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Ocean Modeling and Parameterization

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Ocean Modeling and Parameterization
Lowest price (incl. delivery)
28 599,00 JPY
Typical price4 357,24 PLN
Lowest (90 days)207,99 PLN
Offers9
Last updated1 săptămână în urmă
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Price history (90 days)
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2026-08-08 2026-08-15
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2026-08-08207,99
2026-08-15207,99
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SP SpringerNatureLink Shop INT 28 599,00 JPY free 28 599,00 JPY Disponibil 3 zile în urmă View offer
SP Springer Nature Author 28 599,00 JPY 29,00 JPY 28 628,00 JPY Disponibil 1 săptămână în urmă View offer
SP SpringerNatureLink Shop INT 199,99 USD free 199,99 USD Disponibil 3 zile în urmă View offer
SP SpringerNatureLink Shop INT 219,99 USD free 219,99 USD Disponibil 3 zile în urmă View offer
SP SpringerNatureLink Shop INT 219,99 USD free 219,99 USD Disponibil 3 zile în urmă View offer
SP SpringerNatureLink Shop INT 219,99 USD 19,00 USD 238,99 USD Disponibil 3 zile în urmă View offer
SP SpringerNatureLink Shop INT 179,99 GBP 19,00 GBP 198,99 GBP Disponibil 3 zile în urmă View offer
SP Springer Nature Author 179,99 GBP free 179,99 GBP Disponibil 1 săptămână în urmă View offer
SP SpringerNatureLink Shop INT 236,00 EUR 15,00 EUR 251,00 EUR Disponibil 3 zile în urmă View offer

Prețurile și disponibilitatea se pot modifica. Ultima actualizare: 08.08.2026 23:38.

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The realism of large scale numerical ocean models has improved dra­ matically in recent years, in part because modern computers permit a more faithful representation of the differential equations by their algebraic analogs. Equally significant, if not more so, has been the improved under­ standing of physical processes on space and time scales smaller than those that can be represented in such models. Today, some of the most challeng­ ing issues remaining in ocean modeling are associated with parameterizing the effects of these high-frequency, small-space scale processes. Accurate parameterizations are especially needed in long term integrations of coarse resolution ocean models that are designed to understand the ocean vari­ ability within the climate system on seasonal to decadal time scales. Traditionally, parameterizations of subgrid-scale, high-frequency mo­ tions in ocean modeling have been based on simple formulations, such as the Reynolds decomposition with constant diffusivity values. Until recently, modelers were concerned with first order issues such as a correct represen­ tation of the basic features of the ocean circulation. As the numerical simu­ lations become better and less dependent on the discretization choices, the focus is turning to the physics of the needed parameterizations and their numerical implementation. At the present time, the success of any large scale numerical simulation is directly dependent upon the choices that are made for the parameterization of various subgrid processes.

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