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Utilizing zfs for the storage of acquired data

机译:利用ZFS来存储所获取的数据

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Every day, the amount of data that is acquired from plasma experiments grows dramatically. It has become difficult for systems administrators to keep up with the growing demand for hard drive storage space. In the past, project storage has been supplied using UNIX filesystem (ufs) partitions. In order to increase the size of the disks using this system, users were required to discontinue use of the disk, so the existing data could be transferred to a disk of larger capacity or begin use of a completely new and separate disk, thus creating a segmentation of data storage. With the application of ZFS pools, the data capacity woes are over. ZFS provides simple administration that eliminates the need to unmount to resize, or transfer data to a larger disk. With a storage limit of 16 Exabytes (1018), ZFS provides immense scalability. Utilizing ZFS as the new project disk file system, users and administrators can eliminate time wasted waiting for data to transfer from one hard drive to another, and also enables more efficient use of disk space, as system administrators need only allocate what is presently required. This paper will discuss the application and benefits of using ZFS as an alternative to traditional data access and storage in the fusion environment.
机译:每一天,是从等离子实验获取的数据量急剧增长。它已成为难以系统管理员与硬盘驱动器的存储空间需求的不断增长跟上。在过去,项目存储已经使用UNIX文件系统(UFS)分区供电。为了提高使用这种系统中的磁盘的大小,用户被要求停止使用的磁盘,所以现有的数据可以被转移到的更大容量磁盘或开始使用一个完全新的和独立的磁盘的,因此形成了数据存储的分割。随着ZFS池的应用程序,数据容量危机已经结束。 ZFS提供了简单的施用,从而无需卸载来调整,或将数据传送到一个更大的磁盘。用16个艾字节(1018)的存储空间限制,ZFS提供极好的可伸缩性。利用ZFS作为新项目的磁盘文件系统,用户和管理员可以消除浪费时间等待数据从一个硬盘驱动器转移到另一个,而且还能够更有效地利用磁盘空间,系统管理员只需要分配什么是当前所需要的。本文将讨论的应用和使用ZFS作为替代在融合环境下传统的数据访问和存储的好处。

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