On the Influence of Inlet Distortion on Syngas Compressor for Coal Chemical Industry

Based on numerical simulation and laboratory test, the radial distortion of air flow in a double inlet syngas compressor is analysed in this paper. The author also considers the compressor’s mechanical response to homogeneous inflow, mixed inflow, and the length of mixing chambers. Finally, the feas...

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Main Authors: Yong Li, Hongtao Zhang
Format: Article
Language:English
Published: AIDIC Servizi S.r.l. 2017-07-01
Series:Chemical Engineering Transactions
Online Access:https://www.cetjournal.it/index.php/cet/article/view/1069
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spelling doaj-05d86a0b822a4dbdb00945aab9b472212021-02-18T21:00:08ZengAIDIC Servizi S.r.l.Chemical Engineering Transactions2283-92162017-07-015910.3303/CET1759003On the Influence of Inlet Distortion on Syngas Compressor for Coal Chemical Industry Yong LiHongtao ZhangBased on numerical simulation and laboratory test, the radial distortion of air flow in a double inlet syngas compressor is analysed in this paper. The author also considers the compressor’s mechanical response to homogeneous inflow, mixed inflow, and the length of mixing chambers. Finally, the feasibility of the numerical simulation is verified, drawing such conclusions: The efficiency and pressure rise of a compressor with distorted inlet will decrease by 6.1% and 210Pa, respectively, in the case of mixed inflow, indicating that the inlet flow field of the compressor and the one of subsequent fans match poorly, which is a direct cause to the degrade in overall compressor performance; the mixing speed is ascending from outer diameter to inner diameter at 90 degrees or above in the circumferential direction and descending at 270 degrees or above; the internal diameter velocity is higher than the external diameter velocity in the radial direction; the maximum flow rate measured by turbine flow meter is 0.201kg/s and the minimum one is 0.0256kg/s. The maximum inflow rate is 0.089kg/s and the minimum one is 0.064kg/s. The total pressure loss of compressor inflow is in positive proportion to the length of the mixing chamber. The longer the mixing chamber is, the greater the loss coefficient is. When the length of the mixing chamber is fixed, the loss coefficient is inversely proportional to Re. https://www.cetjournal.it/index.php/cet/article/view/1069
collection DOAJ
language English
format Article
sources DOAJ
author Yong Li
Hongtao Zhang
spellingShingle Yong Li
Hongtao Zhang
On the Influence of Inlet Distortion on Syngas Compressor for Coal Chemical Industry
Chemical Engineering Transactions
author_facet Yong Li
Hongtao Zhang
author_sort Yong Li
title On the Influence of Inlet Distortion on Syngas Compressor for Coal Chemical Industry
title_short On the Influence of Inlet Distortion on Syngas Compressor for Coal Chemical Industry
title_full On the Influence of Inlet Distortion on Syngas Compressor for Coal Chemical Industry
title_fullStr On the Influence of Inlet Distortion on Syngas Compressor for Coal Chemical Industry
title_full_unstemmed On the Influence of Inlet Distortion on Syngas Compressor for Coal Chemical Industry
title_sort on the influence of inlet distortion on syngas compressor for coal chemical industry
publisher AIDIC Servizi S.r.l.
series Chemical Engineering Transactions
issn 2283-9216
publishDate 2017-07-01
description Based on numerical simulation and laboratory test, the radial distortion of air flow in a double inlet syngas compressor is analysed in this paper. The author also considers the compressor’s mechanical response to homogeneous inflow, mixed inflow, and the length of mixing chambers. Finally, the feasibility of the numerical simulation is verified, drawing such conclusions: The efficiency and pressure rise of a compressor with distorted inlet will decrease by 6.1% and 210Pa, respectively, in the case of mixed inflow, indicating that the inlet flow field of the compressor and the one of subsequent fans match poorly, which is a direct cause to the degrade in overall compressor performance; the mixing speed is ascending from outer diameter to inner diameter at 90 degrees or above in the circumferential direction and descending at 270 degrees or above; the internal diameter velocity is higher than the external diameter velocity in the radial direction; the maximum flow rate measured by turbine flow meter is 0.201kg/s and the minimum one is 0.0256kg/s. The maximum inflow rate is 0.089kg/s and the minimum one is 0.064kg/s. The total pressure loss of compressor inflow is in positive proportion to the length of the mixing chamber. The longer the mixing chamber is, the greater the loss coefficient is. When the length of the mixing chamber is fixed, the loss coefficient is inversely proportional to Re.
url https://www.cetjournal.it/index.php/cet/article/view/1069
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