Further Investigations in Tubesheet Design for a U-Tube Heat Exchanger

Author:

Paliwal D. N.1,Moulick S. K.2

Affiliation:

1. Department of Applied Mechanics, and Dean (Research and Consultancy)

2. Department of Applied Mechanics. Motilal Nehru Regional Engineering College, Allahabad-211004, India

Abstract

A tubesheet for U-tubesheet heat exchanger is analyzed as an equivalent solid circular plate having complete isotropy in the plane of the tubesheet with usual effective elastic constants. However, the tubesheet is expected to have different values of modulus of elasticity, modulus of rigidity, and Poisson’s ratio in the thickness direction. This anisotropic behavior of the tubesheet in thickness direction is taken into account by using the anisotropic theory of plates. When performing theoretical analysis, normal stress in thickness direction is also not assumed equal to zero. Hence, the resulting expressions for deflection and bending stresses are closer to those of a thick plate. Expression for radial stress is compared with that of an isotropic thin circular plate. Based on this comparison, certain modifications in the existing code formulas are proposed. Some design aspects related to ligament efficiency, effective elastic constants, and tubesheet edge conditions are also discussed. Proposed modifications in the design procedure may lead to six to ten percent saving in the material cost.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

Reference17 articles.

1. Ambartsumyan, S. A., 1970, Theory of Anisotropic Plates, Vol. II, Technomic Publishing Co., Stamford, CN, pp. 8–15 & 130–139.

2. ASME Boiler and Pressure Vessel Code, 1995, Section VIII Division 1, The American Society of Mechanical Engineers, New York, NY.

3. BS:1515 Part 1, 1965, British Standard Specification for Fusion Welded Pressure Vessels, British Standards Institution, London, U.K.

4. BS-5500: 1994, British Standard Specification for Fusion Welded Pressure Vessels, British Standards Institution, London, U.K.

5. CODAP, 1995, “Code Francais de construction des Appareils a Pression” French Code for the Construction of Pressure Vessels, Publication SNCT.

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