Industrial restructuring and optimization for sustainable development of resource cities based on dynamic simulation perspective

Chen Peng, Wanlu Ji
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Abstract

Resource cities are highly dependent on resource industries and have a single industrial structure, so how to adjust and optimize the industrial structure is of practical significance to the sustainable development of resource cities. This paper combines the principle of data envelopment analysis (DEA) and the principle of industrial layout optimization to evaluate and position the current situation of industrial structure in resource cities. Based on this study, the simulation dynamic simulation of the path optimization of sustainable industrial development is conducted through the study of the dynamics principle, and the realism and validity of the model are tested by combining it with the actual data to realize the prediction of sustainable industrial path development. The results show that: In the simulation dynamic simulation prediction, the scale of the resource industry in resource cities decreases by about 6%-8% in 2020, and its simulation prediction data and real data have high consistency, which verifies the effectiveness of industrial structure adjustment and optimization strategy. This paper studies the optimization and upgrading of industrial structure to promote the sustainable development of a resource-based city economy, narrow the gap between the economic development of east and west regions, promote urbanization, and improve inter- and intra-regional development imbalance.
基于动态模拟视角的资源城市可持续发展产业结构调整与优化
资源型城市对资源型产业的依存度高,产业结构单一,如何调整和优化产业结构对资源型城市的可持续发展具有现实意义。本文结合数据包络分析(DEA)原理和产业布局优化原理,对资源型城市产业结构现状进行了评价和定位。在此基础上,通过对动力学原理的研究,对工业可持续发展路径优化进行仿真动态仿真,并结合实际数据检验模型的现实性和有效性,实现对工业可持续发展路径的预测。结果表明:在模拟动态模拟预测中,2020年资源型城市资源产业规模下降约6% ~ 8%,其模拟预测数据与真实数据具有较高的一致性,验证了产业结构调整优化策略的有效性。本文研究产业结构优化升级,以促进资源型城市经济的可持续发展,缩小东西部经济发展差距,促进城镇化,改善区域间和区域内发展不平衡。
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