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水泥技术, 2026, 1(4): 32-39    doi: 10.19698/j.cnki.1001-6171.20264032
  实验研究 本期目录 | 过刊浏览 | 高级检索 |

中心倒锥底水泥筒仓仓壁静动态侧压力试验研究

1 中建材装备集团有限公司天津水泥工业设计研究院有限公司,天津  300133; 

2 河南工业大学土木工程学院,河南  郑州  450001

Experimental Study on Static and Dynamic Lateral Pressure on the Wall of Cement Silo with Central Inverted Cone Bottom

1 CNBM Equipment Group, Tianjin Cement Industry Design & Research Institute Co., Ltd. , Tianjin 300133, China; 2 College of Civil Engineering, Henan University of Technology, Zhengzhou Henan 450001, China
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摘要 

水泥在卸料过程中流动性较差,工程中常采用中心倒锥底筒仓以改善卸料流动性,但该仓型改变了倒锥底高度范围内的断面形状,且易形成死料区。为研究中心倒锥底筒仓仓壁侧压力的变化规律,本文搭建了一个直径500mm、高度1 600mm的中心倒锥式有机玻璃筒仓模型,开展了3组水泥装料、卸料试验,沿仓壁布置3列压力传感器,获得了满仓静载及卸料状态下的侧压力-时间曲线,并将试验值与中国、美国、欧洲规范计算值进行了对比。结果表明:静载侧压力试验值与中国、美国、欧洲规范未修正值趋势一致;倒锥底上部区域水泥流动性弱于底部,导致上部测点动态侧压力最大值出现时间滞后;倒锥底具有减压、促流作用,减弱了静态侧压力但增大了动态侧压力,各贮料埋深动态侧压力最大值均高于中国、美国、欧洲规范修正值;据此给出了中国规范下的侧压力修正公式;静、动态最大值均出现在仓壁直立段中下部。

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徐增照
吴灵宇
曲弘博
刘海燕
关键词:  水泥筒仓  中心倒锥底  静动态侧压力  模型试验  设计规范    
Abstract: 

Cement has poor fluidity during the unloading process, so central inverted cone bottom silos are often used in engineering to improve unloading fluidity. However, this type of silo changes the cross-sectional shape within the height range of the inverted cone bottom and is prone to dead material zones. To investigate the variation of lateral pressure on the silo wall of a central inverted cone bottom silo, a plexiglass cement silo model with central inverted cone bottom, with a diameter of 500mm and a height of 1 600mm was designed. Three groups of cement loading and unloading tests were conducted, and three columns of pressure sensors were arranged along the silo wall to obtain the lateral pressure-time curves under full-load static condition and unloading condition. The test results were compared with the calculated values specified in Chinese, American and European codes. The results show that the test values of static lateral pressure along the depth are generally consistent with the uncorrected values of the three codes. The fluidity of cement in the upper part above the inverted cone bottom is weaker than that at the bottom, causing the maximum dynamic lateral pressure at the upper measuring points to appear later. The inverted cone bottom has pressure-reducing and flow-promoting effects: it reduces the static lateral pressure but increases the dynamic lateral pressure. The maximum dynamic lateral pressure at each depth is higher than the corrected values of the three codes. Based on this, a modified formula for lateral pressure under the Chinese code is proposed. Both the maximum static and dynamic lateral pressures occur in the middle-lower part of the vertical wall section.

Key words:  cement silo    central inverted cone bottom    static and dynamic lateral pressure    model test    design code
收稿日期:  2025-09-27      修回日期:  2026-07-25           出版日期:  2026-07-25      发布日期:  2026-07-25      整期出版日期:  2026-07-25
ZTFLH:  TU332  
  TQ172.8   
通讯作者:  徐增照(1986—),男,硕士,高级工程师,主要从事水泥厂建筑结构设计。    E-mail:  xuzengzhao@sinoma-tianjin.cn
引用本文:    
徐增照, 吴灵宇, 曲弘博, 刘海燕.

中心倒锥底水泥筒仓仓壁静动态侧压力试验研究 [J]. 水泥技术, 2026, 1(4): 32-39.
Xu Zengzhao, Wu Lingyu, Qu Hongbo, Liu Haiyan.

Experimental Study on Static and Dynamic Lateral Pressure on the Wall of Cement Silo with Central Inverted Cone Bottom . Cement Technology, 2026, 1(4): 32-39.

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http://www.cemteck.com/CN/10.19698/j.cnki.1001-6171.20264032  或          http://www.cemteck.com/CN/Y2026/V1/I4/32
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