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Page 14 <br /> The site is compartmented, and standing water has been observed to rapidly dissipate, <br /> percolating into the ground. Even if extraordinary storms events dropped excess amounts of <br /> water onto the site, it is not anticipated that areas would need to be dewatered. Work can be <br /> performed in areas without standing water, allowing time for natural drainage to occur in <br /> extremely wet areas. <br /> The project in itself can be considered one big BMP. The State of California has contracted Sukut <br /> Construction to remediate the site to prevent future groundwater contamination, however, until <br /> work is finished, there is really nothing else that can feasibly be done to prevent soluble metals <br /> from leaching into the ground. <br /> R <br /> # i�d <br /> s' <br /> x t. <br /> Figure 4 <br /> Figure 4 (above) illustrates how the surface of the site is highly compartmented. The containers <br /> pictured in the foreground are used to collect solid trash and scrap metal items found at the site <br /> during Phase 1 of construction. <br /> 500.3.4 Soil Stabilization (Erosion Control) <br /> Soil stabilization, also referred to as erosion control, is a source control measure that is designed <br /> to prevent soil particles from detaching and becoming suspended in the storm water runoff. <br /> This project will incorporate minimum temporary soil stabilization measures, because during a <br /> storm event water is not discharged off the site. It collects in the low areas of the property. <br /> Natural vegetation will be preserved to the maximum extent possible. The site is currently <br /> overgrown with native grasses and weeds. As work in disturbed areas is completed, those areas <br /> will be reseeded. <br /> Prepared: April 12, 2003 <br />