Examples

  • The numerical solution would be a good approximation of the original solution restricted in the computational domain
    將該計(jì)算結(jié)果作為原問(wèn)題在有界計(jì)算區(qū)域上的數(shù)值近似解。
  • Then we can reduce the original problem to a boundary value problem defined on the bounded computational domain
    這樣我們可以將原無(wú)界區(qū)域上的定解問(wèn)題約化為定義在有界計(jì)算區(qū)域上的邊值問(wèn)題。
  • In this scheme , the computational domain is first divided into two sub - domains , inner domain near the building ' s surface and outer domain far away from the building
    網(wǎng)格剖分時(shí),首先將計(jì)算區(qū)域劃分為緊靠建筑物表面的內(nèi)層區(qū)域和離建筑物較遠(yuǎn)處的外圍區(qū)域。
  • The mathematical model based on gis is built , and the interface program of data conversion between the two models is designed , and the spatial discretion of the computational domain is discussed
    在此基礎(chǔ)上,建立了基于gis的泥沙數(shù)學(xué)模型,設(shè)計(jì)了兩種模式數(shù)據(jù)交換的接口程序,探討了泥沙模型計(jì)算域空間離散問(wèn)題。
  • Only clouds of points instead of grids are distributed over the computational domain and the spatial derivatives of the considered partial equations are estimated using a least - square curve fit on local clouds of points
    與傳統(tǒng)的網(wǎng)格方法不同,無(wú)網(wǎng)格方法的核心是用“點(diǎn)云”離散求解區(qū)域,并基于當(dāng)?shù)攸c(diǎn)云離散結(jié)構(gòu),引入二次極小曲面逼近空間導(dǎo)數(shù)。
  • Namely for the given problem we introduce some suitable artificial boundaries to divide the unbounded physical domain into the bounded computational domain and unbounded part and set up high order artificial boundary conditions on the given artificial boundaries
    也就是,對(duì)于給定的問(wèn)題通過(guò)引入適當(dāng)?shù)娜斯み吔?,將物理區(qū)域分為有界計(jì)算區(qū)域和無(wú)界部分并且在該人工邊界上建立高精度的人工邊界條件。
  • A novel strip - coil - baffle structure used to enhance heat transfer and support the tube bundle for a tube - shell heat exchanger is proposed . the new structure can sleeve the tubes in bundle alternatively to create a vortex flow in a heat exchanger . the numerical simulation on the flow and heat transfer characteristics for this new structure heat exchanger is conducted . the computational domain consists of two strip - coil sleeved tubes and two bare tubes oppositely placed at each corner of a square . the velocity and temperature fields in such strip - coil - baffled channel are simulated using fluent software . the effects of the strip - coil - baffles on heat transfer enhancement and flow resistance in relation to the reynolds number are analyzed . the results show that this new structure bundle can enhance the heat transfer coefficient up to a range of 40 ? to 55 ? in comparison with a bare tube bundle ; meanwhile , higher flow resistance is also accompanied . it is believe that the strip - coil - baffled heat exchanger should have promising applications in many industry fields
    介紹了一種用于強(qiáng)化管殼式換熱器殼側(cè)傳熱和支撐管束的螺旋折流片新型結(jié)構(gòu),該結(jié)構(gòu)是對(duì)換熱器管子相間地套上螺旋折流片以產(chǎn)生旋渦流動(dòng).研究模型是在正方形布置的4個(gè)管子中的2個(gè)對(duì)角管子套上螺旋折流片后形成的通道,利用fluent軟件對(duì)該上述四管通道模型的流場(chǎng)和溫度分布情況進(jìn)行了數(shù)值模擬;分析了四管通道模型中螺旋折流片對(duì)強(qiáng)化傳熱和流動(dòng)阻力隨雷諾數(shù)的變化關(guān)系的影響.算例結(jié)果顯示該新型結(jié)構(gòu)可比相同尺寸的光管通道中的情形傳熱系數(shù)提高約40 ? 55 ? ,同時(shí)也將伴隨較高的流動(dòng)阻力.可以相信螺旋折流片式換熱器將會(huì)在許多工業(yè)領(lǐng)域有良好的應(yīng)用前景
  • In order to validate the feasibility of the novel algorithm , ultrawide band pulse wave is used as incident wave . computational domains are limited by absorbing boundary condition . the transformation technique from near zone to far zone is used when the sampling spot is outside of the computational domains
    時(shí)域成像技術(shù)以超寬帶脈沖源作為入射波源,用吸收邊界條件來(lái)界定計(jì)算域,而當(dāng)采樣點(diǎn)遠(yuǎn)離計(jì)算區(qū)域時(shí),需要通過(guò)近?遠(yuǎn)場(chǎng)的轉(zhuǎn)換技術(shù)把近場(chǎng)等效面上的信息轉(zhuǎn)換到遠(yuǎn)場(chǎng),本文采用簡(jiǎn)單而實(shí)用的柱面波外推法作為近?遠(yuǎn)場(chǎng)的轉(zhuǎn)換方法,收到了較好的效果。
  • After the coordinate transformation , the discrete velocity boltzmann equation is solved directly in computational domain to preserve the geometry of body . the results comparison of cylindrical couette flow at different size meshes , different lattice bgk models and different algorithms shows that , not only the precision of the incompressible lattice bgk model is satisfactory , but also the curvilinear coordinate algorithm is efficient
    首先計(jì)算了存在理論解的圓柱couette流動(dòng),并針對(duì)不同數(shù)目的離散網(wǎng)格、不同格子模型以及不同坐標(biāo)系算法,對(duì)結(jié)果進(jìn)行了比較,不僅再次印證了本文第四章給出的不可壓格子模型具有滿意的計(jì)算精度,而且表明本章的貼體坐標(biāo)算法是行之有效的。
  • More examples:  1  2
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