Academy of Finland Research Programme Lastu 2010 2015. Computational Science



Similar documents
Academy of Finland Research Programme SALVE Responding to Public Health Challenges

The Application of Information Technology in Mechanical, Civil and Automation Engineering

Aalto University Where science and art meet technology and business

The Academy of Finland funds the Sustainable Energy (SusEn) Research Programme with 19,3 million euros.

MOLECULAR TECHNOLOGY

Finnish Marine Research Infrastructure FINMARI

A National Computing Grid: FGI

Professor of environmental law and docent (UTU and UEF), LL.D. LL.Lic. LL.M.

THEMATIC REVIEW ON ADULT LEARNING

Emerging Trends in Software Testing Introduction to course

Opportunities for industry - perspective of CLEEN Ltd

University education 2012

CLEEN - The vehicle for SGEM

From the Dean. Tuija Pulkkinen Dean

FUTURE HEALTH COOPERATION BETWEEN PUBLIC AND PRIVATE SECTORS IN KUOPIO

Research Programme on Neuroscience. International Research Programme on Neuroscience

Finnish business and research delegation. Visit to PERNAMBUCO November 2014

University Consortium of Pori (UCPori) April 7th, 2015

Otaniemi International Innovation Centre (OIIC) Innovation Support Activities

INTERNATIONAL MASTER S DEGREE PROGRAMMES

Innovation policy overview. Finland

Gustav Djupsjöbacka was born in

TRANSCRIPT OF RECORDS AALTO UNIVERSITY 1 (6) :35. Date of birth Date of registration

LUMA CENTRE FINLAND: NATIONAL LUMA DAYS NATIONAL SCIENTIX DAYS THE 5 TH ISSE SYMPOSIUM

NELI-Programme. Kymenlaakso Logistics Development Programme Raija Salo, March 2009

School of Engineering WELCOME TO OTANIEMI AND AALTO UNIVERSITY!!

Future and Emerging Technologies (FET) in H2020. Ales Fiala Future and Emerging Technologies DG CONNECT European Commission

SRC programme calls 2016: list of selected consortia

Noise Control Engineering education in Finland

FINNISH ADVISORY BOARD ON RESEARCH INTEGRITY

VI Liekkipäivä Matti Kytö

1 Introduction. Kari I. Leväinen

Turku School of Economics: Strategy for

Energy efficient Indoor Environments- Indoor pilot

Biomedical Engineering Education in Finland

Introduction to PEFC Standards Revision in

VISITORS FROM FINLAND TO IIASA

Haaparanta, Leila University of Tampere Finnish Graduate School of Philosophy

EXAMPLES OF TEP (TfL) SOLAR ENERGY PROJECTS, PAST AND PRESENT SINCE 1980 S Kari Silfverberg, November 2015

Master s Degree Programme in Computer, Communication, and Information Sciences. Petri Vuorimaa

Research-based teaching at the heart of teacher education

Strategic Centre for Science, Technology and Innovation Energy and Environment CLEEN Oy. Tommy Jacobson CLEEN Oy. 15 th of October, 2009

VTT Technical Research Centre of Finland 2010

Future and Emerging Technologies (FET) FET-Open in Work Programme in H2020

Finland STRUCTURE OF HIGHER EDUCATION SYSTEM

ResearcherID: B

Introduction to bioinformatics

Infotech Oulu. P.O. Box 4500 FIN University of Oulu Finland

Applied mathematics and mathematical statistics

University education 2014

MASTER S DEGREE PROGRAMME IN BIOINFORMATICS

Telephone: Chief Technology Officer, Oy Eero Paloheimo Ecocity Ltd.

2nd ANNOUNCEMENT AND PRELIMINARY PROGRAMME. The Twelfth Scandinavian International Conference on Fluid Power, SICFP 11

UniPID - FINNISH UNIVERSITY PARTNERSHIP FOR INTERNATIONAL DEVELOPMENT. UniPID Info Session at the Development Week Outi Etuaho and Melissa Plath

Regional innovation hubs and their role to international cooperation

Growth with IoT initiatives for Finland

The College of Science Graduate Programs integrate the highest level of scholarship across disciplinary boundaries with significant state-of-the-art

Visiting Scholar at the Nordic Centre Fudan University.

Departments and Specializations

POHJOLAN VOIMA COMBINES RESOURCES

COGNITIVE SCIENCE AND NEUROSCIENCE

HELSINKI COMMISSION HELCOM JAB 4/2011 Joint Advisory Board of HELCOM CORESET/TARGREV Fourth Meeting Vilnius, Lithuania, 4 October 2011

EU senior citizens as active users of gerontechnology innovations May 2009 Päijät-Häme, Finland

How To Create A Global Energy And Environment Research And Development (Cleen) Project

Foresighting energy research and other observations of energy. Saila Seppo, PhD, LicSc (Tech) Programme Manager

1. University of Tartu, Graduate School in Biomedicine and Biotechnology

Computational Science and Informatics (Data Science) Programs at GMU

UNIVERSITY OF OULU. Department of Electrical Engineering (EE)

M.Sc. in Nano Technology with specialisation in Nano Biotechnology

Paradigm Changes Affecting the Practice of Scientific Communication in the Life Sciences

Strategy for the Internationalisation of Higher Education Institutions in Finland

Make the most of your exchange experience. four Finnish. universities. on one campus

SUBJECT-SPECIFIC SUPPLEMENTARY NOTES

Transcription:

Academy of Finland Research Programme Lastu 2010 2015 Computational Science

Computational Science Research Programme (Lastu) 2010 2015 Lastu in brief With the rapid development of computational devices and methods over the last few years, a completely new scientific discipline has emerged: computational science. It can be applied to all those research questions that require large amounts of data or high-performance computing. Through modelling and simulation complex experiments, a computational approach can lead to significant savings compared with practical experiments, which may not even be feasible. The main goals of the Computational Science Research Programme (LASTU) are to support increasingly complex computational studies in different fields of science, increase the methodological capabilities and promote good practices in data and software management. Computational science a new way of doing science The revolutionary development of information technology has dramatically changed the way research is done today. The calculation and data processing capacities of computers have reached the level where real systems can be described by computational models. Previously, only parts of real phenomena could be modelled, for example in climate modelling, where small-scale models for chemical reactions and large-scale air-flow models have been treated separately. Now these can be combined, which will improve our understanding of the behaviour of complicated systems where the interaction of small- and large-scale phenomena is crucial. Computational science has become the third leg next to theoretical and experimental science. Great challenges Computational science can help many scientific disciplines to solve problems hitherto inaccessible with tra- ditional methods. This is the case in brain research, for example, where the amount of data is huge, or in pulp manufacturing processes, where simulation requires high-performance computation in fluid analysis. A key topic of the LASTU research programme consists of such grand challenges where computationally challenging and scientifically significant questions are studied. Topical examples, in addition to climate change, are questions related to health and welfare, the security of global data networks, and controlling the global economy. Models describing these systems contain many interlinking elements. To solve, verify, and interpret these is both important to society and scientifically challenging. National and international development The breakthrough of computational science is part of the coinciding change of the science paradigm. This new principle is called escience. Research is moving into virtual environments. We need only look at the

dramatic changes in human interaction and the utilisation of library services, for instance. The idea of escience has also reached the political level, as a number of escience strategies have been written in the EU and at the national level. Finland, too, drafted a national escience strategy in 2007. One of the key suggestions in the strategy was to launch a national research programme in computational science. In addition, escience has also received a notable position at the Nordic level, being one of the future focus areas of Nordic science policy. to develop computational applications for different disciplines and for interdisciplinary research on various scientific and social problems and phenomena. To improve methodological skills and competencies, the research programme also aims to raise the level of mathematical and computer science knowledge in the scientific community. It will promote interaction between mathematics, computer science, information technology and research applying computational Goals One of the main objectives of the Computational Science Research Programme is to promote the use of computational methods throughout society. In view of this objective, the programme will be working to develop computational methods and the necessary statistical, mathematical and computer science solutions; to promote the efficient and appropriate use of infrastructures; to support computational science research; and

methods. To increase interdisciplinary interaction, the research programme aims to encourage transdisciplinary collaboration between application fields and algorithm and method development, and to act as a catalyst to refine ideas to concrete research co-operation. The programme aims to promote good practices in the storage and recording of data used and produced in research. Data are often part of international joint projects implying that the same commonly accepted practices must be followed everywhere. In terms of escience, this is still a considerable challenge. After programme launch The research programme can act as a link between scientists, not only within the LASTU projects, but in a broader context as well. There are a number of graduate schools in Finland and the other Nordic countries in the field of computational science. A particular goal is to bring these young scientists together under the com- mon interest of computational science. LASTU can also be a national contact point for the planned Nordic research programme in escience. In the first call of LASTU in 2009, funding was granted to seven Finnish research consortia as well as Finnish partners in three international projects in ERA-SysBio, the ERA-NET for systems biology. In 2011, LASTU plans to open another call, whose focus and timetable will be decided in 2010. Photos: futureimagebank.com, rodeo.fi Layout: Sole Lätti Helsinki University Print, Helsinki 2010

Lastu research programme Projects funded in the Lastu call BrIAn: Computational analysis of complex brain imaging data Aapo Hyvärinen, University of Helsinki Riitta Hari, Aalto University, TKK ComQuaCC: Computational research chain from quantum chemistry to climate change Hanna Vehkamäki, University of Helsinki Lauri Halonen, University of Helsinki Kari Lehtinen, Finnish Meteorological Institute SimITER: Turning Teraflops into Megawatts Taina Kurki-Suonio, Aalto University, TKK Markus Arila, VTT Technical Research Centre of Finland Jukka Heikkinen, Aalto University, TKK Kai Nordlund, University of Helsinki Jura Tarus, CSC IT Center for Science Jan Westerholm, Åbo Akademi University Projects funded in the ERA-SysBio+ call CSI Speech: Computerized inversion for spoken language - An interdisciplinary consortium on inverse problems in the production and perception of speech Samuli Siltanen, University of Helsinki Paavo Alku, Aalto University, TKK Risto Ilmoniemi, Aalto University, TKK Anne-Maria Laukkanen, University of Tampere SYNERGY: Systems approach to gene regulation biology through nuclear receptors Finnish partners Sampsa Hautaniemi, University of Helsinki (coordinator) Olli A Jänne, University of Helsinki Antti Honkela, Aalto University, TKK evlbi+geo: From ultrarapid data transfer into science - near realtime VLBI application Markku Poutanen, Finnish Geodetic Institute Merja Tornikoski, Aalto University, TKK MUMO: Multiscale modelling of chemical processes Tapio Salmi, Åbo Akademi University Matti Alatalo, Lappeenranta University of Technology Pertti Koukkari, VTT Technical Research Centre of Finland Ilkka Turunen, Lappeenranta University of Technology Novac: Novel advanced mathematical and statistical methods for understanding climate Heikki Haario, Lappeenranta University of Technology Heikki Järvinen, Finnish Meteorological Institute Erkki Oja, Aalto University, TKK Johanna Tamminen, Finnish Meteorological Institute Tcellnet: Signalling pathways and gene regulator networks responsible for Th17 cell differentiation Finnish partners Riitta Lahesmaa, University of Turku (coordinator) Harri Lähdesmäki, Tampere University of Technology isam: Integrative Systems Analysis of the Shoot Apical Meristem Finnish partner Yrjö Helariutta, University of Helsinki

Further information Academy of Finland Pentti Pulkkinen, PhD Programme Manager pentti.pulkkinen@aka.fi Anssi Mälkki, PhD Programme Manager anssi.malkki@aka.fi Ritva Helle Project Officer ritva.helle@aka.fi Programme website: www.aka.fi/lastu/eng Vilhonvuorenkatu 6 POB 99, FI-00501 Helsinki, Finland Tel. +358 9 774 881 Fax +358 9 7748 8299 www.aka.fi/eng keskus@aka.fi