By W. Marquardt, M. Nagl (auth.), Manfred Nagl, Wolfgang Marquardt (eds.)
IMPROVE stands for "Information expertise help for Collaborative and disbursed layout strategies in Chemical Engineering" and is a big joint venture of study associations at RWTH Aachen collage. This quantity summarizes the consequences after nine years of cooperative learn paintings.
The concentration of IMRPOVE is on realizing, formalizing, comparing, and, therefore, bettering layout techniques in chemical engineering. specifically, increase specializes in conceptual layout and simple engineering, the place the elemental judgements in regards to the layout or redecorate of a chemical plant are undertaken. layout strategies are analyzed and evaluated in collaboration with commercial partners.
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Extra info for Collaborative and Distributed Chemical Engineering. From Understanding to Substantial Design Process Support: Results of the IMPROVE Project
Design reaction alternatives), input/output information (not shown in this ﬁgure), control ﬂows (solid lines), information ﬂows (also not shown), and synchronous communication (represented by black squares and horizontal lines). For each role, there is a swimlane which shows the activities executed by that role. A rounded rectangle which contains nested rectangles corresponds to an activity whose subactivities can be performed in any order. Finally, the notes attached to activities represent the supporting tools.
The existing speciﬁc environments for developers to be integrated are of diﬀerent quality and completeness. They, also, have quite diﬀerent purposes in the development process but are regarded as having the same rank on an architecture level. Some remarks are to be made before we start the discussion of the architecture: The architecture reﬂects layer 3 and 4 of Fig. 6 and, in addition, has a layer for existing platforms to be used. User interface handling does not appear in the architecture, as our architecture is too sketchy.
This facilitates that the process is carried out within the design environment and not outside of it. On layer 2, we, therefore, ﬁnd external models of tools for diﬀerent kinds of users, where the presentation of these tools corresponds to the languages and methods used within the design process. Analogously, the user interfaces ﬁt the application domain, the organization of a process, its context, and the like. On layer 3 we ﬁnd internal models of tools which represent subconﬁgurations, process structures, collaboration and communication structures etc.