Running in nature requires a different preparation than a classic 10 km road race. The challenges are not the same: prolonged effort, repeated elevation changes, and digestion slowed by impacts.
Without an adapted nutrition strategy, you sometimes risk nausea, hypoglycemia, or a drop in performance.
In this guide, we will see how to adapt your trail running nutrition: before, during, and after the event to maintain your energy and limit digestive problems.
Why is nutrition different in trail running?
Longer and more irregular effort
Trail running differs from road running in its duration and variable intensity. Where a marathon lasts 3 to 5 hours at a stable pace, a trail race can extend from 2 hours to over 30 hours depending on the format and elevation. The pace constantly changes (ascents, descents, altitude, technical sections), forcing the body to make an irregular effort. Your calorie needs therefore constantly fluctuate.
Specific constraints of trail running
On ascents, intensity increases and the body uses more carbohydrates as the primary energy source.
On descents, eccentric muscle contractions cause micro-tissue damage and progressive neuromuscular fatigue (Millet et al., 2011).
Environmental conditions also influence your needs: heat increases your water needs and electrolytes, while cold can decrease the sensation of thirst.
In nature races, gastrointestinal problems are quite common and can also complicate the ability to maintain sufficient nutritional intake (Costa et al., 2017).
Trail running nutrition: what to eat before the race?
The week before the trail race
You should eat normally, with a varied and balanced diet during the first part of the week (D-7 to D-4).
From D-3 to D-1, it is advisable to:
- gradually consume more carbohydrates;
- reduce training volume.
Objective: maximize glycogen stores with 10 to 12 g of carbohydrates/kg/day to build up a good energy reserve before race day.
Prioritize digestible carbohydrate sources: white rice, white pasta, potatoes, compotes, ripe fruits. Supplement with lean proteins (chicken, turkey, fish, eggs) and healthy fats (olive or rapeseed oil, avocado, omega-3).
The day before a trail race
The dinner the night before should remain simple, digestible, and rich in carbohydrates. Leave no room for improvisation: this meal should consist of foods already tested beforehand.
Examples of classic menus:
- white rice + steamed white fish + cooked zucchini + very ripe banana.
- white pasta + grilled chicken + tender carrots + 1 fruit juice.
To avoid: strong spices, fatty dishes, and fiber.
Breakfast before departure
Before an endurance effort of more than 60 minutes, the ACSM recommends eating a meal containing 1 to 4 g of carbohydrates/kg, 1 to 4 hours before departure.
Breakfast is generally the pre-race meal.
Very important, it allows you to:
- start with readily available energy;
- limit the risk of a drop in performance from the first kilometers.
Example of trail breakfast:
- white bread + jam;
- porridge or rice pudding;
- pancake + honey + banana;
- energy drink.
Add a small portion of protein if well tolerated.
If departing very early, opt for a light snack.
Example: compote + sports drink.
Nutrition during a trail race: the key to performance
How many carbohydrates per hour?
According to the work of researcher Asker Jeukendrup and the consensus of the ACSM:
- 1 to 2.5 hours: 30 to 45 g/h;
- 2.5 to 3.5 hours: 45 to 60 g/h;
- Beyond 3 hours: 60 to 90 g/h.
Going up to 90 g/h or even 120 g/h requires rigorous gut training and combining glucose/maltodextrin + fructose to optimize absorption.
Sweet, savory, or a mix of both?
Some trail runners find that after 4 to 5 hours of effort, energy gels become difficult to swallow. Sweet aversion is very common. Alternating sweet and savory (mini-sandwiches, cheese, chips, broth) helps to avoid monotony.
Hydration and electrolytes
In trail running, hydration needs vary enormously according to temperature, altitude, intensity, duration, and sweat rate. Stay within the range of 400 to 800 ml of water per hour depending on your needs.
Do not drink only plain water over long distances. Drink water containing minerals, especially sodium to maintain fluid balance and prevent hyponatremia.
Adapt your nutrition according to distance
Short trail (20–30 km)
Over this distance, your glycogen reserves are largely sufficient. Nevertheless, plan for 30 to 40 g of carbohydrates per hour via gels, light bars, or energy drinks, taking into account your digestive tolerance.
Long trail (40–80 km)
Carbohydrate intake becomes strategic. Aim for up to 60 g per hour by varying formats: gels, bars, dried fruits, isotonic drinks. Include savory after 3 to 4 hours of effort.
Ultra-trail (80 km and +)
Nutrition for a trail race of 80 km or more must be meticulously planned.
Aim for 60 to 90 g of carbohydrates per hour, with maximum variety: solid, semi-liquid, sweet, savory.
Include solid foods at aid stations (pasta, rice, potatoes, soups).
Also plan for a moderate protein intake (5 to 10 g per hour).
Common trail nutrition mistakes
Using new products on race day: Always test your nutrition strategy during training to identify your level of digestive tolerance.
Drinking only water: Without electrolytes, you risk hyponatremia over long distances.
Overloading the stomach: Fractionating intakes limits digestive problems and optimizes absorption.
Neglecting hydration: Even in cool weather, you sweat. Drink regularly in small quantities.
Example of a trail nutrition plan (case study)
Strategy: 50 km trail (6-7 h)
- Fractionate intakes every 15 to 20 min.
- Alternate sweet/savory after 3 h.
- Aim for ~60 g carbohydrates/h and ~500 ml/h.
|
Moment |
What to take |
Carbohydrate objective |
Hydration |
|
3 hours before |
Digestible meal rich in carbohydrates (porridge / rice + compote / bread + honey) |
~80 g |
~300 ml |
|
1 hour before |
~45 g |
~200 ml |
|
|
0 to 3 hours |
Alternate every 20 min: gel then isotonic drink |
~60 g/h |
~400–600 ml/h |
|
after 3 hours |
Same alternation + add savory/solid at aid stations (broth, sandwich, banana) |
~60 g/h |
~400–600 ml/h |
Important notes: This plan is a typical example. Adapt it to your level of digestive tolerance.
Post-trail nutrition: optimizing recovery
Metabolic window
The first few hours after the race are essential. Quickly consume a snack that combines carbohydrates and proteins. This strategy is recommended by the International Society of Sports Nutrition (ISSN), which highlights its importance in the process of post-exercise recovery.
Examples of post-trail snacks:
- whey protein + maltodextrin + amino acids;
- ham and cheese sandwich + banana;
- Greek yogurt + honey + dried fruits;
- fruit smoothie + milk + oats.
Follow up with a full meal within 2-3 hours.
Rehydrate gradually: 150% of lost weight (1 kg lost = 1.5 L).
Opt for water enriched with electrolytes, water rich in sodium.
FAQ – Trail Running Nutrition
What to eat before a 30 km trail run?
Have a digestible breakfast 1 to 4 hours before the start: porridge, white bread with jam, banana. Supplement with a gel 15 minutes before the start.
How much to drink during a trail run?
Aim for 400 to 800 ml per hour depending on the temperature and your perspiration. Choose a drink with electrolytes. Sip small amounts every 15 to 20 minutes.
Should you eat savory foods during a trail run?
Yes, especially on long distances. Savory foods provide sodium and limit the sweetness overload. Incorporate broth, mini-sandwiches after 3-4 hours.
How to avoid digestive problems during a trail run?
Test your nutritional strategy several times. Break down food intake into smaller portions every 20 to 30 minutes. Avoid fiber, fats, and lactose. Hydrate regularly without overdoing it.
What is the difference between marathon and trail run nutrition?
Trail running often involves a longer effort time, uneven terrain, and variations in intensity. It requires more variety (sweet/savory), better electrolyte management, and adaptation to sometimes spaced-out aid stations.
Summary: what to remember
Trail running nutrition is based on three pillars: anticipation, regularity, and personalization.
Optimize your glycogen stores beforehand, spread out your carbohydrate intake during exercise (60 to 90 g/h), and compensate for your fluid and sodium losses.
Test your strategy during training. Vary the formats and flavors and take care of your recovery by consuming carbohydrates and proteins after crossing the finish line.
Disclaimer: The recommendations and advice in this guide are for informational purposes only. In case of pathology (diabetes, chronic digestive problems, kidney pathologies), consult a healthcare professional or a sports nutrition specialist.
Bibliography
Thomas, D. T., Erdman, K. A., & Burke, L. M. (2016). Position of the Academy of Nutrition and Dietetics, Dietitians of Canada, and the American College of Sports Medicine: Nutrition and Athletic Performance. Journal of the Academy of Nutrition and Dietetics, 116(3), 501–528. https://doi.org/10.1016/j.jand.2015.12.006
Jeukendrup A. (2014). A step towards personalized sports nutrition: carbohydrate intake during exercise. Sports medicine (Auckland, N.Z.), 44 Suppl 1(Suppl 1), S25–S33. https://doi.org/10.1007/s40279-014-0148-z
Kerksick, C. M., Arent, S., Schoenfeld, B. J., Stout, J. R., Campbell, B., Wilborn, C. D., Taylor, L., Kalman, D., Smith-Ryan, A. E., Kreider, R. B., Willoughby, D., Arciero, P. J., VanDusseldorp, T. A., Ormsbee, M. J., Wildman, R., Greenwood, M., Ziegenfuss, T. N., Aragon, A. A., & Antonio, J. (2017). International society of sports nutrition position stand: nutrient timing. Journal of the International Society of Sports Nutrition, 14, 33. https://doi.org/10.1186/s12970-017-0189-4
Urdampilleta, A., Arribalzaga, S., Viribay, A., Castañeda-Babarro, A., Seco-Calvo, J., & Mielgo-Ayuso, J. (2020). Effects of 120 vs. 60 and 90 g/h carbohydrate intake during a trail marathon on neuromuscular function and high intensity run capacity recovery. Nutrients, 12(7), 2094. https://doi.org/10.3390/nu12072094
Millet, G. Y., Tomazin, K., Verges, S., Vincent, C., Bonnefoy, R., Boisson, R.-C., Gergelé, L., Féasson, L., & Martin, V. (2011). Neuromuscular consequences of an extreme mountain ultra-marathon. PLoS ONE, 6(2), e17059. https://doi.org/10.1371/journal.pone.0017059
Costa, R. J. S., Snipe, R. M. J., Kitic, C. M., & Gibson, P. R. (2017). Systematic review: Exercise-induced gastrointestinal syndrome—implications for health and intestinal disease. Alimentary Pharmacology & Therapeutics, 46(3), 246–265. https://doi.org/10.1111/apt.14157
es/es/