File Name: the algorithmic beauty of seaweeds sponges and corals .zip
This volume is the outcome of a conference. It is mainly devoted to the interaction of biology and computing.
- Coral reef
- The Algorithmic Beauty of Seaweeds, Sponges and Corals
- [PDF] The Algorithmic Beauty of Seaweeds, Sponges and Corals (The Virtual Laboratory) Download
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Skip to search form Skip to main content You are currently offline. Some features of the site may not work correctly. DOI: Kaandorp and J. Kaandorp , J. This book portrays the art of modeling and simulating growth and form of marine organisms. It details large-scale computing methods, scientific visualization, methods of analyzing 2D and 3D forms, and particle-based modeling techniques.
The Algorithmic Beauty of Seaweeds, Sponges and Corals
In this book, methods from fractal geometry are applied to model growth forms, taking as a case study a type of growth process which can be found among various taxonomic classes such as sponges and corals. These models can be used, for example, to With contributions by E. Abraham, D. Barnes, R.
To protect natural coral reefs, it is of utmost importance to understand how the growth of the main reef-building organisms—the zooxanthellate scleractinian corals—is controlled. Understanding coral growth is also relevant for coral aquaculture, which is a rapidly developing business. This review paper provides a comprehensive overview of factors that can influence the growth of zooxanthellate scleractinian corals, with particular emphasis on interactions between these factors. Furthermore, the kinetic principles underlying coral growth are discussed. The reviewed information is put into an economic perspective by making an estimation of the costs of coral aquaculture. Being the main builders of coral reefs, zooxanthellate scleractinian corals i.
It seems that you're in Germany. We have a dedicated site for Germany. Authors: Kaandorp , Jaap A. This book gives a state-of-the-art overview of modeling growth and form of marine sessile organisms - such as stromatolites, algae, and metazoans including stony corals, hydrocorals, octocorals, and sponges -, using large-scale computing techniques, scientific visualization, methods for analyzing 2D and 3D forms, and particle-based modeling techniques. Experts from various disciplines including developmental biology, ecology, computer science, physics and mathematics, who have research interests in modeling the development of these organisms have been invited to contribute.
[PDF] The Algorithmic Beauty of Seaweeds, Sponges and Corals (The Virtual Laboratory) Download
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