Today scientists and engineers are commonly faced with the challenge of modelling, predicting and controlling multiscale systems which cross scientific disciplines and where several processes acting at different scales coexist and interact. Such multidisciplinary multiscale models, when simulated in three dimensions, require large scale or even extreme scale computing capabilities. The MAPPER project is developing computational strategies, software and services to enable distributed multiscale simulations across disciplines, exploiting existing and evolving e-Infrastructure. The resulting multi-tiered software infrastructure, which we present in this paper, has as its aim the provision of a persistent, stable infrastructure that will suppor...
Computational simulations and thus scientific computing is the third pillar alongside theory and exp...
this paper we discuss a software infrastructure that enables the construction and operation of distr...
In this position paper, we discuss two relevant topics: (i) generic multiscale computing on emerging...
We present a global overview of the methodology developed within the MAPPER European project to desi...
We present a global overview of the methodology developed within the MAPPER European project to desi...
AbstractWe present a global overview of the methodology developed within the MAPPER European project...
Modeling, coding and running large and multi-scale scientific applications require a high level abst...
Computer simulation is finding a role in an increasing number of scientific disciplines, concomitant...
Multiscale models combine knowledge, data, and hypotheses from different scales. Simulating a multis...
AbstractComputer simulation is finding a role in an increasing number of scientific disciplines, con...
In computational science, the scale of problems addressed and the resolution of solu-tions achieved ...
Inherently complex problems from many scientific disciplines require a multiscale modeling approach....
Abstract. Multiphysics problems are orders of magnitude more complex than single discipline applicat...
Multiscale simulations model phenomena across natural scales using monolithic or component-based cod...
Summary. Because large scale multiphysics problems are expected to be orders of magnitude larger tha...
Computational simulations and thus scientific computing is the third pillar alongside theory and exp...
this paper we discuss a software infrastructure that enables the construction and operation of distr...
In this position paper, we discuss two relevant topics: (i) generic multiscale computing on emerging...
We present a global overview of the methodology developed within the MAPPER European project to desi...
We present a global overview of the methodology developed within the MAPPER European project to desi...
AbstractWe present a global overview of the methodology developed within the MAPPER European project...
Modeling, coding and running large and multi-scale scientific applications require a high level abst...
Computer simulation is finding a role in an increasing number of scientific disciplines, concomitant...
Multiscale models combine knowledge, data, and hypotheses from different scales. Simulating a multis...
AbstractComputer simulation is finding a role in an increasing number of scientific disciplines, con...
In computational science, the scale of problems addressed and the resolution of solu-tions achieved ...
Inherently complex problems from many scientific disciplines require a multiscale modeling approach....
Abstract. Multiphysics problems are orders of magnitude more complex than single discipline applicat...
Multiscale simulations model phenomena across natural scales using monolithic or component-based cod...
Summary. Because large scale multiphysics problems are expected to be orders of magnitude larger tha...
Computational simulations and thus scientific computing is the third pillar alongside theory and exp...
this paper we discuss a software infrastructure that enables the construction and operation of distr...
In this position paper, we discuss two relevant topics: (i) generic multiscale computing on emerging...