基于立式储罐壳体清洗的高压水射流设备
发布时间:2018-07-26 20:47
【摘要】:在石化行业之中,储运设备具有十分重要的战略地位,而立式储罐作为储运设备的一种又有着广泛的应用。因为石化行业关系着国家的能源安全,所以立式储罐壳体的清洗便受到了大家的关注,清洗技术也在不断发展。石化行业的特殊性决定了清洗过程中不能产生明火。考虑到安全、清洗和节能等因素,基于高压水射流技术,设计出一款能够清洗立式储罐壳体的设备,用以对立式储罐壳体进行清洗,保证了清洗工作在安全的状态下高效进行。
[Abstract]:In petrochemical industry, storage and transportation equipment has a very important strategic position, and vertical storage tank as a storage and transportation equipment has a wide range of applications. Because petrochemical industry is related to national energy security, the cleaning of vertical storage tank shell has been concerned by everyone, and cleaning technology is also developing. The particularity of petrochemical industry determines that no open fire can be produced in the cleaning process. Considering the factors of safety, cleaning and energy saving, based on the high pressure water jet technology, a kind of equipment is designed to clean the vertical tank shell, which can be used to clean the opposite tank shell, which ensures that the cleaning work is carried out efficiently under the safe condition.
【作者单位】: 安徽理工大学机械工程学院;
【基金】:安徽理工大学研究生创新基金资助项目(2017CX2031)
【分类号】:TE65;TQ053.2
本文编号:2147244
[Abstract]:In petrochemical industry, storage and transportation equipment has a very important strategic position, and vertical storage tank as a storage and transportation equipment has a wide range of applications. Because petrochemical industry is related to national energy security, the cleaning of vertical storage tank shell has been concerned by everyone, and cleaning technology is also developing. The particularity of petrochemical industry determines that no open fire can be produced in the cleaning process. Considering the factors of safety, cleaning and energy saving, based on the high pressure water jet technology, a kind of equipment is designed to clean the vertical tank shell, which can be used to clean the opposite tank shell, which ensures that the cleaning work is carried out efficiently under the safe condition.
【作者单位】: 安徽理工大学机械工程学院;
【基金】:安徽理工大学研究生创新基金资助项目(2017CX2031)
【分类号】:TE65;TQ053.2
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