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Titlebook: Chemical Reactor Design and Technology; Overview of the New Hugo I. Lasa Book 1986 Martinus Nijhoff Publishers, Dordrecht 1986 dynamics.en

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书目名称Chemical Reactor Design and Technology
副标题Overview of the New
编辑Hugo I. Lasa
视频video
丛书名称NATO Science Series E:
图书封面Titlebook: Chemical Reactor Design and Technology; Overview of the New  Hugo I. Lasa Book 1986 Martinus Nijhoff Publishers, Dordrecht 1986 dynamics.en
描述Today‘s frustrations and anxieties resulting from two energy crises in only one decade, show us the problems and fragility of a world built on high energy consumption, accustomed to the use of cheap non-renewable energy and to the acceptance of eXisting imbalances between the resources and demands of countries. Despite all these stressing factors, our world is still hesitatins about the urgency of undertaking new and decisive research that could stabilize our future, Could this trend change in the near future? In our view, two different scenarios are possible. A renewed energy tension could take place with an unpredictable timing mostly related to political and economic factors, This could bring again scientists and technologists to a new state of shock and awaken our talents, A second interesting and beneficial scenario could result from the positive influence of a new generation of researchers that with or without immediate crisis, acting both in industry and academia, will face the challenge of developing technologies and processes to pave the way to a less vulnerable society, Because Chemical Reactor Design and Technology activities are at the heart of these required new techno
出版日期Book 1986
关键词dynamics; energy consumption; engine; flow; fluidized bed; heat transfer; hydrodynamics; measurement; methan
版次1
doihttps://doi.org/10.1007/978-94-009-4400-8
isbn_softcover978-94-010-8457-4
isbn_ebook978-94-009-4400-8Series ISSN 0168-132X
issn_series 0168-132X
copyrightMartinus Nijhoff Publishers, Dordrecht 1986
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Understanding the product lifecycle,icles are normally carried into and out of the unit by the liquid stream. In three-phase fluidized beds the solids are not transported out of the unit by the liquid stream, they are fed and withdrawn independently of the liquid stream [3]. Epstein [3] introduced an interesting classification for thr
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Product lifecycle management systems,an fluids. Beasly and Clark [8] found that spatial variations in void fraction significantly influenced on the dynamic response of both fluid and solid temperature in the simulation of a packed bed for thermal energy storage. Snaddon and Dietz [9] took the structure of the bed into account when they
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Modelling and Simulation of Two-Phase Fluidized Bed Reactors,idized beds. Models for gas-solid reactions are treated separately. A brief survey is given of some advanced models which do not fall neatly within the usual range of assumptions or conditions. Emphasis throughout is not only on what is known, but also on challenges and new developments, including t
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0168-132X processes to pave the way to a less vulnerable society, Because Chemical Reactor Design and Technology activities are at the heart of these required new techno978-94-010-8457-4978-94-009-4400-8Series ISSN 0168-132X
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Book 1986earchers that with or without immediate crisis, acting both in industry and academia, will face the challenge of developing technologies and processes to pave the way to a less vulnerable society, Because Chemical Reactor Design and Technology activities are at the heart of these required new techno
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