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    <loc>https://www.evecogeo.com/blog/-resilience-vs-risk-understanding-ab-303-and-the-future-of-battery-storage-in-california</loc>
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      <image:title>Blog - ⚡ Resilience vs. Risk: Understanding AB 303 and the Future of Battery Storage in California - Make it stand out</image:title>
      <image:caption>An aerial view of Moss Landing, California—site of multiple battery energy storage system (BESS) fires. Spatial analysis tools can help balance clean energy deployment with environmental protection, public safety, and community input by identifying low-conflict sites, visualizing hazard zones, and informing smarter, data-driven siting decisions. The community of Moss Landing (lower left), Elkhorn Slough National Estuary (center-right), Moss Landing Wildlife Area (center-top) and Moss Landing Power Plant (lower left) - the site of the recent fire at the Vistra Battery Energy Storage System facility.</image:caption>
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    <loc>https://www.evecogeo.com/blog/groundwater-resilience</loc>
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      <image:title>Blog - Groundwater Resilience in the Face of Climate Change: A Look at the Eagle Lake Basin - Past conditions...</image:title>
      <image:caption>Mean Annual Recharge (mm) for the water year 1960 for the watersheds of the Eagle Lake Basin. Groundwater recharge capacity was historically more diffuse across the landscape, supported in part by the combined effect of greater average annual precipitation falling as snowpack together with cooler average temperatures over the course of the year, allowing for percolation into the porous volcanic geologic formations and quaternary deposits in the meadows of the Eagle Lake Basin.</image:caption>
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      <image:title>Blog - Groundwater Resilience in the Face of Climate Change: A Look at the Eagle Lake Basin - Future recharge…</image:title>
      <image:caption>Mean Annual Recharge (mm) for the water year 2040 for the watersheds of the Eagle Lake Basin. Groundwater recharge capacity can be predicted to be less distributed across the landscape, concentrating in the high elevations of the Pine Creek Watershed headwaters in the southeastern portion of the Eagle Lake Basin near Lassen Volcanic National Park and the Caribou Wilderness.</image:caption>
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      <image:title>Blog - Groundwater Resilience in the Face of Climate Change: A Look at the Eagle Lake Basin -  What Climate Models Tell Us</image:title>
      <image:caption>Using the BCMv8 model and LOCA-downscaled climate projections (RCP 4.5 scenario), we simulated potential changes in groundwater recharge through the mid-21st century. Key findings: Upper Pine Creek Watershed, characterized by volcanic geology and expansive meadows, remains the primary recharge zone. This area is critical to future groundwater resilience. Recharge capacity in lower and more arid areas is projected to decline or stabilize, meaning higher-elevation recharge zones will bear more responsibility for sustaining the basin’s aquifers. Seasonal snowpack—already declining—is expected to peak earlier and contribute less to spring runoff, reducing opportunities for deep infiltration and recharge.</image:caption>
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