基于热损失优化的制造系统绿色单元调度和性能管理

IF 5.1 3区 工程技术 Q2 ENERGY & FUELS Thermal Science and Engineering Progress Pub Date : 2024-10-01 DOI:10.1016/j.tsep.2024.102934
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引用次数: 0

摘要

热损耗是生产过程中的重要损耗,对整个系统的性能和资源利用效率有着重要影响。因此,优化热损耗不仅能提高制造效率,还能促进企业的绿色转型。本文旨在探索基于热损失优化的制造系统绿色机组调度和性能管理策略,从而提高制造系统的能效和整体性能。本文提出了一种将热损失分析与绿色管理策略相结合的新型调度模型。通过多目标优化算法,对制造单元的调度进行优化,重点关注热损失最小化和生产效率最大化。模型中考虑了各工序的热能损耗特性和设备的运行状态,并通过仿真实验验证了不同排产方案的能效表现。实验结果表明,优化后的调度方案显著降低了制造系统的热能损耗,明显提高了整体生产效率,并有效改善了包括降低能耗和废物排放在内的绿色绩效指标。通过基于热能损耗优化的调度管理策略,实现了制造系统的绿色生产目标。本文的研究为制造企业在追求经济效益的同时实现可持续发展提供了新的思路和方法。
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Green cell scheduling and performance management of manufacturing system based on heat loss optimization
Heat loss is an important loss in the manufacturing process, which has a significant impact on the overall system performance and resource utilization efficiency. Therefore, optimizing heat loss can not only improve manufacturing efficiency, but also promote the green transformation of enterprises. The purpose of this paper is to explore the green unit scheduling and performance management strategy of manufacturing system based on heat loss optimization, so as to improve the energy efficiency and overall performance of manufacturing system. A new scheduling model is proposed, which combines heat loss analysis with green management strategy. By using multi-objective optimization algorithm, the scheduling of manufacturing cells is optimized, focusing on the minimization of heat loss and the maximization of production efficiency. The thermal energy loss characteristics of each process and the operating state of the equipment are considered in the model, and the energy efficiency performance of different scheduling schemes is verified by simulation experiments. The experimental results show that the optimized scheduling scheme significantly reduces the thermal energy loss of the manufacturing system, significantly improves the overall production efficiency, and effectively improves the green performance indicators, including the reduction of energy consumption and waste emission. Through the scheduling and management strategy based on the optimization of heat loss, the green production goal of the manufacturing system is realized. The research of this paper provides a new idea and method for manufacturing enterprises to realize sustainable development while pursuing economic benefit.
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来源期刊
Thermal Science and Engineering Progress
Thermal Science and Engineering Progress Chemical Engineering-Fluid Flow and Transfer Processes
CiteScore
7.20
自引率
10.40%
发文量
327
审稿时长
41 days
期刊介绍: Thermal Science and Engineering Progress (TSEP) publishes original, high-quality research articles that span activities ranging from fundamental scientific research and discussion of the more controversial thermodynamic theories, to developments in thermal engineering that are in many instances examples of the way scientists and engineers are addressing the challenges facing a growing population – smart cities and global warming – maximising thermodynamic efficiencies and minimising all heat losses. It is intended that these will be of current relevance and interest to industry, academia and other practitioners. It is evident that many specialised journals in thermal and, to some extent, in fluid disciplines tend to focus on topics that can be classified as fundamental in nature, or are ‘applied’ and near-market. Thermal Science and Engineering Progress will bridge the gap between these two areas, allowing authors to make an easy choice, should they or a journal editor feel that their papers are ‘out of scope’ when considering other journals. The range of topics covered by Thermal Science and Engineering Progress addresses the rapid rate of development being made in thermal transfer processes as they affect traditional fields, and important growth in the topical research areas of aerospace, thermal biological and medical systems, electronics and nano-technologies, renewable energy systems, food production (including agriculture), and the need to minimise man-made thermal impacts on climate change. Review articles on appropriate topics for TSEP are encouraged, although until TSEP is fully established, these will be limited in number. Before submitting such articles, please contact one of the Editors, or a member of the Editorial Advisory Board with an outline of your proposal and your expertise in the area of your review.
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