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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Experimental study of accidental release behavior of high-pressurized CO2 vessel
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Experimental study of accidental release behavior of high-pressurized CO2 vessel

机译:高压二氧化碳容器意外释放行为的实验研究

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摘要

The accidental release is one of the main risks of carbon capture and storage (CCS) and supercritical carbon dioxide (S-CO2) power cycle system. The release of mass CO2 will present severe risks to pipeline, vessel and surrounding population. The study of CO2 release characteristics is helpful to understand the crack propagation and the diffusion behavior outside the crack. In this paper, to investigate release characteristics in vessel and diffusion phenomenon outside rupture, high pressure CO2 release experiments from pressurized vessel were carried out for different initial states (liquid and gaseous phase), temperature (20.0 degrees C to 50.0 degrees C) and rupture sizes (1.0 mm, 2.0 mm, 3.0 mm). The transient pressure, mass flow rate, wall temperature, external jet structure and phase transition were studied following vessel release. The results show that different initial states will undergo different decompression process. As initial state is in liquid phase, fluid temperature is lower and circumferential wall temperature shows large gradient. Effects of initial temperature and nozzle sizes under different initial states on CO2 release characteristics were obtained. The experimental results show lower temperature will not damage material in experiment and results are of great significance for early leakage detection and model development. (C) 2020 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:意外释放是碳捕获与储存(CCS)和超临界二氧化碳(S-CO2)动力循环系统的主要风险之一。大量二氧化碳的释放将对管道、船只和周围人口构成严重风险。CO2释放特性的研究有助于理解裂纹扩展和裂纹外扩散行为。为了研究容器内的释放特性和破裂外的扩散现象,本文在不同初始状态(液相和气相)、温度(20.0℃~50.0℃)和破裂尺寸(1.0mm、2.0mm、3.0mm)下进行了压力容器内高压CO2释放实验。研究了容器释放后的瞬态压力、质量流量、壁温、外部射流结构和相变。结果表明,不同的初始状态将经历不同的减压过程。初始状态为液相时,流体温度较低,周向壁温梯度较大。得到了不同初始状态下初始温度和喷嘴尺寸对CO2释放特性的影响。实验结果表明,较低的温度不会对材料造成损伤,实验结果对早期泄漏检测和模型开发具有重要意义。(C) 2020年化学工程师学会。由爱思唯尔B.V.出版。版权所有。

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