用近似解优化番茄干式脱皮系统

IF 0.9 Q4 THERMODYNAMICS International Journal of Thermodynamics Pub Date : 2023-05-22 DOI:10.5541/ijot.1225294
A. Metallo
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引用次数: 0

摘要

近年来,西红柿用蒸汽和碱液去皮。这两种技术都更昂贵,不太环保,而且污染严重。因此,应该寻求更可持续的替代品。在这些替代方法中有辐射加热。为了适当地设计干式脱皮系统,必须对所讨论的过程的几个典型操作特性进行估计。所提出的分析模型允许通过所涉及的参数之间的封闭关系进行估计。分析是基于使用合适的理论模型,这有利于解决所提出的问题。通过解析问题的近似解,我们将分析:角速度Ω,温度波动ΔT0,过程时间等。然后使用这些估计来推导过程控制的特定模型。与提供最佳剥离质量的过程相关的温度分布(通过近似解)被用作调节系统的指导。控制系统使用代码提取特定温度,并基于表面番茄温度读数,使用逻辑策略控制无刷电机。调节系统可以调节转速,从而加热强度,即使在不完美的操作条件下,以获得适当的型材温度。受控温度剖面产生的平均温度为66.3°C,而参考情况产生的温度为67°C。此外,发现温度误差随每次旋转而降低,范围从2.5°C在2π到0.3°C在16π。因此,剥皮过程在时间、温度和质量上都是标准化的。
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Optimization of a Dry Peeling System for Tomatoes Using Approximate Solutions
In recent years tomatoes have been peeled using steam and lye. Both are costlier, less environmentally friendly and highly polluting techniques. Thus, more sustainable alternatives should be sought after. Among these alternatives is radiative heating. To appropriately design the system for dry peeling, several typical operational characteristics of the process in issue must be estimated. The analytical model presented allows estimates to be made through closed-form relationships between the parameters involved. The analysis is based on the use of an appropriate theoretical model, which facilitates the solution to the proposed problems. Through the approximate solution of the analytical problem, we will analyse: the angular speed Ω, the temperature fluctuations ΔT0, the process time tc. These estimates are then used to derive a specific model for a control of process. The temperature profile (through an approximate solution) associated with the process that provides the optimum peel quality was utilized as a guide for the regulation system. A control system used the code to extract a specific temperature, and based on surface tomato temperature readings, controlled a brushless motor using a logic strategy. The regulating system can adjust the rotation speed, and hence the heating intensity, even under less than perfect operating conditions in order to obtain the appropriate profile temperature. The controlled temperature profile yielded an average temperature of 66.3°C, while the reference case yielded a temperature of 67°C. Additionally, it was found that the temperature inaccuracy decreased with each rotation, ranging from 2.5 °C at 2π to 0.3 °C at 16π. As a result, the peeling procedure is standardized in time, temperature, and quality.
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来源期刊
CiteScore
1.50
自引率
12.50%
发文量
35
期刊介绍: The purpose and scope of the International Journal of Thermodynamics is · to provide a forum for the publication of original theoretical and applied work in the field of thermodynamics as it relates to systems, states, processes, and both non-equilibrium and equilibrium phenomena at all temporal and spatial scales. · to provide a multidisciplinary and international platform for the dissemination to academia and industry of both scientific and engineering contributions, which touch upon a broad class of disciplines that are foundationally linked to thermodynamics and the methods and analyses derived there from. · to assess how both the first and particularly the second laws of thermodynamics touch upon these disciplines. · to highlight innovative & pioneer research in the field of thermodynamics in the following subjects (but not limited to the following, novel research in new areas are strongly suggested): o Entropy in thermodynamics and information theory. o Thermodynamics in process intensification. o Biothermodynamics (topics such as self-organization far from equilibrium etc.) o Thermodynamics of nonadditive systems. o Nonequilibrium thermal complex systems. o Sustainable design and thermodynamics. o Engineering thermodynamics. o Energy.
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