Download PDF by Charles Donald Holland: Computer Methods for Solving Dynamic Separation Problems

By Charles Donald Holland

ISBN-10: 0070295735

ISBN-13: 9780070295735

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J. W. Burdett and C . D. , 001. 17, p. 1080 (1971). ) i DYNAMICS OF A MULTIPLE-EFFECT EVAPORATOR SYSTEM 83 Equations (3-1 1 ) and (3-12) may be developed by following the outline given in Prob. 3-3. The following solution to this problem may be deduced from the result given by Carslaw and Jaeger(5) in case IV on page 126. 0 Y,(x) = B, C,(B, cos D l . , Bn = first n positive roots of (P2 - HI H Z ) sin Dl - B(H, + H z ) cos pl = 0 An outline of the method of solution is given in Probs. 3-4 and 3-5.

C. W. Gear: "Simultaneous Numerical Solution of Differential-Algebraic Equations," IEEE Trans. Circuit Theory, 18(1): 89 (1971). 8. A. Gerlack: "Ueber Siedetemperaturen der Salzosungeen and Vergleiche der Eihohung der Siedetemperaturen Mit der Ubrigen Eigenschafter der Salzosungen," Z. Anal. , 26:412 (1887). 9. F. E. Hess, C. D. Holland, Ron McDaniel, and N. J. , 56(6): 181 (1977). 10. C. D. , 1974. 11. C. D. Holland: Fundamentals of Multicomponent Distillation, McGraw-Hill Book Company, New York, 1981.

S. ) 74 STAGED SEPARATION PROBLEMS-TWO-POINT IMPLICIT METHOD ( ( DYNAMICS OF A MULTIPLE-EFFECT EVAPORATOR SYSTEM 75 treater, or to the vacuum system. Most of the evaporators were equipped with 2-inch by 22-feet, 16-gauge tubes. The total areas for heat transfer varied from 3000 to 4000 square feet per effect. As shown in Fig. 3-2, demister mats were used to prevent the entrainment of process liquid in the vapor leaving the sump of each evaporator. The process liquid entered the evaporator tubes through a ~uitablydesigned distributor at the top of each evaporator.

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Computer Methods for Solving Dynamic Separation Problems (Mcgraw Hill Chemical Engineering Series) by Charles Donald Holland


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