The Resource Efficiency Assessment Technique for the Foundry Production

Author:

Vidayev Igor G.1,Martyushev Nikita1,Ivashutenko Aleksander S.1,Bogdan Anna M.1

Affiliation:

1. Tomsk Polytechnic University

Abstract

The short analysis of the assessment opportunities is presented for the resource efficiency in various industries and particularly in the foundry production. The developed algorithm of carrying out such assessment is presented. It is shown that such algorithm consists of five steps. They are the formation of the evaluating team, the choice of the technology or a product, the analysis of the chain creation of the added value for a technology or a product, the assessment of the current state of the technology or a product, developing the recommendations for the improvement of the efficiency of resources use. This article describes in detail the works, which need to be carried out at each stage of evaluating the resource efficiency. The evaluating map and the criteria are developed for comparing different types of the foundry technologies as well as the map for assessing the current state of the foundry technology. The result of the accomplished assessment with the described algorithm is the developed recommendations on the use of the enterprise resources.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference5 articles.

1. I.G. Vidyaev, Complex model of the regional system of the innovative type, Tomsk polytechnic university bulletin. 6 (2008) 24-27.

2. I.G. Vidyaev, Assessment of the social and economic development of the region: thesis. Economic sciences, Irkutsk state university, Irkutsk, (2006).

3. O.V. Demyanov, The added value as an element of efficiency of regional economic system, Problems of the modern economy. 1 (2010) 44-50.

4. E.A. Monastyrny, I.G. Vidyaev, The methodical approaches to modeling the social and economic system of the region, Economy and management. 1 (2008) 64-68.

5. M. Lettenmeier, Resource productivity in 7 steps. How to develop eco-innovative products and services and improve their material footprint, Lettenmeier M. Rohn H. Liedtke C. Schmidt-Bleek F., Hitzegrad, (2009).

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