装有实际换热器的浆态泡塔反应器的传热特性研究

IF 1.1 4区 工程技术 Q3 CHEMISTRY, ORGANIC
Dalia S. Makki, Hasan Sh. Majdi, Amer A. Abdulrahman, Abbas J. Sultan, Bashar J. Kadhim, Muthanna H. Al-Dahhan
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引用次数: 0

摘要

本研究采用先进的换热技术,考察了在浆态泡塔SBC中配置真实换热器对瞬时换热系数和局部换热系数IHTC和LHTC以及整体换热系数U的影响。实验在内径为0.15 m的有机玻璃SBC中进行,沿柱径(±0.18,±0.46和±0.74)和三个轴向位置(H/D = 2,3和4)的不同气体流速Ug (0.14-0.35) m/s。为模拟工业费托泡塔反应器FT-BCR,竖直安装18根铜管组成的真实换热器,铜管直径为0.16 m,占塔截面的25%。平均尺寸为150 μm的玻璃微珠被用来加载高达40%的体积来代表固相。结果表明,随着气体流量的增加,在径向和轴向位置LIHTC和U均显著降低。此外,与中心区相比,近壁LIHTC在径向位置显著降低约82%,在轴向位置显著降低约74%。所得结果和数据有助于理解竖管对浆态泡塔反应器SBCR内传热的影响。此外,获得的数据可以验证反应堆模型、计算流体动力学CFD程序和模拟,从而改进这些反应堆的设计和放大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Characterizing Heat Transfer Performance in a Slurry Bubble Column Reactor Equipped with a Real Heat Exchanger

Characterizing Heat Transfer Performance in a Slurry Bubble Column Reactor Equipped with a Real Heat Exchanger

This study examines the impact of equipping a real heat exchanger in a slurry bubble column SBC on instantaneous and local heat transfer coefficients IHTC and LHTC, as well as the overall heat transfer coefficient U, employing advanced heat transfer techniques. The experiments were conducted in a 0.15 m inner diameter Plexiglas SBC with varying gas flowrates Ug (0.14–0.35) m/s at several radial sites along the column’s diameter (±0.18, ±0.46, and ± 0.74) and three axial locations (H/D = 2, 3 and 4). To simulate the industrial Fischer–Tropsch bubble column reactor FT-BCR, a real heat exchanger consisting of 18 copper tubes, each with a diameter of 0.16 m, were vertically installed, occupying 25% of the column cross-sectional. Glass beads with an average size of 150 μm were used loading up to 40% volume to represent the solid phase. The results demonstrated that both, LIHTC and U, showed significant decreases with increasing gas flow rates at all radial and axial positions. Moreover, the LIHTC near the wall notably decreased compared to the central zone by about 82% at the radial location and about 74% at the axial location. The obtained results and data contribute to understanding the impact of vertical tubes on heat transfer in a slurry bubble column reactor SBCR. Furthermore, the data obtained can validate reactor models, computational fluid dynamics CFD programs, and simulations, thereby improving the design and scale-up of these reactors.

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来源期刊
Petroleum Chemistry
Petroleum Chemistry 工程技术-工程:化工
CiteScore
2.50
自引率
21.40%
发文量
102
审稿时长
6-12 weeks
期刊介绍: Petroleum Chemistry (Neftekhimiya), founded in 1961, offers original papers on and reviews of theoretical and experimental studies concerned with current problems of petroleum chemistry and processing such as chemical composition of crude oils and natural gas liquids; petroleum refining (cracking, hydrocracking, and catalytic reforming); catalysts for petrochemical processes (hydrogenation, isomerization, oxidation, hydroformylation, etc.); activation and catalytic transformation of hydrocarbons and other components of petroleum, natural gas, and other complex organic mixtures; new petrochemicals including lubricants and additives; environmental problems; and information on scientific meetings relevant to these areas. Petroleum Chemistry publishes articles on these topics from members of the scientific community of the former Soviet Union.
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