Ovintiv USA Inc. v. Haaland

District Court, District of Columbia·Decided September 16, 2026·No. Civil Action No. 2023-0387·Published

Opinion

UNITED STATES DISTRICT COURT FOR THE DISTRICT OF COLUMBIA

OVINTIV USA INC.,

Plaintiff, v. Civil Action No. 23-387 (JDB)

DOUG BURGUM, et al.,

Defendants.

MEMORANDUM OPINION

Ovintiv USA Inc., an oil and gas company, leases public land from which it extracts and sells natural gas. Pursuant to federal regulations and the terms of its lease, Ovintiv must pay the government royalties on the value of the gas it produces. In 2018, Ovintiv sought retroactive permission from the Office of Natural Resources Revenue (ONRR) to deduct certain transportation costs from the royalty value of the gas it produced in 2012. It also requested a refund of royalties it alleged that it had overpaid that year. ONRR denied these requests.

Ovintiv now seeks the Court’s review of ONRR’s denial. Upon careful examination of the parties’ filings, the pertinent regulations, and the administrative record, the Court concludes that ONRR’s decision largely comported with the APA but was arbitrary insofar as it barred Ovintiv from deducting certain transportation costs on the basis that those costs were incurred before Ovintiv’s gas reached marketable pressure.

BACKGROUND

Understanding the parties’ dispute over which transportation costs lessees may deduct from the royalty value of their gas production requires basic familiarity with how gas is extracted, transported, processed, and sold. Our story thus begins at one of the thousands of gas wells on

federal lands, before turning to the regulatory scheme governing this dispute, and then to the particulars of ONRR’s denial of Ovintiv’s requests.

I. NATURAL GAS BASICS To bring gas trapped underground to the surface, producers drill wells on their gas fields.

The raw gas extracted from these wells—also known as “wellhead gas”—is often at a low pressure and may contain impurities, generally precluding it from being marketable in its unprocessed form. Geoffrey Heath, Transportation & Processing or Marketability v. Transportation, Hatfields v. McCoys, Liberals v. Conservatives, and Other Well-Settled Controversies, 2004 No. 1 Rocky Mt. Min. L. Found. Inst. Paper No. 10B, 2 (2004) [hereinafter Marketability v. Transportation]. To prepare raw gas for processing and eventual sale, then, lessees “gather” it, combining gas extracted from multiple wellheads by sending it through a network of small-diameter pipelines to a central accumulation point. U.S. DOT Pipeline and Hazardous Materials Safety Admin., Fact Sheet: Gathering Pipelines, https://primis.phmsa.dot.gov/stakeholder-comms/factsheets/ fsgatheringpipelines/ [https://perma.cc/QT6B-BUVD] (updated Jan. 12, 2018); see also 30 C.F.R. § 1206.20 (defining gathering).

As raw gas travels towards the central accumulation point, lessees may compress it to maintain its flow. See,e.g., Marathon Oil Co., 149 I.B.L.A. 307, 311 (Jul. 2, 1999). An elementary law of physics provides that gases naturally move from areas of higher pressure to areas of lower pressure. Pl.’s Mot. [ECF No. 28-1] at 5; Gov’t Mot. [ECF No. 42] at 5. Untie an inflated balloon and the compressed air inside will rush out; the balloon will not inflate further. The same concept applies to pipelines. Gas will only enter a downstream pipeline if its pressure exceeds the pressure of the gas within that pipeline. Pl.’s Mot. at 5. So to gather wellhead gas, a producer may need to raise its pressure by compressing it. Cf. Heath, Marketability v. Transportation at 16 (explaining

that compression may be necessary “for gas to be produced in the first instance because the system would achieve equilibrium” without it).

Once the raw gas arrives at the central accumulation point, gathering ends. See 30 C.F.R.

§ 1206.20. Producers then transport the gas through pipelines to a processing plant. Again, compression is often an integral part of this process, especially when the journey is lengthy. Because friction causes gas to lose pressure as it travels through pipes, a producer may need to repeatedly compress its gas to keep it moving towards the processing plant. See Pl.’s Mot. at 5– 6; John F. Shepherd, The New Marketable Condition Rule: Is it Really New Or Has it Been this Way?, 2018 No. 5 Rocky Mt. Min. L. Found. Inst., 24 n.39 (2018) [hereinafter The New Marketable Condition Rule].

The schematic below summarizes the prototypical journey natural gas takes from a wellhead to a processing plant, and how producers may compress the gas both prior to the accumulation point, also known as the central delivery point (CDP), and at several places between the CDP and the processing plant.

ONRR, How to Calculate a Transportation UCA, 2 (updated Feb. 20, 2014), https://www.onrr.gov/ document/How-to-calculate-a-Transportation-UCA.pdf [https://perma.cc/FPC6-J6XP].

Once inside a processing plant, raw gas is cleansed of impurities, such as water vapor and nonhydrocarbon compounds, and readied for sale. U.S. EIA, Natural Gas Explained, https://www. eia.gov/energyexplained/natural-gas/ [https://perma.cc/MH8F-NWP8] [hereinafter Natural Gas Explained] (last visited Sept. 14, 2026). Plant processing of “wet gas”—which contains natural gas liquids (such as propane and butane), as well as methane (known as “residue gas”)—also includes dividing the gas into its constituent parts. Id.; see also Gov’t Mot. at 5 n.5. In modern cryogenic processing plants, producers generally accomplish this separation by dropping the pressure of the gas, as “extraction of natural gas liquids is enhanced by achieving a large pressure reduction within the plant.” Shepherd, The New Marketable Condition Rule at 19; see also Burlington Res. Oil & Gas Co., 183 I.B.L.A. 333, 354–55 (Apr. 23, 2013).

After the residue gas has been isolated, it is compressed once again through a process known as “boosting.” Heath, Marketability v. Transportation at 3; A.R. [ECF No. 55] at 84. Boosting ensures that residue gas is at sufficient pressure to depart the tailgate of the processing plant and enter a “mainline pipeline,” which then transports the gas to its ultimate buyer. Shepherd, The New Marketable Condition Rule at 19. For example, if a buyer requires that a producer deliver its gas through an interstate pipeline that contains gas with a pressure of 1000 psig, a producer must boost its residue gas to a pressure greater than 1,000 psig so that the gas may enter the pipeline. Extracted natural gas liquids, meanwhile, are either picked up by trucks or enter a separate liquids pipeline. Id. at 21.

Compression thus serves several different functions in the production, processing, and delivery of natural gas. Heath, Marketability v. Transportation at 2, 18; see also Shepherd, The New Marketable Condition Rule at 6 n.39, 19. At minimum, a producer may compress its gas to (1) gather the gas on its lease, (2) transport the gas beyond the central accumulation point, (3) raise

the pressure of the gas so that it meets buyer specifications, (4) raise the pressure of its wet gas, in particular, so that it may then drop that gas’s pressure to cryogenically separate natural gas liquids, and (5) raise the pressure of its residue gas after cryogenic processing so that it can enter a mainline pipeline and reach its ultimate purchaser. With these varied purposes in mind, the Court turns to the regulations governing the computation of federal gas royalties.

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