Design optimization of a novel screw conveyor based system to scoop oil sludge from floor of storage tanks

IF 2.6 Q3 ENERGY & FUELS Upstream Oil and Gas Technology Pub Date : 2021-02-01 DOI:10.1016/j.upstre.2020.100029
Bhavesh Narayani , Santhosh Ravichandran , Prabhu Rajagopal
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引用次数: 1

Abstract

This paper presents the design optimization and testing of a novel screw conveyor based system to scoop crude oil sludge from the floor of oil storage tanks. This proposed new system consists of a screw conveyor mounted on a ‘C’ shaped casing with a bearing on both sides driven by a waterproof motor through a worm drive. A novel mathematical model is developed to help the design of a screw conveyor for a maximum amount of sludge scooping per turn, and numerical simulations are performed using computational fluid dynamics to visualize the flow of material particles in various possible designs of the system. The proposed mechanism was 3D printed, and laboratory tests were conducted to quantify the amount of sludge removal by the different designs of the screw. Optimized design of a mechanism screw with a radius ratio of 0.40 and a pitch ratio of 0.15 scoops up to a maximum of 5.88 kghr of material at 110 revmin.

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基于螺旋输送机的新型储罐底油泥铲取系统的优化设计
本文介绍了一种基于螺旋输送机的新型储油罐底污泥铲取系统的设计、优化和试验。提出的新系统由安装在“C”形外壳上的螺旋输送机组成,两侧的轴承由防水电机通过蜗杆传动驱动。开发了一种新的数学模型来帮助设计螺旋输送机,以实现每圈最大污泥铲取量,并使用计算流体动力学进行数值模拟,以可视化物料颗粒在各种可能设计系统中的流动。提出的机制是3D打印的,并进行了实验室测试,以量化不同设计的螺杆去除污泥的量。优化设计了半径比为0.40、螺距比为0.15的机构螺杆,在转速为110转/分的情况下,最大可舀取5.88 kghr的物料。
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