泥沙疏浚对循环水泵站水头修复及运行模式的影响分析

Muhammad Pinandhito Adi Dharma, I. Garniwa
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摘要

PLTU Lontar扩建项目(1x315 MW)是由PT. PLN (Persero)建设的国家战略项目。工程阶段目前正处于调试阶段,但由于在??循环水系统。由于进水口与上游箱形涵洞之间的水头损失较大,因此有迹象显示,进水口有淤积,影响了海水流入龙塔污水处理厂的进水渠。由于海水流动存在障碍,导致8台循环水泵的冷却水流量不足,即3台现有PLTU的6台循环水泵和1台扩建PLTU的2台循环水泵。根据基本设计,进水口一侧的海床高度为-4.5米,但经过调查(测深、地形、浮沙、海流、潮汐),目前的实际情况为-0.9米。作为一种解决方案,根据基本设计采取疏浚法恢复条件。为了找出是否有改善头部损失,使用Hec-ras 2D应用程序进行了模拟。模拟后发现,在6台泵运行时流量为42 m3/s、疏浚前30 cm、疏浚后18 cm以及8台泵运行时流量为60 m3/s的水力模拟中,水头损失/压缩损失显著提高。,疏浚前55厘米,疏浚后21厘米在箱涵上游的正确位置。预计这种水头损失情况会向下游传播到前湾和CWP泵坑,因此模拟了该区域的疏浚工作,以提高Lontar PLTU循环水进水口的性能,从而使8个CWP可以连续运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of The Impact of Sedimentation Dredging on Headloss Repair & Operating Patterns of CWP (Circulating Water Pump) PLTU Lontar
The PLTU Lontar Extension Project (1x315 MW) is a national strategic project being built by PT. PLN (Persero). The project stage is currently in the commissioning phase but is hampered by indications of sedimentation occurring at the intake mouth area of ??the Circulating Water System. There are indications of sedimentation at the intake mouth due to the high head loss between the intake mouth and the upstream box culvert which has an impact on inhibiting the flow of seawater entering the Lontar PLTU intake canal. The existence of obstacles to the flow of sea water has resulted in insufficient cooling water flow for the needs of 8 Circulating Water Pump (CWP) pumps, namely 6 CWP for 3 units of PLTU Existing and 2 CWP for 1 unit of PLTU Extension. The sea bed level on the side of the intake mouth according to the basic design is -4.5 m but after the survey (bathymetry, topography, floating sediment, currents, tides) the actual condition is currently at a depth of -0.9 m. As one solution, the dredging method is taken to restore conditions according to the basic design. To find out if there is an improvement in headloss, a simulation is carried out using the Hec-ras 2D application. After the simulation, it was found that the headloss/compression loss significantly improved in the hydraulic simulation with a flow rate of 42 m3/s at 6 pumps running, before dredging 30 cm and after dredging to 18 cm and also with a flowrate of 60 m3/s at 8 pumps running. , before dredging 55 cm and after dredging to 21 cm at the right position upstream of the box culvert. This headloss condition is predicted to propagate downstream to the forebay and CWP pump pits, so that dredging in this area is simulated to increase the performance of the Lontar PLTU circulating water intake so that 8 CWPs can operate together continuously.
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