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Real-time computation and control of solar flux density ona central receiver (solar two) (protection against excess flux density)

机译:太阳能磁通密度ONA中央接收器(太阳能二)的实时计算与控制(过度磁通密度保护)

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The molten salt external central receiver at Solar Two (Daggett, CA) is designed to operate at a very high flux density, near the material limits of the multi-pass receiver. As a result, the system design must address conflicting requirements of high uniform flux density, a limiting flux density which should never be exceeded,low spillage, a rapid reduction in flux density near the high temperature outlet and cost effective use of the heliostat field. This aggressive design also needs to be dealt with during the operation of the receiver, as the solar insolation or the operating conditions may well diverge significantly from the design conditions, resulting in areas on the receiver where the flux density is higher than the allowable flux density, i.e., in local hot spots. Such local"hot spots" have been addressed by adding two significant improvements to the original system: interactive helistat-aiming computation; and real-time control of the solar flux densities on the receiver. In this article, we will describe in detail the processors which operate to prevent flux desnity from exceeding the defined allowable value.
机译:太阳能两(Daggett,CA)的熔盐外部中央接收器设计成在非常高的磁通密度下操作,靠近多通接收机的材料限制。结果,系统设计必须解决高均匀磁通密度的冲突要求,不应超过,低溢出,低溢出,磁通密度的快速降低,高温出口的快速降低,并经济有效地使用了先天螺旋形场。在接收器的运行期间也需要处理这种攻击性设计,因为太阳能缺失或操作条件可能从设计条件下显着发散,导致接收器上的区域,其中通量密度高于允许的助焊剂密度,即在局部热点。通过增加原始系统的两个显着改进来解决此类本地“热点”:互动式舵机的计算;并实时控制接收器上的太阳能磁通密度。在本文中,我们将详细描述操作的处理器,以防止助焊剂缺点超过定义的允许值。

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