000 01341nam a2200217#a 4500
001 vtls000004036
008 230822s1987 xx 000 0 eng d
040 _aJPS
090 0 0 _aHYDR 627 CIA
100 _aCIALONE, MARY A.
_eauthor
245 2 _aA NUMERICAL MODEL FOR SHOALING AND REFRACTION OF THIRD-ORDER CNOIDAL WAVES OVER AN IRREGULAR BOTTO
260 _aWASHINGTON: DEPARTMENT OF THE ARMY,
_c1987
300 _aVARIOUS PAGIN
505 _a1. Introduction 2. Historical work on stokes wave theory 3. Stoke wave theory 3.1 Overview of finite amplitude wave theory 3.2 A third order stoke wave theory 3.3 Range of validity 3.4 Derivation of energy flux, energy, and group velocity 3.5 Energy flux comparison 4. Theory of surface water wave transformation 4.1 Refraction 4.2 Shoaling 5. The numerical model 5.1 General 5.2 Subroutine DISPERS 5.3 Subroutine DELK 5.4 Subroutine DELF 6. Results 6.1 Test cases: Small amplitude versus finite amplitude wave theory 6.2 Comparison of model results with laboratory data on wave shoaling 6.3 Model limitations 7. Concluding discussion and recommendations for future work
546 _aENG
650 1 0 _aCOAST.
650 2 0 _aWAVES.
942 _cMONO
990 _a1987
999 _a06195
_a627 CIA
_aVIRTUAA0
_aVTLSSORT0080*0900*1000*2450*2600*3000*5050*5460*6500*6501*9040*9490*9900*9993
_c2763
_d2763
003 JPS