{"id":"2026-cost-chain-oil-freight-contracts-analysis","canonicalSlug":"2026-cost-chain-oil-freight-contracts-analysis","url":"https://wellficent.com/en/news/2026-cost-chain-oil-freight-contracts-analysis","language":"en","title":"Freight contracts turn energy shocks into time, capacity and cash costs","summary":"Seven September–October reports connect marine rates, gas logistics, storage and inland access without assuming automatic pass-through.","body":["This analysis links seven distinct reports checked through 9 October 2026: Gate's LNG tank commissioning, Rotterdam's road-access notice, Maersk's MECL transit update, Freightos' European container index, EIA's first-half LNG and propane exports, and IEA's gas-reserve framework. It examines the remainder of 2026 and 2027 planning. It does not forecast a commodity price, estimate investment accuracy or claim that an index move directly changes every invoice.","The sources describe different stages and evidence types. Terminal commissioning is a completed physical milestone; export averages cover January–June; operating notices retain their original September dates. Future jetties and flexibility proposals remain expectations or options. The numerical cases below are independent assumed scenarios, using no measured fleet cost or calibrated probability. They are designed to identify which local contract and operating inputs a reader would need."],"keyPoints":[],"sections":[{"heading":"The route and invoice boundary","paragraphs":["Freightos' 6 October update reports USD 3,260 per FEU for Asia–Northern Europe and USD 3,555 for Asia–Mediterranean. Subtraction gives USD 295, but that is not a gateway-switch saving: inland distance, services and included charges differ. The terminal-to-customer leg must be costed separately. Rotterdam's September bridge notice makes this tangible, describing road disruption while shipping and freight rail remained unobstructed. A normal vessel arrival can therefore coexist with costly final collection.","A complete invoice map separates commodity, marine freight, bunker adjustment, terminal handling, inland movement, storage and tax. The same item must not be counted both in a freight quote and again as an added surcharge. A contract may bundle fuel within its base rate, or index only a portion using an averaging window. The party bearing delay depends on agreed delivery and equipment-return terms. None of the seven reports gives those terms for an individual customer, so the analysis identifies mechanisms rather than claims a measured landed-cost saving."]},{"heading":"Ship time and the cost per delivered tonne","paragraphs":["Assume a voyage delivering 20,000 tonnes, using 600 tonnes of bunker at USD 650 per tonne, with 20 days of other ship costs at USD 25,000 per day. The baseline is 600 × 650 + 20 × 25,000 = USD 890,000, or USD 44.50 per cargo tonne. The fuel amount, price, time and cost are illustrative, not current market quotations or a disclosed vessel's accounts. The calculation excludes ports, insurance, finance and profit.","A separate assumed 15% bunker-price increase gives USD 747.50 per fuel tonne, total USD 948,500, or USD 47.425 per cargo tonne. Instead assume four additional waiting days, with five fuel tonnes consumed per waiting day and unchanged sailing consumption. Total fuel becomes 620 tonnes; other costs cover 24 days. Cost is 620 × 650 + 24 × 25,000 = USD 1,003,000, or USD 50.15 per cargo tonne. Combine both assumptions and the total is USD 1,063,450, or USD 53.1725 per cargo tonne. The accessible chart shows these four cases. Delay is a cost channel distinct from the fuel price; whether customers pay it still depends on the contract."]},{"heading":"Transit inventory and usable capacity","paragraphs":["Maersk's 9 September update reports eight fewer transit days on its specified MECL service. To illustrate the financing channel, assume cargo valued at USD 2 million, an annual carrying rate of 10%, a 365-day basis and all eight days removed from financed inventory. The saving is 2,000,000 × 0.10 × 8 / 365 = USD 4,383.56 per shipment. It is not Maersk's measured customer saving. If earlier arrival only transfers goods to a warehouse without reducing financed inventory time, this assumed benefit disappears.","A different capacity example assumes a complete ship cycle falls from 40 to 32 days, with the same fleet and no new port constraint. Potential rotations rise by 40 / 32 − 1 = 25%. This is illustrative arithmetic, not a claim that MECL fleet capacity increased by 25%; an eight-day sea change need not shorten the entire cycle by eight days. Maintenance, loading and empty repositioning can bind. More potential rotations therefore do not automatically produce a 25% tariff cut."]},{"heading":"Gas volume is not end-to-end delivery","paragraphs":["EIA's 1 September report puts first-half US LNG exports at 17.4 Bcf/day, 23% above a year earlier. Its 1 October propane report gives 2 million barrels/day and 11% growth while identifying export-capacity and canal limits. These are distinct products and units. More molecules at origin can increase trade while terminal slots, ship availability or a canal still raise delivered cost. The propane account is especially relevant to a route model: channel access can matter even when supply at origin is favourable.","Gate's 180,000 cubic metres of additional liquid LNG storage and its reported total 20 billion cubic metres/year terminal capacity also cannot be added. One is a stock volume, the other an annual throughput capability. Liquid-to-gas conversion and energy content require assumptions, and the planned marine-loading jetty is separate. The buyer needs a compatible chain of production, loading, vessel, receiving slot, regasification and transmission rights. A bottleneck at one stage can prevent capacity elsewhere from becoming a delivered cargo."]},{"heading":"Reserve deliverability and contractual options","paragraphs":["IEA's 9 September report distinguishes physical reserves, commercial flexibility and policy tools. Assume a reserve rated at 500 GWh, of which 60% is contractually and technically usable, giving 300 GWh. At demand of 40 GWh/day, inventory alone suggests 7.5 days. But with withdrawal limited to 25 GWh/day, it supplies only 62.5% of daily demand, leaving a 15 GWh/day shortfall despite having stock. Its own 300 / 25 = 12-day withdrawal duration is not twelve days of full-demand protection.","For a separate option example, assume an annual flexibility premium of USD 100,000 that avoids two disruption days at USD 250,000 per day. Conditional avoided cost is USD 500,000 and net benefit if that event occurs is USD 400,000. A single-event break-even probability would be 100,000 / 500,000 = 20%, but no actual event probability is estimated here. Other costs and multiple events are excluded. This explains why a premium is not automatically wasted or justified: usable rights, delivery speed and credible avoided harm must be established."]},{"heading":"Index lag, cash exposure and review limits","paragraphs":["Finally assume a carrier's weekly fuel expense is USD 100,000 before an immediate 20% price shock, unchanged consumption, and a four-week contractual adjustment lag. The added fuel outlay before reset is 100,000 × 0.20 × 4 = USD 80,000. This is temporary cash exposure, not measured permanent loss: later charges, negotiated sharing and volume can alter recovery. A lower spot freight index meanwhile does not necessarily remove this lagged obligation.","A practical review preserves invoices, actual vessel time, payload, index name, averaging window, adjustment dates, included charges and the point of payment. Storage rights and transport reservations belong beside capacity, rather than underneath a headline volume. The scenarios omit taxes, insurance, capital, demand responses and a probability distribution. They cannot rank investments or settle a booking. They show why cheaper origin energy, a shorter route, a new tank and a lower lane index are separate developments whose commercial value depends on the complete chain and the contract."]}],"text":"Freight contracts turn energy shocks into time, capacity and cash costs\n\nSeven September–October reports connect marine rates, gas logistics, storage and inland access without assuming automatic pass-through.\n\nThis analysis links seven distinct reports checked through 9 October 2026: Gate's LNG tank commissioning, Rotterdam's road-access notice, Maersk's MECL transit update, Freightos' European container index, EIA's first-half LNG and propane exports, and IEA's gas-reserve framework. It examines the remainder of 2026 and 2027 planning. It does not forecast a commodity price, estimate investment accuracy or claim that an index move directly changes every invoice.\n\nThe sources describe different stages and evidence types. Terminal commissioning is a completed physical milestone; export averages cover January–June; operating notices retain their original September dates. Future jetties and flexibility proposals remain expectations or options. The numerical cases below are independent assumed scenarios, using no measured fleet cost or calibrated probability. They are designed to identify which local contract and operating inputs a reader would need.\n\nThe route and invoice boundary\n\nFreightos' 6 October update reports USD 3,260 per FEU for Asia–Northern Europe and USD 3,555 for Asia–Mediterranean. Subtraction gives USD 295, but that is not a gateway-switch saving: inland distance, services and included charges differ. The terminal-to-customer leg must be costed separately. Rotterdam's September bridge notice makes this tangible, describing road disruption while shipping and freight rail remained unobstructed. A normal vessel arrival can therefore coexist with costly final collection.\n\nA complete invoice map separates commodity, marine freight, bunker adjustment, terminal handling, inland movement, storage and tax. The same item must not be counted both in a freight quote and again as an added surcharge. A contract may bundle fuel within its base rate, or index only a portion using an averaging window. The party bearing delay depends on agreed delivery and equipment-return terms. None of the seven reports gives those terms for an individual customer, so the analysis identifies mechanisms rather than claims a measured landed-cost saving.\n\nShip time and the cost per delivered tonne\n\nAssume a voyage delivering 20,000 tonnes, using 600 tonnes of bunker at USD 650 per tonne, with 20 days of other ship costs at USD 25,000 per day. The baseline is 600 × 650 + 20 × 25,000 = USD 890,000, or USD 44.50 per cargo tonne. The fuel amount, price, time and cost are illustrative, not current market quotations or a disclosed vessel's accounts. The calculation excludes ports, insurance, finance and profit.\n\nA separate assumed 15% bunker-price increase gives USD 747.50 per fuel tonne, total USD 948,500, or USD 47.425 per cargo tonne. Instead assume four additional waiting days, with five fuel tonnes consumed per waiting day and unchanged sailing consumption. Total fuel becomes 620 tonnes; other costs cover 24 days. Cost is 620 × 650 + 24 × 25,000 = USD 1,003,000, or USD 50.15 per cargo tonne. Combine both assumptions and the total is USD 1,063,450, or USD 53.1725 per cargo tonne. The accessible chart shows these four cases. Delay is a cost channel distinct from the fuel price; whether customers pay it still depends on the contract.\n\nTransit inventory and usable capacity\n\nMaersk's 9 September update reports eight fewer transit days on its specified MECL service. To illustrate the financing channel, assume cargo valued at USD 2 million, an annual carrying rate of 10%, a 365-day basis and all eight days removed from financed inventory. The saving is 2,000,000 × 0.10 × 8 / 365 = USD 4,383.56 per shipment. It is not Maersk's measured customer saving. If earlier arrival only transfers goods to a warehouse without reducing financed inventory time, this assumed benefit disappears.\n\nA different capacity example assumes a complete ship cycle falls from 40 to 32 days, with the same fleet and no new port constraint. Potential rotations rise by 40 / 32 − 1 = 25%. This is illustrative arithmetic, not a claim that MECL fleet capacity increased by 25%; an eight-day sea change need not shorten the entire cycle by eight days. Maintenance, loading and empty repositioning can bind. More potential rotations therefore do not automatically produce a 25% tariff cut.\n\nGas volume is not end-to-end delivery\n\nEIA's 1 September report puts first-half US LNG exports at 17.4 Bcf/day, 23% above a year earlier. Its 1 October propane report gives 2 million barrels/day and 11% growth while identifying export-capacity and canal limits. These are distinct products and units. More molecules at origin can increase trade while terminal slots, ship availability or a canal still raise delivered cost. The propane account is especially relevant to a route model: channel access can matter even when supply at origin is favourable.\n\nGate's 180,000 cubic metres of additional liquid LNG storage and its reported total 20 billion cubic metres/year terminal capacity also cannot be added. One is a stock volume, the other an annual throughput capability. Liquid-to-gas conversion and energy content require assumptions, and the planned marine-loading jetty is separate. The buyer needs a compatible chain of production, loading, vessel, receiving slot, regasification and transmission rights. A bottleneck at one stage can prevent capacity elsewhere from becoming a delivered cargo.\n\nReserve deliverability and contractual options\n\nIEA's 9 September report distinguishes physical reserves, commercial flexibility and policy tools. Assume a reserve rated at 500 GWh, of which 60% is contractually and technically usable, giving 300 GWh. At demand of 40 GWh/day, inventory alone suggests 7.5 days. But with withdrawal limited to 25 GWh/day, it supplies only 62.5% of daily demand, leaving a 15 GWh/day shortfall despite having stock. Its own 300 / 25 = 12-day withdrawal duration is not twelve days of full-demand protection.\n\nFor a separate option example, assume an annual flexibility premium of USD 100,000 that avoids two disruption days at USD 250,000 per day. Conditional avoided cost is USD 500,000 and net benefit if that event occurs is USD 400,000. A single-event break-even probability would be 100,000 / 500,000 = 20%, but no actual event probability is estimated here. Other costs and multiple events are excluded. This explains why a premium is not automatically wasted or justified: usable rights, delivery speed and credible avoided harm must be established.\n\nIndex lag, cash exposure and review limits\n\nFinally assume a carrier's weekly fuel expense is USD 100,000 before an immediate 20% price shock, unchanged consumption, and a four-week contractual adjustment lag. The added fuel outlay before reset is 100,000 × 0.20 × 4 = USD 80,000. This is temporary cash exposure, not measured permanent loss: later charges, negotiated sharing and volume can alter recovery. A lower spot freight index meanwhile does not necessarily remove this lagged obligation.\n\nA practical review preserves invoices, actual vessel time, payload, index name, averaging window, adjustment dates, included charges and the point of payment. Storage rights and transport reservations belong beside capacity, rather than underneath a headline volume. The scenarios omit taxes, insurance, capital, demand responses and a probability distribution. They cannot rank investments or settle a booking. They show why cheaper origin energy, a shorter route, a new tank and a lower lane index are separate developments whose commercial value depends on the complete chain and the contract.\n\nTechnical and economic analysis\n\nAnalysis as of: 2026-10-09\n\nEvidence cutoff: 2026-10-09\n\nOutlook horizon: 2026–2027\n\nIllustrative sensitivity\n\nAssumed voyage cost per delivered cargo tonne\n\nAssumed cargo: 20,000 tonnes. Baseline: 600 fuel tonnes at USD 650; 20 days of other ship costs at USD 25,000/day. Delay: 4 extra days and 5 fuel tonnes/day. Fuel price: +15%. Excludes ports, insurance, finance and profit. Not observed costs.\n\nThese calculations illustrate stated assumptions; they are not observations or a calibrated forecast.\n\nBaseline assumptions: 44.5 USD per cargo tonne\n\nBunker price +15% only: 47.425 USD per cargo tonne\n\nFour waiting days only: 50.15 USD per cargo tonne\n\nPrice increase and waiting combined: 53.1725 USD per cargo tonne","category":"energy","region":"world","topics":["energy costs","freight","LNG","transport"],"eventDate":"2026-10-09","eventDateBasis":"source-event-or-period","publishedAt":"2026-10-09T20:23:17Z","modifiedAt":"2026-10-09T20:23:17Z","publicationBasis":"first-publication","preparedAt":"2026-10-09T20:13:29Z","sourcePublishedAt":"2026-10-05","translatedAt":null,"sources":[{"name":"Port of Rotterdam — Gate Terminal fourth LNG tank commissioned","url":"https://www.portofrotterdam.com/en/news-and-press-releases/fourth-lng-tank-gate-terminal-ready-and-commissioned","publishedAt":"2026-10-05","checkedAt":"2026-10-09","licence":"Publisher terms; no open licence asserted","licenseUrl":"https://www.portofrotterdam.com/en/disclaimer","attribution":"Port of Rotterdam Authority, 2026. Original Wellficent reporting; no source photographs reproduced."},{"name":"Port of Rotterdam — Suurhoffbrug access notice, updated 18 September","url":"https://www.portofrotterdam.com/en/news-and-press-releases/closure-western-suurhoffbrug-has-major-consequences-accessibility-port","publishedAt":"2026-09-16","checkedAt":"2026-10-09","licence":"Publisher terms; no open licence asserted","licenseUrl":"https://www.portofrotterdam.com/en/disclaimer","attribution":"Port of Rotterdam Authority, 2026. Original Wellficent reporting; no source photographs reproduced."},{"name":"Maersk — North America Market Update, September 2026","url":"https://www.maersk.com/news/articles/2026/09/09/north-america-market-update-september","publishedAt":"2026-09-09","checkedAt":"2026-10-09","licence":"Publisher copyright; no open licence asserted","licenseUrl":"https://terms.maersk.com/","attribution":"A.P. Moller – Maersk, September 2026 market update. Carrier-reported operating information; original Wellficent interpretation."},{"name":"Freightos — FBX weekly update, 6 October 2026","url":"https://www.freightos.com/freight-resources/premier-alliance-joins-red-sea-return-october-6-2026-update/","publishedAt":"2026-10-06","checkedAt":"2026-10-09","licence":"Publisher copyright; no open licence asserted","licenseUrl":"https://www.freightos.com/terms-and-conditions/","attribution":"Freightos Group, Judah Levine, 6 October 2026. Limited reported index observations; no underlying commercial dataset redistributed."},{"name":"EIA — First-half 2026 US LNG exports","url":"https://www.eia.gov/TODAYINENERGY/detail.php?id=68064","publishedAt":"2026-09-01","checkedAt":"2026-10-09","licence":"EIA public information; third-party material excluded","licenseUrl":"https://www.eia.gov/about/copyrights_reuse.php","attribution":"U.S. Energy Information Administration, Today in Energy (2026-09-01). Independent reporting and all translations by Wellficent; no third-party price charts reproduced."},{"name":"EIA — First-half 2026 US propane exports","url":"https://www.eia.gov/todayinenergy/detail.php?id=68244","publishedAt":"2026-10-01","checkedAt":"2026-10-09","licence":"EIA public information; third-party material excluded","licenseUrl":"https://www.eia.gov/about/copyrights_reuse.php","attribution":"U.S. Energy Information Administration, Today in Energy (2026-10-01). Independent reporting and all translations by Wellficent; no third-party price charts reproduced."},{"name":"IEA — Gas Reserve Mechanisms and Flexibility Options","url":"https://www.iea.org/reports/gas-reserve-mechanisms-and-flexibility-options","publishedAt":"2026-09-09","checkedAt":"2026-10-09","licence":"CC BY 4.0","licenseUrl":"https://www.iea.org/terms/creative-commons-cc-licenses","attribution":"IEA (2026), Gas Reserve Mechanisms and Flexibility Options, IEA, Paris. Original Wellficent interpretation and illustrative calculations. This is a work derived by Wellficent from IEA material and Wellficent is solely liable and responsible for this derived work. The derived work is not endorsed by the IEA or its Member countries in any manner."}],"translations":{"en":"https://wellficent.com/en/news/2026-cost-chain-oil-freight-contracts-analysis","tr":"https://wellficent.com/tr/news/2026-cost-chain-oil-freight-contracts-analysis","ar":"https://wellficent.com/ar/news/2026-cost-chain-oil-freight-contracts-analysis","fr":"https://wellficent.com/fr/news/2026-cost-chain-oil-freight-contracts-analysis","es":"https://wellficent.com/es/news/2026-cost-chain-oil-freight-contracts-analysis","ru":"https://wellficent.com/ru/news/2026-cost-chain-oil-freight-contracts-analysis","pt":"https://wellficent.com/pt/news/2026-cost-chain-oil-freight-contracts-analysis"},"corrections":[],"locations":[],"type":"analysis","analysis":{"kind":"technical-economic","asOf":"2026-10-09","evidenceCutoff":"2026-10-09","horizon":"2026–2027","chart":{"kind":"illustrative","title":{"en":"Assumed voyage cost per delivered cargo tonne","tr":"Teslim yük tonunda varsayımlı sefer maliyeti","ar":"تكلفة رحلة مفترضة لكل طن بضاعة مُسلَّم","fr":"Coût supposé du voyage par tonne livrée","es":"Coste supuesto del viaje por tonelada entregada","ru":"Условная стоимость рейса на доставленную тонну","pt":"Custo assumido da viagem por tonelada entregue"},"unit":"USD/cargo tonne","unitLabel":{"en":"USD per cargo tonne","tr":"yük tonu başına USD","ar":"دولار لكل طن بضاعة","fr":"USD par tonne de cargo","es":"USD por tonelada de carga","ru":"USD на тонну груза","pt":"USD por tonelada de carga"},"note":{"en":"Assumed cargo: 20,000 tonnes. Baseline: 600 fuel tonnes at USD 650; 20 days of other ship costs at USD 25,000/day. Delay: 4 extra days and 5 fuel tonnes/day. Fuel price: +15%. Excludes ports, insurance, finance and profit. Not observed costs.","tr":"Varsayımlı yük: 20.000 ton. Başlangıç: 600 yakıt tonu, ton başına 650 USD; diğer gider 20 gün, günlük 25.000 USD. Gecikme: 4 ek gün ve günlük 5 yakıt tonu. Yakıt fiyatı: +%15. Liman, sigorta, finansman ve kâr hariç. Gözlenmiş maliyet değil.","ar":"حمولة مفترضة: 20,000 طن. الأساس: 600 طن وقود بسعر 650 دولاراً؛ 20 يوماً بمصروف آخر 25,000 دولار يومياً. التأخير: 4 أيام إضافية و5 أطنان وقود يومياً. سعر الوقود: +15%. تستبعد الموانئ والتأمين والتمويل والربح. ليست كلفاً مرصودة.","fr":"Cargo supposé : 20 000 tonnes. Base : 600 tonnes de fuel à 650 USD; 20 jours d’autres coûts à 25 000 USD/jour. Retard : 4 jours et 5 tonnes de fuel/jour. Prix du fuel : +15%. Hors ports, assurance, finance et profit. Coûts non observés.","es":"Carga supuesta: 20.000 toneladas. Base: 600 toneladas de fuel a 650 USD; 20 días de otros costes a 25.000 USD/día. Retraso: 4 días y 5 toneladas de fuel/día. Precio de fuel: +15%. Sin puertos, seguro, financiación ni beneficio. No son costes observados.","ru":"Условный груз: 20 000 тонн. База: 600 тонн топлива по 650 USD; 20 дней прочих затрат по 25 000 USD/сутки. Задержка: 4 дня и 5 тонн топлива/сутки. Цена топлива: +15%. Без портов, страхования, финансирования и прибыли. Не наблюдения.","pt":"Carga assumida: 20.000 toneladas. Base: 600 toneladas de fuel a 650 USD; 20 dias de outros custos a 25.000 USD/dia. Atraso: 4 dias e 5 toneladas de fuel/dia. Preço de fuel: +15%. Sem portos, seguro, financiamento e lucro. Não são custos observados."},"rows":[{"label":{"en":"Baseline assumptions","tr":"Başlangıç varsayımları","ar":"افتراضات الأساس","fr":"Hypothèses initiales","es":"Supuestos iniciales","ru":"Исходные предпосылки","pt":"Pressupostos iniciais"},"value":44.5},{"label":{"en":"Bunker price +15% only","tr":"Yalnız bunker fiyatı +%15","ar":"سعر الوقود+15% فقط","fr":"Prix du fuel +15% seul","es":"Solo precio de fuel +15%","ru":"Только цена топлива +15%","pt":"Só preço de fuel +15%"},"value":47.425},{"label":{"en":"Four waiting days only","tr":"Yalnız dört bekleme günü","ar":"أربعة أيام انتظار فقط","fr":"Quatre jours d’attente seuls","es":"Solo cuatro días de espera","ru":"Только четыре дня ожидания","pt":"Só quatro dias de espera"},"value":50.15},{"label":{"en":"Price increase and waiting combined","tr":"Fiyat artışı ve bekleme birlikte","ar":"ارتفاع السعر والانتظار معاً","fr":"Prix et attente combinés","es":"Precio y espera combinados","ru":"Рост цены и ожидание вместе","pt":"Preço e espera combinados"},"value":53.1725}]}},"relatedArticles":[{"canonicalSlug":"2026-cost-chain-oil-gate-lng-storage","url":"https://wellficent.com/en/news/2026-cost-chain-oil-gate-lng-storage","title":"Gate commissions its fourth LNG tank; bunkering expansion remains a separate project","language":"en"},{"canonicalSlug":"2026-cost-chain-oil-rotterdam-road-bottleneck","url":"https://wellficent.com/en/news/2026-cost-chain-oil-rotterdam-road-bottleneck","title":"Rotterdam bridge notice exposes the road leg of delivered freight cost","language":"en"},{"canonicalSlug":"2026-cost-chain-oil-mecl-transit-inventory","url":"https://wellficent.com/en/news/2026-cost-chain-oil-mecl-transit-inventory","title":"Maersk’s MECL transit reduction changes inventory time before it changes freight price","language":"en"},{"canonicalSlug":"2026-cost-chain-oil-europe-container-rate-gap","url":"https://wellficent.com/en/news/2026-cost-chain-oil-europe-container-rate-gap","title":"Freightos’ October Europe rates show why a route index is not a delivered invoice","language":"en"},{"canonicalSlug":"2026-cost-chain-oil-lng-export-ramp-logistics","url":"https://wellficent.com/en/news/2026-cost-chain-oil-lng-export-ramp-logistics","title":"First-half US LNG export growth puts terminal ramp-up and voyage capacity in focus","language":"en"},{"canonicalSlug":"2026-cost-chain-oil-propane-canal-capacity","url":"https://wellficent.com/en/news/2026-cost-chain-oil-propane-canal-capacity","title":"Record US propane exports meet a canal and terminal-capacity test","language":"en"},{"canonicalSlug":"2026-cost-chain-oil-gas-flexibility-reserve-options","url":"https://wellficent.com/en/news/2026-cost-chain-oil-gas-flexibility-reserve-options","title":"IEA gas-reserve report treats commercial flexibility as a separate resilience asset","language":"en"}],"image":{"url":"https://wellficent.com/assets/editorial/cost-chain-freight-2026.webp","width":1536,"height":1024,"alt":"Conceptual container port with freight trucks and LNG storage in the distance.","credit":"Wellficent · AI-generated conceptual illustration made with ImageGen; not a documentary photograph.","licenseUrl":"https://wellficent.com/assets/editorial/cost-chain-illustrations-rights.txt"}}