We describe a method for modeling aggregation in a flowing fluid. In the model, aggregation proceeds by the accumulation of a “nutrient.” The nutrient is modeled using a lattice Boltzmann model of transport. The aggregate absorbs the nutrient, and the amount absorbed determines the local growth probability. This model contains some of the essential features of growth of stony corals. We find that the morphology of the aggregates changes drastically as we increase the Péclet number from a regime where nutrient transport is diffusion controlled to a regime where hydrodynamic transport dominates. This is in qualitative agreement with the morphogenesis of stony corals.Published versio
Despite cold-water coral (CWC) reefs being considered biodiversity hotspots, very little is known ab...
Abstract. We present models of the dynamics of phytoplankton aggregates. We start with an individual...
Growth characteristics of colonies of the branching zooxanthellate octocoral Sinularia flexibilis, w...
We describe a method for modeling aggregation in a flowing fluid. In the model, aggregation proceeds...
In stony corals it is often observed that specimens collected from a sheltered growth site have more...
The growth of scleractinian corals is strongly influenced by the effect of water motion. Corals are ...
Understanding the growth process of scleractinian corals is crucial to study their role in the marin...
Understanding external deciding factors in growth and morphology of reef corals is essential to eluc...
Calcification in scleractinian corals is a highly complex process depending on a wide variety of phy...
We are interested in deciphering the mechanisms for morphogenesis in the Red Sea scleractinian coral...
This paper explores a new application of the constructal theory, namely in describing and predicting...
The uptake of nutrients (N and P) into coral reef communities is proposed to be limited by diffusion...
A mathematical model for coral growth in a well stirred tank is proposed based on nutrient availabil...
We discuss a macroscopical growth model which can be used to simulate growth forms of complex-shaped...
The morphogenesis of colonial stony corals is the result of the collective behaviour of many coral p...
Despite cold-water coral (CWC) reefs being considered biodiversity hotspots, very little is known ab...
Abstract. We present models of the dynamics of phytoplankton aggregates. We start with an individual...
Growth characteristics of colonies of the branching zooxanthellate octocoral Sinularia flexibilis, w...
We describe a method for modeling aggregation in a flowing fluid. In the model, aggregation proceeds...
In stony corals it is often observed that specimens collected from a sheltered growth site have more...
The growth of scleractinian corals is strongly influenced by the effect of water motion. Corals are ...
Understanding the growth process of scleractinian corals is crucial to study their role in the marin...
Understanding external deciding factors in growth and morphology of reef corals is essential to eluc...
Calcification in scleractinian corals is a highly complex process depending on a wide variety of phy...
We are interested in deciphering the mechanisms for morphogenesis in the Red Sea scleractinian coral...
This paper explores a new application of the constructal theory, namely in describing and predicting...
The uptake of nutrients (N and P) into coral reef communities is proposed to be limited by diffusion...
A mathematical model for coral growth in a well stirred tank is proposed based on nutrient availabil...
We discuss a macroscopical growth model which can be used to simulate growth forms of complex-shaped...
The morphogenesis of colonial stony corals is the result of the collective behaviour of many coral p...
Despite cold-water coral (CWC) reefs being considered biodiversity hotspots, very little is known ab...
Abstract. We present models of the dynamics of phytoplankton aggregates. We start with an individual...
Growth characteristics of colonies of the branching zooxanthellate octocoral Sinularia flexibilis, w...