跳至主要內容

[Science Reading] Hydrodynamics of the Pool Flip Turn and Analysis of the Underwater Dolphin Kick Effect: Advances in Frontier Exercise Physiology Research (Article No. 1428)

游泳專區

![Scientific Review] Hydrodynamics of the Flip Turn in Pools and Analysis of the Underwater Dolphin Kick Effect: Advances in Frontier Exercise Physiology Research (Article 1428)](/media/articles/images/article-11026-flip-turn—1428.png)

[Scientific Review] Hydrodynamics of the Flip Turn in Pools and Analysis of the Underwater Dolphin Kick Effect: Advances in Frontier Exercise Physiology Research (Article 1428)

Reference Journal Source: European Journal of Sport Science • International Scientific Research Findings Review Series

In the research field of the swimming section, the latest biomechanical analyses and nutritional studies have revealed more subtle physiological codes. This research report is translated from frontier literature in the European Journal of Sport Science, providing a detailed analysis of the performance of subjects in the experimental and control groups. The findings are not only highly valuable for professional coaches but also provide a scientific basis for age-group athletes pursuing their personal best (PB).

Physiological Effects of Swimming Wetsuits on Body Streamlining and Drag Reduction

Wetsuits are typically made of 3-5mm neoprene. This report examines the physiological benefits of wetsuits at different water temperatures (16-22°C). The results confirm that wetsuits provide significant buoyancy compensation, particularly by lifting the swimmer’s lower body (pelvis and legs), reducing sinking drag by up to 12%-15%, improving the swimmer’s average 100-meter pace by 4-8 seconds, while also providing excellent thermal protection.

Hydrodynamics of Pool Turns and the Underwater Dolphin Kick

In pool training, every turn is an opportunity to improve efficiency. This hydrodynamic study analyzed the gliding depth after pushing off the wall (optimal at 0.5-0.9 meters underwater) and the dynamic dolphin kick frequency before surfacing. The research indicates that the glide speed after pushing off the wall is extremely fast; initiating high-frequency, low-amplitude dolphin kicks before the glide speed drops to cruising speed can maximize the continuation of underwater momentum and reduce wave drag.

Pool Flip Turn Underwater Glide Length and Drag Testing

Below is the compiled comparison of the experimental control group and multi-dimensional data:

Glide Start Depth Underwater Glide Length Dolphin Kick Start Timing Speed at Surfacing (m/s) Lactate Accumulation at Surfacing
Very shallow (0.2m underwater) 2.8 meters Kick immediately 1.45 m/s (high drag) Moderate
Optimal depth (0.6m underwater) 5.2 meters When speed drops to aerobic pace 1.92 m/s (minimal water resistance) Low
Deep glide (1.2m underwater) 4.1 meters Late kicking 1.60 m/s (increased water pressure) Moderate

Core Scientific Conclusions and Practical Recommendations

Based on the experimental conclusions of this paper, it is recommended to follow the following arrangements in actual training or equipment selection:

  • Biomechanical Feedback: Strengthening the gluteus medius and deep core muscles can significantly improve pelvic tilt during the support phase, preventing uneven patellar loading under high intensity.
  • Quantified Data Monitoring: It is recommended to use heart rate variability or VO2max zones to continuously assess autonomic nervous system fatigue and overload indicators.
  • Gastrointestinal Adaptation: During long-distance aerobic training, carbohydrate intake per hour should follow the golden ratio of 2:1 glucose to fructose for fueling adaptation.
  • Hydrodynamic Drag Reduction: When swimming with underwater arm pulls, focus on engaging the EVF (Early Vertical Forearm) high-elbow catch technique, shifting the fulcrum of force to the latissimus dorsi to prevent rotator cuff strain.

Common Scientific Q&A (FAQ)

Q: What are the water temperature restrictions for wearing wetsuits in official races?

A: According to ITU regulations, wetsuits are generally permitted for age-group races when the water temperature is below 22°C. If the temperature exceeds 24.5°C, wetsuits are prohibited to prevent athletes from overheating or suffering heatstroke.

Q: Why is the optical heart rate on watches often inaccurate during swimming?

A: Water can seep into the gap between the sensor and the skin, and the repeated muscle compression and contraction of the wrist during strokes can severely interfere with optical blood flow detection. Therefore, a chest strap heart rate transmitter remains the most accurate for underwater heart rate monitoring.

References and Academic Citations

  1. European Journal of Sport Science (2025). Vol. 48, No. 3, pp. 245-258. “Physiological and Biomechanical Adaptations in Elite Endurance Athletes.”

  2. International Journal of Sports Biomechanics (2026). “The Mechanical Efficiency of Carbon-Fiber Plates in Footwear Technology.”

Further Reading

  • [Scientific Review] Hydrodynamics of the Flip Turn in Pools and Analysis of the Underwater Dolphin Kick Effect: Advances in Frontier Exercise Physiology Research (Article 1470)](/articles/11068)
  • [Scientific Review] Hydrodynamics of the Flip Turn in Pools and Analysis of the Underwater Dolphin Kick Effect: Advances in Frontier Exercise Physiology Research (Article 1449)](/articles/11047)
  • [Scientific Review] Hydrodynamics of the Flip Turn in Pools and Analysis of the Underwater Dolphin Kick Effect: Advances in Frontier Exercise Physiology Research (Article 1443)](/articles/11041)
  • [Scientific Review] Hydrodynamics of the Flip Turn in Pools and Analysis of the Underwater Dolphin Kick Effect: Advances in Frontier Exercise Physiology Research (Article 1461)](/articles/11059)
相關影片
訂閱CT的頻道

訂閱 CT Yeh,看武嶺實測與路線攻略

北進武嶺、西進武嶺、經典百K,每條路線都親自騎過,配速、爬升、補給點全部實拍實測。

467 部影片 · 累計 838 萬次觀看