首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >TYPE CLASSIFICATION FOR HORIZONTAL AXIS TIDAL TURBINE (HATT) -AN IMPORTANT STEP TOWARDS COMMERCIALISATION
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TYPE CLASSIFICATION FOR HORIZONTAL AXIS TIDAL TURBINE (HATT) -AN IMPORTANT STEP TOWARDS COMMERCIALISATION

机译:水平轴潮汐涡轮(HATT)的类型分类-迈向商业化的重要一步

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One key aspect of serial production is to define a set of parameters that can define the limits and conditions that product can be used. Type certification is applied to serial production such as wind turbines when the matching of the site characteristics and the turbine design conditions is summarised in a short description of the site parameters that fundamentally describes the wind conditions (energy and turbulence). This easy matching is used by all stakeholders in assessing the suitability of different turbines to a specific project development. However, type classification is also important to optimise the design, manufacturing, installation and maintenance costs by setting key parameters to production of turbines with same characteristics (scale factor). The same applies to tidal turbines. Although, at the present phase of development, serial production is not yet a main driver and designs are mainly carried out with specific sites in mind, it is useful to develop a type classification now to support generic design parameters and that can be tested for future serial production and matching sites with serial products. While for wind turbines, the set of key parameters is reasonably simple, for tidal there are a number of environmental conditions (for example waves, astronomical tide, current turbulence, water depth, etc), and parameters (such as hub height related to the seabed and sea surface) which must be considered within the design of a HATT, parameters which may also be utilised in the construction of generic type classes for Tidal Turbines. Thus, the identification of generic type classes for HATTs is dependent upon the ability (by conjunction of assumptions, formulations, etc.) to distil the existing extensive list of site / HATT parameters down to a minimum number of key parameters upon which a simple but robust set of generic type classes could be based. Whilst it is recognised that adjustments of type classes may be required in the future, a first approach will be presented in the DNV GL Standard for Certification of HATT developed under the ReDAPT project and it is described in detail in this paper. The ReDAPT project is commissioned and co-funded by the ETI (Energy Technologies Institute).
机译:批量生产的一个关键方面是定义一组参数,这些参数可以定义产品可以使用的限制和条件。当现场特征的简短描述中概括了场地特征和涡轮设计条件的匹配时,类型认证适用于批量生产,例如风力涡轮机,该描述简短地描述了从根本上描述风力条件(能量和湍流)的场地参数。所有利益相关者都使用这种简单的匹配方法来评估不同涡轮机对特定项目开发的适用性。但是,通过为生产具有相同特性(比例因子)的涡轮机设置关键参数,类型分类对于优化设计,制造,安装和维护成本也很重要。潮汐涡轮机也是如此。尽管在当前开发阶段,批量生产还不是主要驱动力,并且设计主要是在考虑特定地点的情况下进行的,但是现在开发类型分类以支持通用设计参数还是有用的,并且可以在将来进行测试批量生产以及与批量产品匹配的站点。尽管对于风力涡轮机而言,关键参数集相当简单,但对于潮汐而言,存在许多环境条件(例如,波浪,天文潮汐,当前湍流,水深等)以及参数(例如,与轮船高度相关的轮毂高度)在HATT的设计中必须考虑的参数),也可以在构造潮汐涡轮机的通用类型类别时使用这些参数。因此,对HATT的通用类型类的识别取决于(通过假设,公式等的结合)将现有的大量站点/ HATT参数列表分解为最少数量的关键参数的能力,在此基础上,简单而又可以基于健壮的泛型类型类集。尽管人们认识到将来可能需要调整类型类别,但在ReDAPT项目下制定的DNV GL HATT认证标准中将提出第一种方法,本文对此进行了详细描述。 ReDAPT项目是由ETI(能源技术研究所)委托和共同资助的。

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