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The three most important technical factors in the harnessing of ocean wave energy are:

* The resource. The resource has both a geographical and a temporal distribution. This determines the suitability of a specified location for wave energy conversion. The energy tranpsorted by ocean waves is proportional to wave height squared and to wave period. * The power capture. The energy captured during the converters life time determines its viability in terms of income to cost ratio and also energy payback factor. For an oscillating device the ability to absorbed power is governed by the relative phase and amplitude of the oscillator and the incident wave. * The survivability. A broken wave energy converter is not particularly useful. It must be made strong and clever enough to survive the roughest weather at the chosen location, and also to stand the cyclic loads associated with the oscillatory motion. This is one of the main cost drivers. JH

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Which are the three factors affecting wave energy?

The three factors affecting wave energy are the speed of the wind, the duration of time the wind has been blowing (fetch), and the distance over which the wind has been blowing (fetch length). These factors collectively determine the energy transfer to the water surface, leading to the generation of waves.


What three things affects the size and energy of a wave?

Three things that affect the size and energy of a wave are the wind speed, the duration of the wind blowing, and the fetch (the distance over which the wind blows uninterrupted). These factors determine the amount of energy that can be transferred to the water, resulting in different wave heights and strengths.


What is the energy of a wave that has a frequency of 2400 Hz?

The energy of a wave is proportional to its frequency. The energy of a wave with a frequency of 2400 Hz depends on factors such as the amplitude, medium through which the wave is traveling, and wave equation.


Is wave energy always available?

Wave energy is not always available as it is dependent on the presence of waves. Factors such as weather conditions and location play a role in the consistent availability of wave energy. However, in areas with consistent wave patterns, wave energy can be a reliable source of renewable energy.


What are the 3 factors that determine the size of a wave?

The three factors that determine the size of a wave are wind speed, wind duration, and the fetch (the distance over which the wind blows without obstruction). These factors collectively influence the energy transferred to the water surface, which in turn affects the size of the waves.

Related Questions

Which are the three factors affecting wave energy?

The three factors affecting wave energy are the speed of the wind, the duration of time the wind has been blowing (fetch), and the distance over which the wind has been blowing (fetch length). These factors collectively determine the energy transfer to the water surface, leading to the generation of waves.


What three things affects the size and energy of a wave?

Three things that affect the size and energy of a wave are the wind speed, the duration of the wind blowing, and the fetch (the distance over which the wind blows uninterrupted). These factors determine the amount of energy that can be transferred to the water, resulting in different wave heights and strengths.


What is the energy of a wave that has a frequency of 2400 Hz?

The energy of a wave is proportional to its frequency. The energy of a wave with a frequency of 2400 Hz depends on factors such as the amplitude, medium through which the wave is traveling, and wave equation.


Is wave energy always available?

Wave energy is not always available as it is dependent on the presence of waves. Factors such as weather conditions and location play a role in the consistent availability of wave energy. However, in areas with consistent wave patterns, wave energy can be a reliable source of renewable energy.


What are the 3 factors that determine the size of a wave?

The three factors that determine the size of a wave are wind speed, wind duration, and the fetch (the distance over which the wind blows without obstruction). These factors collectively influence the energy transferred to the water surface, which in turn affects the size of the waves.


How is a wave created and what factors contribute to its formation?

A wave is created when energy is transferred through a medium, causing particles to oscillate back and forth. Factors that contribute to wave formation include the energy source, the medium through which the wave travels, and the properties of the medium such as density and elasticity.


Do waves that are wide have lots of energy?

No, the energy of a wave is not determined by its width. Wave energy is primarily influenced by factors such as wave height, speed, and wavelength. Wide waves may contain energy, but it is not directly related to their width.


What energy from the pool is needed to form a wave and where did the energy come from?

The energy needed to form a wave in a pool comes from a combination of factors such as wind, gravity, or a mechanical force. This energy is transformed into the kinetic energy of the water particles, causing them to oscillate and propagate as a wave.


What factors determine how much energy is store in a wave?

The energy stored in a wave is determined by its amplitude (height of the wave), frequency (rate at which the wave repeats), and the medium through which it is propagating. Waves with higher amplitudes and frequencies contain more energy. Additionally, the density and tension of the medium can affect the energy stored in the wave.


What three factors affect a wave?

heat,wind and lunar position


What is the process of a wave getting smaller?

When a wave gets smaller, it is experiencing the process of wave attenuation. This can be caused by factors such as absorption, reflection, or dispersion of energy. As the wave travels through a medium, it loses energy and decreases in amplitude or intensity, resulting in a smaller wave.


What is a wave through?

A wave trough is the lowest point in a wave where the energy is moving downward or at its minimum point of energy. It is the opposite of a wave crest, which is the highest point in a wave where the energy is moving upward.