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The Simulation And Prediction Of Environmental Change Of Liaohe River Estuary Wetland

Posted on:2013-01-05Degree:MasterType:Thesis
Country:ChinaCandidate:H WuFull Text:PDF
GTID:2211330371959228Subject:Management Science and Engineering
Abstract/Summary:
With the development of science and technology as well as the economic globalization, the regional competition has become increasingly intense, an organizational form is being explored in order to promote regional economic development. Recently, Industrial clusters which consist of some small and medium-sized enterprises have drawn people's attention. There are many industrial clusters in our country whose number keep growing, Wenzhou shoe industry and Yiwu commodity market being the prominent examples. The development of industrial clusters in our country are backward compare with developed counties, particularly in the informational construction. It's important to improve the industrial clusters competition by accelerating informatization.A concept of ARP is propsed in this paper around industrial clusters informatization in backround of industrial clusters, a public information management platform of industrial clusters is established with the combination of present implementation of ERP.First, the supply chain super-network of industrial clusters and an information model of regional resources are provided based on analysis of concept and features of the industrial clusters and topological structure of supply chain.Then, according to different economic activities, the enterprises of industrial clusters are divided into production and sales-type.The resources information of two kinds of entities is given, production and marketing models are established.At last, basic features, major functions and crucial technology of the ARP system are analyzed and explained in this paper, the needs of the system is analyzed and preliminary design is accomplished with visual studio and access as tools. The design majorly consists of data base design, functional modle and interface design.
Keywords/Search Tags:wetland, system dynamics, simulation model
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