Operators

How Horseshoe Wells are Reshaping Eagle Ford Development Plans

bySimon Goettl

Some Eagle Ford acreage once considered uneconomic is back on development plans. In the recent Enverus Intelligence® Research webinar, Basin Insights: Eagle Ford Long Laterals, horseshoe well data showed why operators are taking a fresh look at these areas. 

Historically, irregular lease boundaries, split ownership, and easements made certain acreage difficult to develop. Traditional two-well pads require space for straight laterals and vertical sections, leaving many tracts untouched. Horseshoe well designs change that equation by allowing operators to develop acreage that previously would have been left behind. 

What Horseshoe Wells Solve in Eagle Ford

A horseshoe well drills out, turns, and comes back, covering roughly the same lateral footage as two straight wells but with a single vertical section instead of two. That’s the entire idea. It sounds simple because it is. What makes it worth writing about is where operators are choosing to drill them: acreage blocks with irregular shapes, split ownership, or lease geometry that made a standard two-well layout impossible to permit cleanly. 

Crescent Energy has drilled more horseshoe wells in the Eagle Ford than any other operator, and roughly 60% of its horseshoe results are in hand. The rest are sitting in permit or drilled-but-uncompleted status, which means the current data set is a partial picture of a technique that’s still filling in. ConocoPhillips has also moved horseshoe designs into active development programs, so this isn’t a single-operator experiment anymore. It’s becoming a standard tool for a specific acreage problem. 

That timing matters for how you read the results so far. Enough horseshoe wells are producing to draw real conclusions about cost and productivity, but the picture isn’t complete. Operators evaluating their own acreage right now are working with a data set that’s still growing, which means the case for or against a given parcel can change as more of Crescent’s results and other operators’ programs come online. 

Horseshoe Well Economics: Why the 15% Cost Savings Matters

Avoiding a second vertical section cuts drilling costs by around 15% compared to two independent short laterals. That’s the number operators cite most often in the Eagle Ford. Chord Energy has reported closer to 30% savings on horseshoe wells in the Bakken, where longer average laterals mean the fixed cost of a second vertical section represents a bigger share of total well cost. 

The gap between those two numbers is worth exploring. It tells you the savings scale with how much lateral footage you’re already committing to, not just the fact of skipping a vertical section. In a basin like the Eagle Ford, where laterals run shorter than the Bakken on average, 15% is the more realistic planning number. Still, on a play where breakevens have been climbing as Tier 1 inventory thins out, that 15% cost reduction on a location that otherwise wouldn’t get drilled at all is a meaningful swing in a development plan’s economics. 

What The Karnes County Data Shows

ConocoPhillips ran a stacked horseshoe program in Karnes County, drilling across two Lower Eagle Ford intervals and an Upper Eagle Ford interval on the same pad. Early initial production rates came in ahead of the subplay average. That result matters for a specific reason: it shows horseshoe geometry works across multiple stacked intervals, not just as a single-zone solution for oddly shaped acreage. 

That distinction changes how a team should evaluate the technique. A horseshoe well isn’t only a land-driven decision about fitting a lateral into an awkward parcel. It’s also a completions decision about which intervals a given block can support, since the Karnes County results suggest stacked horseshoe development doesn’t sacrifice per-well productivity to gain the cost advantage. 

Average horseshoe lateral length in the Eagle Ford runs around 10,000 feet. That’s long enough to justify the well design economically while staying within what current drilling equipment handles reliably on a single run. 

Horseshoe Well Spacing Limits and Acreage Constraints

Horseshoe wells aren’t free of constraints, and the constraint that matters most is interwell spacing. Most current activity clusters around 1,300 feet between the outbound and return legs, which gives operators a cushion against wellbore collision risk and pressure interference between the two legs. Tighter spacing is possible within the Eagle Ford core, where the tightest horseshoes drilled so far have come in around 800 feet. 

That spacing requirement is also what limits which acreage blocks qualify. A horseshoe well needs enough width to turn within, so this isn’t a fix for every stranded parcel. It’s a fix for parcels with awkward shape but adequate width, which is a narrower category than “anything that wasn’t drillable before.” A block that’s simply too narrow still doesn’t work, no matter how much the shape otherwise fits the technique. 

This is where a land team’s early screening matters more than drilling engineering does. Getting the spacing wrong on paper means either walking away from a location that would have worked or committing engineering time to a parcel that was never going to clear the technical floor. 

What This Means For Development Planning

Horseshoe wells are reshaping which parcels make it into a development plan, as operators revisit acreage they’d previously ruled out. Locations that got written off because a two-well pad wouldn’t fit the lease geometry are back on the table, provided the parcel has the width a horseshoe design needs. For operators sitting on Eagle Ford positions with irregular boundaries, that’s a direct change to how much of the acreage position counts as real inventory, not a paper adjustment to a type curve

Finding The Right Candidates to Drill

The hard part is finding those locations. Most teams don’t have a clean way to overlay lease geometry against the spacing thresholds a horseshoe design requires, so the screening ends up happening well by well, usually after someone already suspects a parcel might qualify. Locations that would clear the technical floor can sit unevaluated simply because nobody flagged them first. 

Enverus PRISM® lets you pull lease geometry, existing horseshoe results, and spacing data into one view, so you can flag which of your undeveloped locations qualify for the design before committing engineering time to a full evaluation. That turns a parcel-by-parcel search into a filtered list your land and engineering teams can work from together. 

The data set on horseshoe wells is still growing. Crescent alone has 40% of its results still to come in, and Karnes County is one case study among a technique that’s spreading to more operators and more counties. Watch the Eagle Ford webinar for the full breakdown of horseshoe economics, spacing data, and the extended laterals story shaping the rest of the basin’s development plans. 


About Enverus Intelligence® | Research, Inc. (EIR)

Enverus Intelligence® | Research, Inc. (EIR) is a subsidiary of Enverus that publishes energy-sector research focused on the oil, natural gas, power and renewable industries. EIR publishes reports including asset and company valuations, resource assessments, technical evaluations, and macro-economic forecasts and helps make intelligent connections for energy industry participants, service companies, and capital providers worldwide. See additional disclosures here.

Picture of Simon Goettl

Simon Goettl

Simon Goettl is a Product Marketing Manager at Enverus supporting Commercial Operators, where he leads positioning, messaging, and sales enablement for the segment. His background in finance and data management informs how he connects Enverus solutions to the decisions lean teams make every day.

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