When it comes to improving your bicycle, one of the most popular options is to invest in carbon profile wheels. Especially when we are talking about road bicycles. These wheels are designed with a specific shape and material that reduces air resistance, which makes it easier to beat the stopwatch a few seconds and roll faster with less effort. But these advantages are transferred to serious bicycles? In this article we will explore science behind aerodynamic wheels and how your serious bicycle can benefit (or not). The
Gravel bicycles They are designed for a specific type of cycling: out -road adventures on without asphalting, such as forest tracks, agricultural paths, muddy stretches and paths with mild technical dislike -don't forget that they are not an alternative to mountain bicycle for two techniques -. As with any bicycle, the components you choose can have a significant impact on your performance and you can always improve them by changing some components or adding specific accessories. Profile wheels are one of the most popular improvements for road bicycles, are they a good option for serious bicycles? To understand the possible benefits of aerodynamic wheels on a serious bicycle, it is important to understand the concept of aerodynamics. Aerodynamics is the study of how air flows around an object and how this flow affects the movement of the object. When aerodynamics are bad you will need more energy to move, when the aerodynamic coefficient is good you can move faster with lower energy wear. In the case of a bicycle, the aerodynamics of the painting, the cyclist and the components play an important role in determining the total resistance of the set. That is why professional equipment and manufacturers of the cycling industry invest large amounts of money in the wind tunnel to develop products that offer less air resistance and, therefore, a higher speed for the cyclist . [Caption id = "Attachment_9356" Align = "Alignnone" Width = "900"]
(Image: Getty)[/caption] Aerodynamic carbon wheels are designed to reduce air resistance softening the air flow around the wheel. This can lead to faster speeds and better road performance. But does this also apply to serious bicycles? The answer is yes and no. The rugged terrain and the conditions out of grave cycling hinders that a level of aerodynamic benefits similar to those of a road bike can be achieved. Keep in mind that in the road cycling, it is roll on a firm surface without large profile jumps, such as asphalt. In Grange, the earth paths are splashed with potholes, stones and obstacles that do not always facilitate being able to roll at the same rate or in the same direction, since it is common to have to overcome them. Despite this, profile wheels can provide some advantages for serious bicycles. For example, the reduction of air resistance can help you maintain a higher speed in the softest and least injured sections of the path. On the other hand, aerodynamic wheels can be beneficial when pedaling against wind, which is common on Grave Routes in the open field. In addition to aerodynamic benefits, profile wheels can also provide impulse in terms of weight and rigidity. Aerodynamic carbon wheels are generally lighter than traditional wheels, which can help improve general performance on the bicycle. They are also more rigid, contributing to improve power transfer and handling on injured land. But they are not the
Upgrade Definitive and probably before investing on aerodynamic wheels for your serious bicycle it is preferable to buy carbon wheels without profile or very low profile. You will notice the difference in weight, the greatest absorption of the irregularities of the land and possibly save money, since the high profile wheels are more expensive and the positive effects they do in the asphalt are diluted more outside of it. Nor do you forget that when it comes to serious routes, it is common for the roads to jump and impact the wheels, so some high -profile carbon aerodynamic tires are more likely to receive impacts that can be translated into cracks and deformations.