National Centre for Earth Sciences Studies, Akkulam, Thiruvananthapuram, 695 031, India.
Discipline of Earth Sciences, Indian Institute of Technology, Gandhinagar, 382355, India.
J Environ Manage. 2021 Jan 1;277:111362. doi: 10.1016/j.jenvman.2020.111362. Epub 2020 Sep 17.
Submarine groundwater discharge (SGD) is an important process driven by marine and terrestrial forces. Low tide affects SGD the most, therefore the ideal time to detect SGD is the low tide, especially during spring tide. Techniques to detect and quantify SGD along with the understanding of the related aquifer characteristics is discussed in this study. Scientific community across the world is realizing the importance of studying and mapping SGD because in the scenario of climate change, this part of the global hydrological cycle is an important process and is known to have a significant effect on the marine ecosystem due to nutrient and metal inputs around the region of discharge. Therefore, understanding the processes governing SGD becomes very important. In this review, various components and processes related to SGD (e.g. Submarine Groundwater Recharge, Deep Porewater Upwelling, Recirculated Saline Groundwater Discharge), along with detailed discussion on impacts of SGD for marine ecosystem is presented. Also, it highlights the future research direction and emphasis is put on more research to be done keeping in mind the changing climate and its impacts on SGD.
海底地下水排泄(SGD)是受海洋和陆地力量驱动的重要过程。低潮对 SGD 的影响最大,因此检测 SGD 的理想时间是低潮,尤其是在大潮期间。本研究讨论了检测和量化 SGD 的技术以及对相关含水层特征的理解。世界各地的科学界都意识到研究和绘制 SGD 的重要性,因为在气候变化的情况下,这部分全球水文循环是一个重要过程,由于排放区域周围的营养物质和金属输入,已知对海洋生态系统有重大影响。因此,了解控制 SGD 的过程变得非常重要。在这篇综述中,介绍了与 SGD 相关的各种组成部分和过程(例如海底地下水补给、深部孔隙水上升、再循环咸地下水排放),并详细讨论了 SGD 对海洋生态系统的影响。还强调了未来的研究方向,并强调在考虑到气候变化及其对 SGD 的影响的情况下,要更加注重开展更多的研究。