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The Complex Variable Boundary Element Method (CVBEM) has an
important role to play in a number of technical engineering
situations and can be a tremendous help to scholars and
practitioners preoccupied with solving problems in areas such as
heat transport, structural mechanics and river hydraulics. As well
as describing the extremely useful applications of this method, the
authors explain the mathematical background to the CVBEM, which is
vital to understanding the subject as a whole. Advances in the
Complex Variable Boundary Element Method is the most comprehensive
of books on this subject, bringing together ten years of work and
boasting the latest news in CVBEM technology. It will be of
particular interest to those concerned with solving technical
engineering problems - scientists, graduate students, computer
programmers and those working in industry may all find the book
helpful.
The subject of rainfall-runoff modeling involves a wide spectrum of
topics. Fundamental to each topic is the problem of accurately
computing runoff at a point given rainfall data at another point.
The fact that there is currently no one universally accepted
approach to computing runoff, given rainfall data, indicates that a
purely deter ministic solution to the problem has not yet been
found. The technology employed in the modern rainfall-runoff models
has evolved substantially over the last two decades, with computer
models becoming increasingly more complex in their detail of
describing the hydrologic and hydraulic processes which occur in
the catchment. But despite the advances in including this
additional detail, the level of error in runoff estimates (given
rainfall) does not seem to be significantly changed with increasing
model complexity; in fact it is not uncommon for the model's level
of accuracy to deteriorate with increasing complexity. In a latter
section of this chapter, a literature review of the
state-of-the-art in rainfall-runoff modeling is compiled which
includes many of the concerns noted by rainfall-runoff modelers.
The review indicates that there is still no deterministic solution
to the rainfall-runoff modeling problem, and that the error in
runoff estimates produced from rainfall-runoff models is of such
magnitude that they should not be simply ignored."
As well as describing the extremely useful applications of the
CVBEM, the authors explain its mathematical background -- vital to
understanding the subject as a whole. This is the most
comprehensive book on the subject, bringing together ten years of
work and can boast the latest news in CVBEM technology. It is thus
of particular interest to those concerned with solving technical
engineering problems -- while scientists, graduate students,
computer programmers and those working in industry will all find
the book helpful.
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