Read e-book online Advances in Chemical Engineering PDF

By David H. West and Gregory Yablonsky (Eds.)

ISBN-10: 0123744598

ISBN-13: 9780123744593

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1989, 1993). The methods of over­ coming the difficulty that have been used so far lead often to the algo­ rithmic (not related to the accuracy of computer computations) error in computations. The use of the tree notion allows it to be used to develop accurate algorithms for the calculation of G(xext), or substantiate the applicability and assess the accuracy of alternative algorithms. The issues of constructing the algorithms intended for solving the problem of search for G(xext) and related to the direct application of thermodynamic tree were considered in the work by Gorban et al.

1 Introductory notes In the works devoted to study and development of MEISs numerous examples on their application to the analysis of various problems were certainly presented. They are formation of harmful substances during fuel combustion and cleaning of combustion products from these components, fuel processing, atmospheric pollution with anthropogenic emissions, sta­ tionary and nonstationary flow distribution in hydraulic systems, etc. These examples should illustrate practical efficiency of MEISs, their cap­ abilities for revealing specific features of the modeled process and deter­ mining directions of its improvement.

Here the comparative analysis of MEIS characteristics will be made on the example of the simplest mechanism: x1 ! x2, x2 ! 5. , the studied problem is represented in the form: find max x3 ð76Þ x1 þ x2 þ x3 ¼ 1; ð77Þ subject to Dt ðyÞ ¼ fx : x kx2 ð78Þ yg; c; ð79Þ xj ! 0: ð80Þ Obviously, model (76)–(80) does not require any comments. 4 and is not treated additionally here. The stated problem is presented graphically in Figure 10. The thermo­ dynamically unattainable zones from y subject to (78) are indicated by the hatched area of the triangle A1A2A3 of the material balance.

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Advances in Chemical Engineering by David H. West and Gregory Yablonsky (Eds.)


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