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Identification of Subsurface Water Flow Using Gradient Horizontal Gravity Data in Tanjung Priok and Koja, North Jakarta

机译:在北雅加达北北京茶园和科哈德梯度水平重力数据识别地下水流量

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The presence of saline or salt water in the Jakarta groundwater aquifer is still widely debated by various geologists and groundwater experts. This study intends to identify the cause of the high salinity of groundwater at Tanjung Priok and Koja, North Jakarta. The First Horizontal Derivative (FHD) method of gravity data is applied to identify the direction of subsurface fluid flow. It is also supported by groundwater sample data and self potential (SP) data. The direction of fluid flow on the FHD contour map is indicated from low to high FHD value. From gravity data, Bouguer density values obtained in the study area were 2.12 gr/cm~3. This study focuses on surface aquifers so that it is necessary to separate regional and residual anomalies. The results show that the direction of fluid flow is from north to south, there is a high FHD value that is distributed around the coordinates (709000, 9322000) which may indicate as the salt depositions of sea water intrusion.
机译:雅加达地下水含水层的盐水或盐水的存在仍然被各种地质学家和地下水专家迅速争论。 本研究打算识别北雅加达丹戎猕猴及科哈特地下水的高盐度的原因。 第一种水平衍生物(FHD)重力数据方法被应用于识别地下流体流动的方向。 它也由地下水样本数据和自潜能(SP)数据支持。 FHD轮廓图上的流体流动方向从低到高FHD值。 从重力数据中,研究区域中获得的Bouguer密度值为2.12gr / cm〜3。 这项研究侧重于表面含水层,以便有必要分离区域和残留的异常。 结果表明,流体流动的方向是从北向南,有一个高的FHD值,分布在坐标(709000,9322000)周围,该值可能表示为海水侵入的盐沉积。

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