热分解设备中的离散粗糙表面强化剂:现状与未来潜力

IF 1.7 0 ENGINEERING, PETROLEUM SOCAR Proceedings Pub Date : 2023-06-30 DOI:10.5510/ogp2023si100823
O. Kolenchukov, T. N. Kolenchukova, K. Bashmur
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引用次数: 0

摘要

众所周知,粗糙度会影响水压下降,增加阻力。粗糙表面上形成的边界层会严重影响对流中的流体动力学和热交换过程,导致速度曲线紊乱,影响表面阻力、湍流混合和热交换。尽管在湍流研究领域有大量的实验和 CFD 研究,但目前还没有关于这一问题的全面综述。有鉴于此,有必要对湍流流体流动过程中粗糙表面影响的相关研究进行系统整理。在大多数情况下,粗糙度仅使用单一比例参数进行量化,即一粒沙子的等效粗糙度高度,该参数可根据统计参数进行表达。本文对粗糙表面的参数和特征数据进行了概述和归纳。使用粗糙度曲线斜率的标准偏差以及二次流对封闭空间中冷却剂流动的影响,考虑了相关方法。这项研究的结果可用于在热破坏反应器中使用离散粗糙表面形式的强化器强化传热。关键词:离散粗糙表面;热接触表面;и 粗糙表面;湍流;热解反应器;热破坏;热交换器。
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Discrete rough surface intensifiers in the thermal decomposition plants: current status and future potential
It is known that roughness affects the drop in hydraulic pressure, increasing the resistance force. The formation of a boundary layer on rough surfaces significantly affects fluid dynamics and the process of heat exchange in convective flows, causing disturbances in the velocity profile and affecting surface resistance, turbulent mixing and heat exchange. Despite the fact that there are a large number of experimental and CFD studies in the field of studying turbulent flow, there is no full-fledged review of this issue. In view of this, it is necessary to systematize studies related to the study of the influence of a rough surface during turbulent fluid flow. In most cases, roughness is quantified only using a single scaling parameter – the equivalent roughness height of a grain of sand, which can be expressed based on statistical parameters. This article presents an overview and generalization of data on the parameters and characteristics of rough surfaces. The correlation method is considered using the standard deviation in the slope of the roughness profile, as well as the effect of the secondary flow on the flow of the coolant in a closed space. The results of this study can be used in the intensification of heat transfer in thermal destruction reactors using intensifiers in the form of discretely rough surfaces. Keywords: discrete-rough surfaces; thermal contact surface;и rough surface; turbulent flow; pyrolysis reactor; thermal destruction; heat exchanger.
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来源期刊
SOCAR Proceedings
SOCAR Proceedings ENGINEERING, PETROLEUM-
CiteScore
3.00
自引率
82.40%
发文量
0
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