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2024-2025 Valley's Edge Resource Substitute Water Supply Plan Renewal Page 3 of 10 <br /> December 17, 2024 <br /> period. <br /> Evaporation <br /> The Applicant proposes to replace evaporation from exposed groundwater at the site based <br /> upon evaporation atlases in NOAA Technical Report NWS 33 and the precipitation at the <br /> Brighton station, as shown in attached Table 1. Gross annual evaporation at the gravel pit <br /> location is estimated to be 45.00 inches per year. Net evaporation is defined as gross <br /> evaporation less the consumptive use of water by vegetation that naturally occurred at the <br /> site prior to construction of the pit. The precipitation (14.04 inches) was estimated based on <br /> the data from the Brighton NOAA weather station and the effective precipitation was <br /> estimated as 70% of the total precipitation. The exposed surface is currently 16.0 acres. <br /> Therefore, the net evaporation from the exposed water surface is estimated at 46.91 acre- <br /> feet for this SWSP approval period, as shown on attached Table 1. <br /> Dust Control <br /> The Applicant estimates that the water used for dust control will be 3.98 acre-feet for this <br /> SWSP approval period, as shown on attached Table 1. <br /> Mined Product <br /> The Applicant does not anticipate any further significant mining at this point; however, <br /> some remaining product is anticipated to be recovered. Based on a recovery of 40,000 tons <br /> above the groundwater table (2% retained in product) and 10,000 tons below the <br /> groundwater table (4% retained in product), the water retained in removed product will be <br /> 0.88 acre-feet for this SWSP approval period, as shown on attached Table 1. <br /> Therefore, the total consumptive use is estimated at 51.78 acre-feet during this SWSP <br /> approval period, as shown on attached Table 1. <br /> La_q_qed Depletions <br /> A Glover analysis using the Integrated Decision Support Alluvial Water Accounting System <br /> (IDS AWAS) stream depletion model was used to determine the lagged depletions to the <br />