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Report on research results about wyverns

Discussion in 'Wynncraft' started by RinK, May 27, 2026 at 6:27 AM.

  1. RinK

    RinK Travelled Adventurer

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    Hi everyone!

    I have recently been conducting research on wyverns, and I would like to share my findings and ask for feedback. It is generally understood that most stats scale logarithmically, so I attempted to derive functional relationships for each of them. I usually don't use English. So please do not point out about my English.

    I define the key terms as follows:

    Fastest speed: the maximum speed a wyvern can reach
    Acceleration: effectively acceleration, or alternatively acceleration normalized by top speed (I don't know which one is better)
    Highest altitude: the maximum altitude reachable by continuously holding the space bar
    Max energy: obviously, it's max energy
    Toughness: the chance of not being dismounted after taking a single hit
    boost amount (in energy): the value displayed when an energy boost is obtained
    Training progress: the level increase value in 2 digits "displayed" when collecting a training pop-up
    Handling: currently undefined; I would appreciate suggestions for a rigorously measurable definition

    As a starting point, I focused on two key parameters: speed [blocks/s] and altitude [blocks]. I also considered acceleration, but since it is not able to be exposed by Wynntils variables, it appears that a mod would be required to measure it.

    By chance, I had access to four mounts with sufficient energy, and I compared their various stats. The resulting data is shown in the figure below. Because the dataset is extremely limited, I cannot yet assess how reliable or generalizable these results are. I would greatly appreciate it if others could substitute their own mount values into the proposed formulas to help evaluate the model’s validity.

    I also observed several interesting phenomena:
    The maximum altitude measured by this method is reached only the first time, after which it follows a damped oscillatory trajectory and eventually converges to a stable altitude of about 65% of the peak value.
    When energy is depleted, most stats appear to become nearly independent of level (though not entirely; the dependence is very weak). In this state, fastest speed is around 11 b/s and highest altitude is around 49 blocks.

    For future work, I aim to derive expressions for all remaining stats and further investigate the underlying mechanics of the speed boost.
     

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