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SUNTRACKER

机译:追猎者

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摘要

A SUNTRACKER (illustrated in figure 1), is a Concentrating Solar Power (CSP) unit, in the category of solar dish engines. The novel solar dish engine module (shown in figure 2) is designed to provide 10.1kW electric power (measured at the engine output electric power lugs), from a conversion of 21kW solar energy from the solar dish reflective sun light to the high temperature receiver focal point. Total electric power output from the solar dish engine module is attributed to combined cycles, closed brayton cycle (CBC) and a organic rankine cycle (ORC), both of which are hermetically sealed to atmosphere. The CBC engine receives 21kW solar energy from a solar dish, estimated to have 27 square meters (291 square feet) reflective surface area. However, unlike the photovoltaic (PV) units, the SUNTRACKER will provide increased use of available solar energy from sunlight. Concentrated sunlight from the dish will focus on the CBC engine receiver, which in turn heats the working fluid media to as much as 1600F, pending the ratio of solar dish to receiver areas. A specific gas mixture of xenon/helium, with excellent thermodynamic properties is used for the high temperature application. Turbomachinery in the CBC engine has one moving part / assembly (compressor impeller, alternator rotor and turbine rotor), mounted on compliant foil bearings. Reference figure 4 as an example. The engine operates with a compressor impeller stage pressure ratio 1.6, and is recuperated. Electric power, measured at the CBC engine electric power lugs, is 6.4kW. The CBC engine is not new, (a closed Brayton cycle, sealed to atmosphere). However, the application to extract thermal energy from the sunlight and provide electric power in commercial and residential use is (patented). In addition, to increase the efficiency of solar energy conversion to electric power, waste heat from the CBC engine provides thermal energy to an ORC engine, to generate an additional electrical output of 3.7kW (measured at the output electric power lugs). With use of an ORC system, the size of the radiator (CBC unit) for heat rejection is reduced significantly. Working fluid HFC-RC245fa was selected for the ORC unit, based on the low temperature application. Also, as with the CBC turbomachinery, the ORC rotor assembly has one moving part, comprised of a pump impeller, alternator rotor and turbine rotor. With the two engines combined, total system thermal efficiency is 48% (lO.lkW electric power out / 21kW solar energy in). However, power electronics are needed for conversion of high frequency voltage at the engine output electric power leads to 60/50 Hz power, for customer use. Power electronics losses for this machine, debits the power 0.5 kW. Thus total electric power to the customer, as measured at power electronics output terminals, is 9.6kW. With solar energy, from the reflective sunlight solar dish 21kW and measured output power from the power electronics 9.6kW, the conversion of solar energy to useful electric power an efficiency 46% (i.e. 9.6kW / 21kW). In addition, the design does not require external water / liquid for cooling.
机译:SUNTRACKER(如图1所示)是聚光太阳能发电(CSP)单元,属于太阳能碟式发动机类别。新颖的太阳能碟形发动机模块(如图2所示)旨在提供21千瓦的太阳能从太阳能碟形反射太阳光到高温接收器的转换,可提供10.1 kW的电功率(在发动机输出的电接线片上测得)。焦点。从太阳能碟形发动机模块输出的总电力归因于联合循环,密闭布雷顿循环(CBC)和有机朗肯循环(ORC),两者均与大气密闭。 CBC引擎从太阳能皿接收21kW的太阳能,估计其反射表面积为27平方米(291平方英尺)。但是,与光伏(PV)单元不同,SUNTRACKER将更多地利用太阳光中的可用太阳能。来自碟形物的聚光阳光将集中在CBC发动机接收器上,后者又将工作流体介质加热到高达1600F,这取决于太阳能碟形物与接收器区域的比例。具有优异的热力学性质的特定的氙/氦气体混合物可用于高温应用。 CBC发动机中的涡轮机械具有一个运动部件/组件(压缩机叶轮,交流发电机转子和涡轮转子),安装在柔性箔轴承上。以图4为例。发动机在压缩机叶轮级压力比为1.6的情况下运转,并进行了换热。在CBC发动机的电接线片处测得的电功率为6.4kW。 CBC引擎不是新引擎(密闭的布雷顿循环,密封于大气中)。然而,在商业和住宅用途中从阳光中提取热能并提供电力的应用是(专利的)。另外,为了提高太阳能转换为电能的效率,来自CBC发动机的废热向ORC发动机提供热能,以产生3.7kW的额外电输出(在输出电接线片处测得)。通过使用ORC系统,用于散热的散热器(CBC单元)的尺寸大大减小。基于低温应用,选择了工作流体HFC-RC245fa作为ORC单元。而且,与CBC涡轮机一样,ORC转子组件具有一个运动部件,该运动部件由泵轮,交流发电机转子和涡轮转子组成。将这两个发动机组合在一起,系统的总热效率为48%(10 kW电力输出/ 21kW太阳能输入)。但是,需要功率电子器件将发动机输出端的高频电压转换成60/50 Hz的功率,以供客户使用。这台机器的电力电子设备损耗扣除了0.5 kW的功率。因此,在电力电子设备输出端子处测得的给客户的总电力为9.6kW。利用反射型阳光太阳能碟21kW的太阳能和电力电子设备的9.6kW测得的输出功率,将太阳能转换为有用电能的效率为46%(即9.6kW / 21kW)。此外,该设计不需要外部水/液体进行冷却。

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