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Solution Of The Single Blow Problem With Longitudinal Conduction By Numerical Inversion Of Laplace Transforms by Floyd E. Moreland

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1Solution Of The Single Blow Problem With Longitudinal Conduction By Numerical Inversion Of Laplace Transforms.

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A system of two partial differential equations represent the transient heat transfer behavior of compact heat exchanger surfaces when subjected to a step change in fluid temperature. A solution is presented for this system which includes the effects of longitudinal thermal heat conduction. Also presented are the solutions for the two limiting cases of zero and infinite longitudinal conduction. The numerical results were compared to those of C.P. Howard indicating a significant decrease in computational time and an increase in accuracy of results. The revised curves of maximum slope of fluid temperature versus NTU should be of practical value in the evaluation of heat-transfer data obtained by transient testing of compact heat exchanger surfaces. An unusual combination of mathematical techniques is presented for the solution of a boundary value problem involving partial differential equations. The solution combines the application of Laplace transformation with a numerical technique developed by H. Hurwitz, Jr., and P.F. Sweifel, and adapted by L.A. Schmittroth for the inversion of Laplace transforms. This technique greatly expands the number of cases to which Laplace transforms may be successfully applied. (Author)

“Solution Of The Single Blow Problem With Longitudinal Conduction By Numerical Inversion Of Laplace Transforms.” Metadata:

  • Title: ➤  Solution Of The Single Blow Problem With Longitudinal Conduction By Numerical Inversion Of Laplace Transforms.
  • Author:
  • Language: English

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The book is available for download in "texts" format, the size of the file-s is: 996.54 Mbs, the file-s for this book were downloaded 98 times, the file-s went public at Wed Nov 18 2020.

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2Solution Of The Single Blow Problem With Longitudinal Conduction By Numerical Inversion Of Laplace Transforms.

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A system of two partial differential equations represent the transient heat transfer behavior of compact heat exchanger surfaces when subjected to a step change in fluid temperature. A solution is presented for this system which includes the effects of longitudinal thermal heat conduction. Also presented are the solutions for the two limiting cases of zero and infinite longitudinal conduction. The numerical results were compared to those of C.P. Howard indicating a significant decrease in computational time and an increase in accuracy of results. The revised curves of maximum slope of fluid temperature versus NTU should be of practical value in the evaluation of heat-transfer data obtained by transient testing of compact heat exchanger surfaces. An unusual combination of mathematical techniques is presented for the solution of a boundary value problem involving partial differential equations. The solution combines the application of Laplace transformation with a numerical technique developed by H. Hurwitz, Jr., and P.F. Sweifel, and adapted by L.A. Schmittroth for the inversion of Laplace transforms. This technique greatly expands the number of cases to which Laplace transforms may be successfully applied. (Author)

“Solution Of The Single Blow Problem With Longitudinal Conduction By Numerical Inversion Of Laplace Transforms.” Metadata:

  • Title: ➤  Solution Of The Single Blow Problem With Longitudinal Conduction By Numerical Inversion Of Laplace Transforms.
  • Author:
  • Language: en_US,eng

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The book is available for download in "texts" format, the size of the file-s is: 65.79 Mbs, the file-s for this book were downloaded 137 times, the file-s went public at Tue Oct 06 2015.

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3Solution Of The Single Blow Problem With Longitudinal Conduction By Numerical Inversion Of Laplace Transforms.

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A system of two partial differential equations represent the transient heat transfer behavior of compact heat exchanger surfaces when subjected to a step change in fluid temperature. A solution is presented for this system which includes the effects of longitudinal thermal heat conduction. Also presented are the solutions for the two limiting cases of zero and infinite longitudinal conduction. The numerical results were compared to those of C.P. Howard indicating a significant decrease in computational time and an increase in accuracy of results. The revised curves of maximum slope of fluid temperature versus NTU should be of practical value in the evaluation of heat-transfer data obtained by transient testing of compact heat exchanger surfaces. An unusual combination of mathematical techniques is presented for the solution of a boundary value problem involving partial differential equations. The solution combines the application of Laplace transformation with a numerical technique developed by H. Hurwitz, Jr., and P.F. Sweifel, and adapted by L.A. Schmittroth for the inversion of Laplace transforms. This technique greatly expands the number of cases to which Laplace transforms may be successfully applied. (Author)

“Solution Of The Single Blow Problem With Longitudinal Conduction By Numerical Inversion Of Laplace Transforms.” Metadata:

  • Title: ➤  Solution Of The Single Blow Problem With Longitudinal Conduction By Numerical Inversion Of Laplace Transforms.
  • Author:
  • Language: en_US

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The book is available for download in "texts" format, the size of the file-s is: 190.30 Mbs, the file-s for this book were downloaded 436 times, the file-s went public at Wed Dec 14 2011.

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1Solution of the single blow problem with longitudinal conduction by numerical inversion of laplace transforms

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“Solution of the single blow problem with longitudinal conduction by numerical inversion of laplace transforms” Metadata:

  • Title: ➤  Solution of the single blow problem with longitudinal conduction by numerical inversion of laplace transforms
  • Author:
  • Language: English
  • Publisher: ➤  Defense Technical Information Center
  • Publish Date:
  • Publish Location: Ft. Belvoir

“Solution of the single blow problem with longitudinal conduction by numerical inversion of laplace transforms” Subjects and Themes:

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  • First Year Published: 1964
  • Is Full Text Available: Yes
  • Is The Book Public: Yes
  • Access Status: Public

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