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Publication Date

April 2013

Abstract

Texas Hill Country springs provide baseflow for rivers that recharge the downstream Edwards Aquifer. This study is an initial characterization of Pleasant Valley Spring (PVS) and recognition of its significance for the Hill Country, Middle Trinity Aquifer, and the Edwards Aquifer. PVS is a perennial, artesian, karst spring complex located in the bed of the Blanco River near Fischer Store, TX. Springflow issues from three sets of NW­trending fractures antithetic to regional faulting along a 450 ft reach of the river. Total springflow varied from 9 cfs (Feb 2009) to 18 cfs (Sept and Oct 2012). This accounts for 69% to 34% of baseflow measured in the downstream USGS Blanco River (Wimberley) gage, respectively. PVS is the largest documented spring of the Hill Country Trinity Aquifer system and is located 5 miles WSW along strike from the well­known Jacob’s Well Spring (JWS). Both springs have similar water surface elevations (survey JWS =922.4 ft­msl and PVS 921­923 ft­msl), and similar structural and lithologic settings. Lower Glen Rose limestone crops out at the surface at both springs, and the underlying Cow Creek formation is the source of artesian flow to JWS, and the likely source for PVS. While springs issue from fractures at PVS, JWS has a karst conduit system extending 140 deep and over 7,000 ft horizontally, formed along solution­widened fractures and bedding planes with roughly the same fracture trend as those observed at PVS. Both springs have similar geochemistry (TDS of 400 to 470 mg/L, respectively) with Ca­HCO3 waters consistent with a mixture of Blanco River and Middle Trinity groundwater. Radiogenic isotopes for both springs suggest a mixture of modern (1.9 TU) and older (ca. 1,000 ybp; 0.86­0.91 pmC) waters. JWS has changed from a perennial to an intermittent baseflow spring over the last decade due to droughts and increased groundwater pumping. PVS was observed to flow during recent droughts when JWS ceased flowing. Decreasing baseflows in the Blanco River over the past few decades suggest that th

Document Type

Article

Notes

Geological Society of America Abstracts with Programs, Vol. 39, no. 3 (2013-04-04).

Identifier

K26-05348

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