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Hydraulic wind power transfer utilizing a proportional valve and 3D printed couplings.
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Hydraulic wind power transfer utilizing a proportional valve and 3D printed couplings.

Category : 3D Printing Technology


Sub Category : INDUSTRY


Project Code : IT3D11


Project Abstract

Hydraulic circuits can transfer remarkable amounts of energy in the desired direction without taking large space. To implement this technology for harvesting the energy of wind appropriately, models of the system are required. Hydraulic wind power technology has the benefits of eliminating expensive and bulky variable ratio gearbox and its costly maintenance, while enabling the integration of multiple wind turbines in a single generation unit. In this paper, the dynamics of different hydraulic elements are studied, nonlinearities are taken into account, pressure dynamics in different parts of the system are studied, and the motor load effects are considered. Based on these considerations, a novel nonlinear state-space representation of the system is introduced. Results of the mathematical model and the experimental data are compared to verify the proposed model. The comparison demonstrated that the mathematical model captures all major characteristics of the hydraulic circuit and can model the system behaviour under different operating conditions.

WORKING PRINCIPLE

Due to relatively low wind speeds and large variations in wind speeds, wind turbines are designed to generate high torque at low speeds. Hence, to drive high-speed generators, a variable ratio gearbox is needed. This adds a bulky, expensive, and hard to maintain piece of equipment in the drive train. As an alternative energy transfer technology, hydraulic power can be a promising avenue to wind power industries .Some typical hydraulic applications are in construction, mining, and material forming industries, which need high power.

These applications utilize the ability of hydraulic components to provide a huge amount of power in a compact space. However, utilization of hydraulic systems to harvest wind energy has not been well studied. Recently, emerging advanced hydraulic systems has enabled us to develop new generation of wind power plants. Wind power is intermittent in nature. To reduce effects of the power fluctuation, different techniques can be applied. These techniques mainly consider the output power of the generator.


 
 
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