EconPapers    
Economics at your fingertips  
 

Noise in the Climate System — Ubiquitous, Constitutive and Concealing

Hans von Storch, Jin-Song von Storch and Peter Müller

A chapter in Mathematics Unlimited — 2001 and Beyond, 2001, pp 1179-1194 from Springer

Abstract: Abstract Climate is largely determined by the fluid flows in the atmosphere and oceans. These flows are governed by the laws of fluid dynamics and thermodynamics. These laws are partial differential equations that represent the conservation of mass, momentum, energy and other quantities.1 If we could solve these equations, with the right initial and boundary conditions, then we would have the answers to all the pressing questions of the current climate debate. This, however, is not possible. Even if there were a unique set of such equations the only consensus about them is that they are highly and multiply nonlinear. They couple processes across all scales, from the planetary scales of wind and current systems to the micro-scales of molecular diffusion. The resulting flow is turbulent, with everything depending on everything else. It is also impossible to know the exact initial and boundary conditions, such as the exact shape of the continents or the details of human land use.

Date: 2001
References: Add references at CitEc
Citations:

There are no downloads for this item, see the EconPapers FAQ for hints about obtaining it.

Related works:
This item may be available elsewhere in EconPapers: Search for items with the same title.

Export reference: BibTeX RIS (EndNote, ProCite, RefMan) HTML/Text

Persistent link: https://EconPapers.repec.org/RePEc:spr:sprchp:978-3-642-56478-9_62

Ordering information: This item can be ordered from
http://www.springer.com/9783642564789

DOI: 10.1007/978-3-642-56478-9_62

Access Statistics for this chapter

More chapters in Springer Books from Springer
Bibliographic data for series maintained by Sonal Shukla () and Springer Nature Abstracting and Indexing ().

 
Page updated 2026-06-01
Handle: RePEc:spr:sprchp:978-3-642-56478-9_62