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Thermal Drying Technologies—Cost-Effective Innovation Aided by Mathematical Modeling Approach

机译:热干燥技术—借助数学建模方法的经济高效创新

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In view of the escalating cost of energy, potential legislations curtailing carbon emissions, and the need for drying diverse new products, it is expected that drying R&D will continue to thrive in the coming decades even after a continuous upswing over the past 3 decades. It is becoming increasingly important that new green dryers with smaller carbon footprints will be demanded, not simply preferred, over the next decade of unprecedented industrial expansion of the developing economies of the world. To develop new drying technologies one needs to seek a cost-effective and speedier way of arriving at new designs. This article proposes that mathematical modeling is one such approach to intensify innovation. In spite of the limitations of exiting drying theories it is proposed that one can consider innovative conceptual designs of dryers through the modeling approach. However, modeling cannot supplant experimental verification in view of our lack of detailed knowledge of the fundamental drying principles. Some examples of model-based innovation are given along with brief tabulated summaries of various modeling approaches and a list of recent literature reports on modeling dryers that have appeared in Drying Technology.
机译:鉴于能源成本的上涨,限制碳排放的潜在法规以及对干燥新产品的需求,即使在过去的30年中持续增长之后,干燥的R&D仍有望在未来几十年中蓬勃发展。在世界发展中经济体前所未有的工业扩张的下一个十年中,将要求而不是简单地使用碳足迹较小的新型绿色干燥机,这一点变得越来越重要。为了开发新的干燥技术,需要寻求一种经济有效的方式来实现新的设计。本文提出数学建模是加强创新的一种方法。尽管存在干燥理论的局限性,但有人建议可以通过建模方法考虑干燥机的创新概念设计。但是,由于我们缺乏基本的干燥原理的详细知识,因此建模无法取代实验验证。给出了一些基于模型的创新示例,以及各种建模方法的简要列表摘要,以及在Drying Technology中出现的有关干燥器建模的最新文献报告列表。

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