Research on the New Assessment Model of Water Source Quality Based on Maximum Entropy Principle

Author:

Lu Ren Qiang1

Affiliation:

1. Hunan University of Science and Engineering

Abstract

Water source quality is the crucial factor to determine the safety and reliability of urban water supply, and the effective water quality assessment is the premise for water source conservation. Taking a lake system as an example, firstly, the maximum entropy principle was used to analyze the evolution mechanism of the structural changes of lake system. And the nonlinear coupling between the different subsystems of lake system was also analyzed. Secondly, the Self-Organizing feature map neural network was used to simulate the dynamic evolution process of lake system. Finally, a new assessment model for water source quality was established based on the maximum entropy principle. Through application it found that this model achieved the quantitative evaluation of water source quality effectively, and surmounted the inadequate that the precious water quality assessment methods had to determination the weights of the different water quality indicators subjectively.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference6 articles.

1. X.L. Zhao, Z.L. Song, K. Yang, et al. Assessment approach to drinking water source quality based on continental distance model with varying weight. Journal of Safety and Environment, vol. 8(5), pp.92-94 (2008).

2. J.Z. Qian, R.Z. Li and J.Q. Wang, et al. Environmental health risk assessment for urban water supply source. Shuili Xuebao, vol. (8), pp.90-93 (2004).

3. Q.Y. Feng, L.H. Chai. Ecosystem evolution dynamics based on generalized entropy principle. Science & Technology Review, vol. 27(4), pp.36-41 (2009).

4. I. Prigogine, I. Stengers. The end of certainty: time, chaos, and the new laws of nature. Paris: Editons Odile Jacob (1996).

5. L.H. Chai, M.J. Shu. Self-organization and self-similarity in boiling systems. ASME J Heat Transfer, vol. 124(3), pp.507-515 (2002).

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