化學(xué)工程 在 工業(yè)通用技術(shù)及設(shè)備 分類(lèi)中 的翻譯結(jié)果
本文關(guān)鍵詞:聚焦結(jié)構(gòu)、界面與多尺度問(wèn)題,開(kāi)辟化學(xué)工程的新里程,由筆耕文化傳播整理發(fā)布。
在分類(lèi)學(xué)科中查詢(xún) 所有學(xué)科 工業(yè)通用技術(shù)及設(shè)備 無(wú)機(jī)化工 有機(jī)化工 工業(yè)經(jīng)濟(jì) 自動(dòng)化技術(shù) 生物學(xué) 石油天然氣工業(yè) 高等教育 宏觀經(jīng)濟(jì)管理與可持續(xù)發(fā)展 歷史查詢(xún)
化學(xué)工程
Application of Rheology in Chemical Engineering
流變學(xué)在化學(xué)工程中的應(yīng)用
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Unsteady-State Operations──Challenges and Opportunities in Chemical Engineering
非定態(tài)操作──化學(xué)工程面臨的挑戰(zhàn)與機(jī)會(huì)
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Recent Development of Chemical Engineering Science
化學(xué)工程科學(xué)發(fā)展的回顧與思考
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Exploration of and Practice for the Construction of the Core Course Group in Chemical Engineering and Technology
化學(xué)工程與工藝核心課程群建設(shè)的探索與實(shí)踐
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Focus Attention on Structure,Interface and Multi-scale Issues to Open up New Mileage of Chemical Engineering
聚焦結(jié)構(gòu)、界面與多尺度問(wèn)題,開(kāi)辟化學(xué)工程的新里程
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Compared with its traditional applications, CFD is facing more complicated multiphase systems and coupled processes of flow, transportat and reaction. Traditional continuum approaches based on mono-scale statistical averaging are insufficient to precise design of products and processes.
與傳統(tǒng)應(yīng)用領(lǐng)域相比,化學(xué)工程領(lǐng)域主要面對(duì)的是復(fù)雜多相流體系統(tǒng)及流動(dòng)、傳遞和反應(yīng)相耦合的過(guò)程,基于單尺度統(tǒng)計(jì)平均的傳統(tǒng)連續(xù)介質(zhì)方法已很難滿(mǎn)足對(duì)產(chǎn)品結(jié)構(gòu)和過(guò)程工藝精確設(shè)計(jì)的要求,而多尺度方法與粒子方法的結(jié)合是一條有效的途徑。
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Focus of Chemical Engineering--UnderstandingSpace-time Multi-scale Structure
化學(xué)工程的發(fā)展趨勢(shì)——認(rèn)識(shí)時(shí)空多尺度結(jié)構(gòu)及其效應(yīng)
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As the development of atomizing drying, chemical vapor deposit and plasma reactor and so on, the theoretical researches and applications have flourished.
隨著噴霧干燥,化學(xué)氣相沉積,等離子體反應(yīng)設(shè)備等化工技術(shù)的深入發(fā)展,氣霧兩相流的傳質(zhì)理論和應(yīng)用得到的極大地豐富,同時(shí)由于液霧特征尺寸為微米量級(jí),屬于氣溶膠,因此成為化學(xué)工程與氣溶膠科學(xué)交叉領(lǐng)域新的增長(zhǎng)點(diǎn)。
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In this dissertation, the method to synthesize separation processes by the artificial intelligent techniques is explored, so as to make the problem be solved and make the foundation for realizing computerization and automization in the whole procedure of process design.
本文探討利用人工智能技術(shù)解決分離過(guò)程綜合問(wèn)題的方法,進(jìn)而使這一化學(xué)工程領(lǐng)域中的傳統(tǒng)難題得到解決,為化工設(shè)計(jì)全面實(shí)現(xiàn)計(jì)算機(jī)化打下基礎(chǔ)。
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The effects of process parameters on the freeze-drying for the heat transfer pattern,the heating temperture and the pressure were discussed.
冷凍干燥過(guò)程的實(shí)驗(yàn)研究涂偉萍,田文清,楊卓如,陳煥欽,譚盈科(華南理工大學(xué)化學(xué)工程研究所,廣州510641)關(guān)鍵詞冷凍干燥;
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chemical engineering
The method can be used not only to reveal the quantitative correlation between flash points and molecular structures of alkanes but also to predict the flash points of organic compounds for chemical engineering.
Optimization of Chemical Engineering Processes under Uncertainty under Hard and Soft Constraints
Modified Water Pinch Method for Designing Resource-Efficient Chemical Engineering Systems
Challenges and Opportunities for Chemistry and Chemical Engineering
The 6th World Congress of Chemical Engineering September 23-28, 2001, Melbourne, Australia
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electrochemical engineering
Because of its extraordinary chemical stability, diamond is a perspective electrode material to be used in electrochemistry and electrochemical engineering.
Proceedings of Electrochemical Engineering symposium-Newcastle 1971
Performance criteria and nomenclature in electrochemical engineering
This paper is a recommendation of the Working Party on Electrochemical Engineering of the European Federation of Chemical Engineering.
On the basis of the electrolytic reduction of 4-nitrobenzoic acid to 4-aminobenzoic acid, the present paper deals with electrochemical engineering in a multi-phase medium.
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骸癊ngineering Chemistry”is a branch of cience which appeared approximately one hundred years ago.With the development of modern chemical engineering and chemical technology and their combination,there have appeared new and promising things in the field of engineering chemistry.An important multi-disciplinary branch of science,namely,Industrial Chemical Engineering Technology,emerged recently.It deals with not only the quantitative research but also the industrialization and technology aspects of engineering chemistry.Beginning...
骸癊ngineering Chemistry”is a branch of cience which appeared approximately one hundred years ago.With the development of modern chemical engineering and chemical technology and their combination,there have appeared new and promising things in the field of engineering chemistry.An important multi-disciplinary branch of science,namely,Industrial Chemical Engineering Technology,emerged recently.It deals with not only the quantitative research but also the industrialization and technology aspects of engineering chemistry.Beginning from the concept of engineering chemistry and its development,this aricle pointed out theat the frontiers of engineering chemistry should be:multi-phase reaction engineering,separation science and technology,biochemical engineering and chemical engineering of materia1s science.This article can be used as a aid in strategic decision-making.
工程化學(xué)(EngineeringChemistry)是一個(gè)產(chǎn)生近百年的學(xué)科名詞,近代化學(xué)工程和化學(xué)技術(shù)的發(fā)展與結(jié)合,給它灌注了新的內(nèi)涵,使之成為一個(gè)重要的交叉學(xué)科,即工業(yè)化學(xué)工程技術(shù)(IndustrialChemicalEngineeringTechnology),它將強(qiáng)調(diào)定量研究的ChemicalEngineering擴(kuò)展到工業(yè)和工藝、技術(shù)的內(nèi)涵。本文從工程化學(xué)的產(chǎn)業(yè)和發(fā)展提出現(xiàn)代工程化學(xué)發(fā)展的優(yōu)先領(lǐng)域應(yīng)是:多相反應(yīng)工程、分離科學(xué)與工程、生化工程和材料化工,供在決定學(xué)科發(fā)展戰(zhàn)略時(shí)參考。
All experiments were carried out in geometrically similar vessels with diameters of 0.287m,0.495m and 1.1m respectively. Local gas holdups were measured by a hot film anemometer inupper,louer circulation regions and impeller region in the tanks.The distributions of local gasholdup in the tanks have been studied,especially in the impeller region of the tank with a diameterof 0.287m,the effects of operation conditions on the local gas holdup have also been studied,andabetter understanding of the mechanism of gas-liquid...
All experiments were carried out in geometrically similar vessels with diameters of 0.287m,0.495m and 1.1m respectively. Local gas holdups were measured by a hot film anemometer inupper,louer circulation regions and impeller region in the tanks.The distributions of local gasholdup in the tanks have been studied,especially in the impeller region of the tank with a diameterof 0.287m,the effects of operation conditions on the local gas holdup have also been studied,andabetter understanding of the mechanism of gas-liquid dispersion process may be obtained.
攪拌槽內(nèi)局部氣含率及其分布規(guī)律的研究高正明,,王英琛,施力田,傅舉孚(北京化工大學(xué)化學(xué)工程系,北京100029)關(guān)鍵詞:局部氣含率,氣-液攪拌槽,攪拌1前言氣-液攪拌槽反應(yīng)器在石油化工、生物化工等領(lǐng)域內(nèi)都得到了極為廣泛的應(yīng)用。但由于受到測(cè)試手段的限制,...
Many prucess recugnitiun prublems in the chemical engineering may be included in the cate-gory uf point pattern recognition.In this paper,performances of ANN (artificial neural netwurks) forpoint pettern recognition are studied un the basis of domain partition or covering, su that an ANN rep-resentation for domain partition mapping called σ-network and its learning algorithms are proposed,and a" knowledge accumulatiin"mechanism is suggested.
化學(xué)工程中許多過(guò)程識(shí)別問(wèn)題,可歸結(jié)為點(diǎn)模式識(shí)別,本文以區(qū)域分劃或覆蓋為基礎(chǔ),研究用于點(diǎn)模式識(shí)別的ANN的性能,提出分劃映射的ANN表示──σ網(wǎng)絡(luò)及其學(xué)習(xí)算法,并建立它的“知識(shí)積累”機(jī)制──σ網(wǎng)絡(luò)的序貫學(xué)習(xí)。
 
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本文關(guān)鍵詞:聚焦結(jié)構(gòu)、界面與多尺度問(wèn)題,開(kāi)辟化學(xué)工程的新里程,由筆耕文化傳播整理發(fā)布。
本文編號(hào):191840
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