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Potential and limitations of methods for temperature uniformity mapping in high pressure thermal processing.

机译:高压热处理中温度均匀性映射方法的潜力和局限性。

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As pressure is assumed uniform and residence time is fixed, studying non-uniformity of high pressure process variables comes down to studying temperature uniformity. This review paper describes the progress made in developing two methods for temperature uniformity mapping within the EU FP6 integrated project: (i) computational thermal fluid dynamics (CTFD) modeling and simulation of temperature fields and (ii) use of pressure-temperature-time indicators (pTTIs) for experimental temperature uniformity mapping. In the first part of this contribution, the principle, potential and limitation of both procedures is outlined separately. In the second part, the outcome of the methods in the context of temperature uniformity illustration in different-scale high pressure reactors is exemplified and compared. Based on these examples, it is clear that the locations of low and high temperature zones depend on the pressure equipment used. Finally, screening literature data, some strategies are put forward to improve temperature uniformity under high pressure thermal processing conditions. All rights reserved, Elsevier.
机译:由于假定压力是均匀的并且停留时间是固定的,因此研究高压过程变量的不均匀性归结为研究温度均匀性。这篇综述文章描述了在欧盟FP6集成项目中开发两种温度均匀性映射方法所取得的进展:(i)计算热流体动力学(CTFD)建模和温度场模拟,以及(ii)使用压力-温度-时间指示器(pTTIs)用于实验温度均匀性映射。在本贡献的第一部分中,分别概述了这两个过程的原理,潜力和局限性。在第二部分中,举例说明并比较了在不同规模的高压反应器中温度均匀性说明的背景下该方法的结果。根据这些示例,很明显,低温区和高温区的位置取决于所使用的压力设备。最后,通过筛选文献资料,提出了提高高温热处理条件下温度均匀性的一些策略。保留所有权利,Elsevier。

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