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Post-earthquake fire is one of the most complicated problems
resulting from earthquakes and presents a serious risk to urban
structures. Most standards and codes ignore the possibility of
post-earthquake fire; thus it is not factored in when determining
the ability of buildings to withstand load. This book describes the
effects of post-earthquake fire on partially damaged buildings
located in seismic urban regions. The book quantifies the level of
associated post-earthquake fire effects, and discusses methods for
mitigating the risk at both the macro scale and micro scale. The
macro scale strategies address urban regions while the micro scale
strategies address building structures, covering both existing
buildings and those that are yet to be designed.
Batch chemical processes, so often employed in the pharmaceutical
and agrochemical fields, differ significantly from standard
continuous operations in the emphasis upon time as a critical
factor in their synthesis and design. With this inclusive guide to
batch chemical processes, the author introduces the reader to key
aspects in mathematical modeling of batch processes and presents
techniques to overcome the computational complexity in order to
yield models that are solvable in near real-time. This book
demonstrates how batch processes can be analyzed, synthesized, and
designed optimally using proven mathematical formulations. The text
effectively demonstrates how water and energy aspects can be
incorporated within the scheduling framework that seeks to capture
the essence of time. It presents real-life case studies where
mathematical modeling of batch plants has been successfully
applied.
Batch chemical processes, so often employed in the pharmaceutical
and agrochemical fields, differ significantly from standard
continuous operations in the emphasis upon time as a critical
factor in their synthesis and design. With this inclusive guide to
batch chemical processes, the author introduces the reader to key
aspects in mathematical modeling of batch processes and presents
techniques to overcome the computational complexity in order to
yield models that are solvable in near real-time. This book
demonstrates how batch processes can be analyzed, synthesized, and
designed optimally using proven mathematical formulations. The text
effectively demonstrates how water and energy aspects can be
incorporated within the scheduling framework that seeks to capture
the essence of time. It presents real-life case studies where
mathematical modeling of batch plants has been successfully
applied.
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