The Process of Heat Transfer to the Sea Caused by Wastewater from the Central Cooling System of Vinh Tan Thermal Power, Binh Thuan - Vietnam

Pham Xuan Duong
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Abstract

Every day Vinh Tan thermal power center needs millions of gallons of seawater to cool the machinery system and that volume of seawater will eventually return to the sea. This volume of seawater with a temperature ranging from 32-35 degree celsius pouring into the sea will spread heat to the surrounding environment in a large area, down to the deep layer of the sea. Quantifying the affected space and water temperature, I’m using the ROMS (Regional Ocean Modeling System) model to solve this process. The source of boundary condition data for ROMS is obtained from the databases of NOMADS, COADS, QuikSCAT, TPXO7.1 through OPenDAP data access protocol. Topographic data sources, factory discharge water, river water flow, sea water temperature, discharge water temperature were collected from field measurements. The study area is the coastal sea waters from Hon Dinh headland to Ne headland covered by a network of 80x110 points in the horizontal direction and 5 sigma layers in the vertical direction. The results show that a strip of water with high temperature appears from the outlet of the factory towards the south and parallel to the shoreline. Heat transfer in layers has a similar thing which is very limited to the north because the flow effect from north to south is dominant. A strip of high-temperature water spread to the sea, after 10 days hot water had spread near Ne headland and after 30 days in all three layers, there was a coastal strip of water with a high temperature of over 28°C appearing to spread and stretch. long to the south, in the large surface this strip of water is larger than the middle layer, while the bottom layer is prolonged, but in some places it is interrupted and the hot water area is significantly smaller than the upper layers.
越南平顺永滩热电厂中央冷却系统废水对海洋的传热过程
永滩热电中心每天需要数百万加仑的海水来冷却机器系统,而这些海水最终会返回大海。这种温度在32-35摄氏度之间的海水涌入大海,将在很大范围内将热量传递给周围环境,直至海洋的深层。量化受影响的空间和水温,我使用ROMS(区域海洋模拟系统)模型来解决这个过程。rom的边界条件数据来源通过OPenDAP数据访问协议从NOMADS、COADS、QuikSCAT、TPXO7.1数据库中获取。地形数据源、工厂排放水、河流水流、海水温度、排放水温度采集自野外测量。研究区域为Hon Dinh海岬至Ne海岬的沿海海域,水平方向为80 × 110个点,垂直方向为5个sigma层。结果表明,从工厂出口处向南出现一条与海岸线平行的高温水带。层内的热传递也有类似的情况,但仅限于北方,因为从北到南的流动影响是主要的。一条高温水带向海中扩散,10天后,热水在Ne岬角附近扩散,30天后,三层都有一条温度超过28°C的沿海水带开始扩散和伸展。向南延伸,在大表面这条水带比中间层要大,而底层是延长的,但在某些地方它是中断的,热水面积明显小于上层。
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