A NUMERICAL MODEL FOR SHOALING AND REFRACTION OF SECOND-ORDER CNOIDAL WAVES OVER AN IRREGULAR BOTT (Record no. 2762)
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000 -LEADER | |
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fixed length control field | 02385nam a2200217#a 4500 |
001 - CONTROL NUMBER | |
control field | vtls000004035 |
008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION | |
fixed length control field | 230822s1987 xx 000 0 eng d |
040 ## - CATALOGING SOURCE | |
Original cataloging agency | JPS |
090 00 - LOCALLY ASSIGNED LC-TYPE CALL NUMBER (OCLC); LOCAL CALL NUMBER (RLIN) | |
Classification number (OCLC) (R) ; Classification number, CALL (RLIN) (NR) | HYDR 627 HAR |
003 - CONTROL NUMBER IDENTIFIER | |
control field | JPS |
100 ## - MAIN ENTRY--PERSONAL NAME | |
Personal name | HARDY, THOMAS A. |
Relator term | author |
245 #2 - TITLE STATEMENT | |
Title | A NUMERICAL MODEL FOR SHOALING AND REFRACTION OF SECOND-ORDER CNOIDAL WAVES OVER AN IRREGULAR BOTT |
260 ## - PRODUCTION, PUBLICATION, DISTRIBUTION, MANUFACTURE, AND COPYRIGHT NOTICE | |
Place of production, publication, distribution, manufacture | WASHINGTON: DEPARTMENT OF THE ARMY, |
Date of production, publication, distribution, manufacture | 1987 |
300 ## - PHYSICAL DESCRIPTION | |
Extent | VARIOUS PAGIN |
505 ## - FORMATTED CONTENTS NOTE | |
Formatted contents note | Chapter 1. Introduction Chapter 2. Survey of water wave theory 2.1 The boundary value problem for water waves 2.2 Small-amplitude wave theory 2.3 Finite-amplitude wave theory 2.4 Stokes wave theory 2.5 Cnoidal wave theory 2.6 Solitary wave theory 2.7 Numerical wave theory 2.8 Brief outline of a derivation second-order cnoidal wave theory Chapter 3. Use of elliptic functions in Cnoidal wave theory 3.1 An illustration of the role cn function in Cnoidal wave theory 3.2 Efficient calculation of elliptic quantities Chapter 4. Shoaling and refraction over an irregular sea bottom 4.1 Wave refraction 4.2 Derivation of the wave angle equation 4.3 Wave shoaling 4.4 Derivation of the conservation of energy flux equation Chapter 5. Description of the numerical model 5.1 Overview of technique 5.2 Model output and input 5.3 Calculating wave height and wave angle 5.3.1 Subroutine ELLIP 5.3.2 Subroutine LENGTH 5.3.3 Subroutine ANGLE 5.3.4 Subroutine EFFLUX Chapter 6. Numerical model results 6.1 Shoaling over a plane bottom 6.1.1 Comparison of wave shoaling among small-amplitude, first-order Cnoidal and second-order Cnoidal waves 6.1.2 Comparison of theoretical and experimental shoaling rates 6.1.3 The shoaling of second-order Cnoidal wave over a plane bottom 6.2 Refraction over a plane bottom 6.2.1 Comparison of wave refraction among small-amplitude, first-order Cnoidal and second order Cnoidal waves 6.2.2 The refraction of second-order Cnoidal waves over a plane bottom 6.3 Shoaling and refraction over non-plane bathymetry 6.3.1 Shoaling and refraction over a spherical shoal 6.3.2 Shoaling and refraction over a trench 6.4 Comparison of computer time between small-amplitude and second-order simulations |
546 ## - LANGUAGE NOTE | |
Language note | ENG |
650 10 - SUBJECT ADDED ENTRY--TOPICAL TERM | |
Topical term or geographic name entry element | COAST. |
650 20 - SUBJECT ADDED ENTRY--TOPICAL TERM | |
Topical term or geographic name entry element | WAVES. |
942 ## - ADDED ENTRY ELEMENTS (KOHA) | |
Koha item type | Monograf |
990 ## - EQUIVALENCES OR CROSS-REFERENCES [LOCAL, CANADA] | |
Link information for 9XX fields | 1987 |
Withdrawn status | Lost status | Damaged status | Not for loan | Collection | Home library | Current library | Shelving location | Date acquired | Total checkouts | Full call number | Barcode | Date last seen | Copy number | Price effective from | Koha item type |
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General Collections | JPS HQ Library | JPS HQ Library | Main Library | 22/08/2023 | HYDR 627 HAR | 1000003638 | 22/08/2023 | 1 | 22/08/2023 | Monograf |