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The Impact of Thermal Water Discharging from the Shanghai World Expo's Projects on Temperature Rise in the Huangpu River

机译:从上海世博会的热水排放对黄浦江温度升高的影响

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By using the three-dimensional Estuarine, Coastal and Ocean Model ECOM-si, the impact of thermal water discharging from the Shanghai World Expo's projects on temperature rise in the Huangpu River is studied. Meteorological data and water temperature data are collected to calculate the surface heat flux. Water elevation was validated and surface heat flux was calibrated. The semidiurnal flood and ebb current, spring and neap tide, diurnal inequality of tide in the Huangpu River are reproduced. The simulation results show that the impact of thermal water discharging is within 0.2 °C in most areas in the Huangpu River. The time-averaged vertically-averaged temperature rise is under 0.15 °C during spring tide and under 0.10 °C during moderate tide and neap tide, except for a tiny area of less than 0.2 km~2. During spring tide, the area of temperature rise over 0.1 °C is near the Expo projects. With the decrease of tide, the effect of runoff of the Huangpu River becomes stronger, and the area of the higher temperature rise moves downstream. Areas of time-averaged vertically-averaged temperature rise over 0.2 °C during neap tide, moderate tide, and spring tide are all as tiny as 0.01 km~2. Surface temperature rise near the Expo Energy Center is the most significant. Due to the small current speed, the surface temperature rise gathers around the Expo Energy Center, where there appears an area of time-averaged surface temperature rise over 0.3 °C during neap tide, and the area is about 0.01 km~2. In conclusion, the impact of thermal water discharging from the Shanghai World Expo's Projects on temperature rise is small.
机译:通过使用三维河口,沿海和海洋模型ECOM-SI,研究了上海世界世博会在黄浦江温度升高的项目中的热水排放的影响。收集气象数据和水温数据以计算表面热通量。验证浇水升高,校准表面热通量。半洪水和潮流潮流,春季和Neap潮,潮潮的昼夜不等式转载。仿真结果表明,热排水的影响在黄浦江大多数地区在0.2°C内。在中度潮汐和NeAP潮期间,在春季潮汐和0.10℃下,时间平均垂直平均温度升高在0.15℃下,除了小于0.2 km〜2的小面积之外。在春季潮汐期间,expo项目的温度上升面积超过0.1°C。随着潮汐的减少,黄浦江径流的效果变得更强,较高温度升高的面积下游移动。在NeAP潮,中度潮汐和春潮期间,时间平均温度垂直平均温度上升超过0.2°C的区域都是0.01 km〜2的微小。世博能源中心附近的表面温度上升是最重要的。由于电流速度小,表面温度升高在世博能量中心周围收集,在NeAP潮汐期间出现在0.3°C超过0.3°C的时间平均表面温度面积。该区域约为0.01 km〜2。总之,从上海世博会在温度升高的突出项目中对热水排放的影响很小。

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