Ali Emad
Chemical Engineering Department, King Saud University, Riyadh 11421, Saudi Arabia.
Membranes (Basel). 2022 Mar 30;12(4):375. doi: 10.3390/membranes12040375.
This work addresses the design of an online control system that continuously regulates a reverse osmosis (RO) desalination plant driven by wind power aided by water storage tanks. The control objective is to produce the exact hourly water demand in the presence of wind power intermittency, disturbances, and operational limitations. The manipulated variables are the RO feed pressure and the active number of RO vessels. The control system helped to decrease the annual water deficit by 20% under nominal conditions and when the plant is under the influence of disturbances. Moreover, the control system managed to decrease the annual water deficit by 73% when the plant operated under a shortage of an active number of wind turbines and RO vessels. The loss of redistributed production ratio () and the loss of raw production ratio () were used as the controlled variables representing the proposed control objective. was superior to by creating conservative control actions that produce the required water demand without violating the required water purity.
这项工作致力于设计一种在线控制系统,该系统可对由风力驱动并辅以储水箱的反渗透(RO)海水淡化厂进行持续调节。控制目标是在存在风力间歇性、干扰和运行限制的情况下,精确满足每小时的用水需求。操纵变量为RO进水压力和RO容器的运行数量。该控制系统在标称条件下以及工厂受到干扰影响时,有助于将年度缺水率降低20%。此外,当工厂在风力涡轮机和RO容器数量不足的情况下运行时,该控制系统成功将年度缺水率降低了73%。重新分配产量损失率()和原始产量损失率()被用作代表所提出控制目标的控制变量。通过创建保守的控制动作,在不违反所需水纯度的情况下产生所需的用水需求,优于。