The impact of the preinfusion flow rate on espresso extraction

1. Introduction

This research by Stéphane Ribes (April 2020) evaluates the physical and chemical impacts of pre-infusion flow rates on espresso extraction dynamics using a light-medium espresso roast. By leveraging the Decent Espresso platform, the study examines how varying initial water flow rates during pre-infusion alter peak extraction pressure, espresso yield, total dissolved solids (TDS), and extraction yield (EY) while holding other variables like grind size and temperature constant.


2. Questions

  • How does altering the pre-infusion flow rate affect the peak pressure and extraction velocity when keeping the dose, grind size, and target yield constant?
  • How does pre-infusion flow rate impact the extraction yield (EY) of an espresso roast?
  • How must coffee dose weight be adapted across different pre-infusion flow rates to maintain a consistent peak extraction pressure (~6 bar)?

  • 3. Method


  • Machine & setup: Decent Espresso DE1PRO v1.1 machine with a Cafelat 8.0mm silicone gasket and IMS SI 200 IM shower screen (no spacer).
  • Grinder & preparation: Mahlkönig EK43 S grinder with SSP "High Uniformity" burrs. Puck preparation utilized a double-walled stainless steel cup, a Londinium WDT tool with Decent funnel, a Hog puck preparation tool on a vertical stand, and The Force Tamper with a 58.5mm smooth flat base (applied twice).
  • Water & thermal protocol: Portafilter pre-heated to 70°C in a kettle; basket and screen dried completely prior to each shot. Remineralized Montille water (50ppm CaCO3 alkalinity, 125ppm CaCO3 hardness). Extraction performed using a hybrid "Lever-Blooming" profile at 85°C with a target main extraction flow rate of 2.5mL/s.
  • Coffee & ratio: Colombia Huila Tesoro Gigante (Natural, Espresso Roast by OR Roastery). VST 15g ridgeless basket with a 13g dose aiming for a 30g output (brew ratio of 2.3) over a 33-second total shot time.
  • Measurement: Atago PAL refractometer zeroed with adjusted water; all samples measured at room temperature without filtering, taking the average of 3 to 5 readings per sample.

  • Below are the parameters used for the Hybrid "Lever" Blooming profile:

    Profile steps for the preinfusion flow experiments


    4. Proceeding

    1. Fixed-dose flow rate sweep: Five pre-infusion flow rates were tested (2.4 mL/s, 3.0mL/s, 4.0mL/s, 6.0mL/s, and 8.0 mL/s) using an identical 13g coffee dose, identical grind size, and identical target output (30g in 33 seconds).
    2. Pressure profile & EY analysis: Measured the corresponding peak pressure (bar) and Extraction Yield (EY %) for each pre-infusion flow rate setting.
    3. Dose adjustment calibration: Conducted a second test series adjusting the dose weight (+0.3g to -0.3g) across the different pre-infusion flow rates to normalize and match a target peak pressure of approximately 6 bar.

    5. Results


    Here's the results found via the experiments, first with a constant 13g dose and then adjusting the dose upwards or downwards:

    Results with fixed 13g dose

    Results with the adjusted dose

    The following table shows all the results of the experiments in one view:

    Results of preinfusion flow rate tests

    Said results reveal key insights into how pre-infusion flow rates shape extraction hydraulics and puck dynamics:

  • Non-linear peak pressure behavior (fixed 13.0g dose): Peak extraction pressure follows a non-linear, U-shaped relationship as pre-infusion flow rate increases. At low rates (2.4\mL/s), the pressure peaks at about 6.4 bar. Mid-range rates (3.0–4.0mL/s) drop to lower peak pressures (about 4.6–4.8 bar) due to reduced early bed compaction. High flow rates (6.0–8.0mL/s) violently fill and compact the puck early, driving peak extraction pressures sharply up to about 8.7–8.8 bar.
  • Inverted dose adjustment for pressure normalization (6 bar target): To maintain a uniform 6 bar peak pressure, dose weight must inversely compensate for puck compression. Mid-range flow rates (3.0–4.0mL/s) require adding coffee (+0.3g, total 13.3g) to raise bed resistance to about 6.2 bar. High flow rates (6.0–8.0mL/s) require subtracting coffee (-0.3g, total 12.7g) to reduce resistance and bring peak pressure down to about 6.0 bar.
  • Extraction Yield (EY) invariance: Across all profiles—whether fixed-dose or dose-adapted—Extraction Yield remains virtually static between 19.5% and 20.0%. This confirms that pre-infusion flow rate acts primarily as a physical lever for hydraulic pressure and flow dynamic control rather than a chemical solvent driver.


  • 6. Conclusion

    The experimental findings demonstrate how pre-infusion flow rates modulate coffee bed resistance and puck compression, establishing the necessary dose compensations to maintain target extraction pressures.

  • How does altering the pre-infusion flow rate affect peak extraction pressure when maintaining constant grind size, coffee dose (13g), and shot duration (33s)?
  • Mid-range pre-infusion flow rates (3.0–4.0mL/s) produce the lowest peak extraction pressures (about 4.6–4.8 bar) due to lower initial bed compression. Fast pre-infusion flow rates (6.0–8.0mL/s) forcefully fill and compress the coffee puck early, causing peak pressures to surge to about 8.7–8.8 bar.
  • How does pre-infusion flow rate impact the overall Extraction Yield (EY) of an espresso roast?
  • Pre-infusion flow rate has virtually no effect on Extraction Yield. Across all testing conditions—both unadjusted and dose-adjusted—EY remains locked within a tight band of 19.5% to 20.0%.
  • How must coffee dose weight be adapted across different pre-infusion flow rates to normalize the extraction to a constant peak pressure (~6 bar)?
  • For moderate pre-infusion flow rates (3.0–4.0\mL/s), the dose must be increased by +0.3g (13.3g) to build sufficient bed resistance. For rapid pre-infusion flow rates (6.0–8.0mL/s), the dose must be decreased by -0.3g (12.7g) to reduce resistance and prevent high peak pressures.

  • #research #Ribes #coffee #preinfusion #flow #documentation




    mirjam created 2026/08/22, mirjam updated 2026/08/25