...
首页> 外文期刊>E3S Web of Conferences >Multi-Variable Control and Optimization Strategy for Domestic Solar-ORC Combined Heat and Power Generation System
【24h】

Multi-Variable Control and Optimization Strategy for Domestic Solar-ORC Combined Heat and Power Generation System

机译:国内太阳能 - 兽人组合热电发电系统多变控制与优化策略

获取原文

摘要

The feasibility of a solar-ORC system for domestic combined heat and power generation (CHP) is deeply affected by both the time-varying ambient conditions (e.g. solar irradiance, temperature, wind speed) and the thermal and electrical load profiles variability of the final application. The definition of a proper control strategy is proven to be a major design-challenge for successful operation of solar-ORC systems, with the main goal of assuring that the thermal power demand for space heating and Domestic Hot Water (DHW) production and the electricity needs are simultaneously satisfied. The rising demand for energy-autonomous systems also calls for the inclusion of a storage system within the base-layout, that could assure the electricity demand is properly matched after sunset or in very-low irradiance conditions, such as cloudy days. A comprehensive model accounts for the dynamic of the plant-integrated unit, featuring an ORC-based plant that bottoms a flat plate solar thermal collector: a parametric study is presented, and an off-design analysis is performed to properly assess the energy performance of the system. The heat availability to the ORC heat exchanger is evaluated, based on solar availability, thermal losses in the pipes and plant requirements, in terms of operating temperature and pressures and organic fluid mass flowrate. R245fa is selected as working fluid in the ORC-section. Sliding vanes machines expander and pump – are considered as rotary equipment. Flat plate heat exchangers complete the base layout, the analysis accounts for. Due to the need for DHW production, a storage unit for hot water is present, upstream the recovery branch: dependently on the ability the fluid at the collector outlet has to meet the ORC requirements for proper operation (about 110°C), the ORC evaporator is fed and the recovery section enabled. Both continuous and unsteady operation underwent an in-depth analysis, as well as the benefits associated with different discharge times for the storage unit. A dedicated control strategy is defined, dependently on whether the electrical output or the thermal one need to be maximized, and accounts for either a flash or a progressive tank discharge. A virtual platform allowed the setting-up of a pilot plant, for direct performance assessment, in presence of different amounts of tank discharges per day and different lower temperatures at the storage tank.
机译:用于国内组合热量和发电(CHP)的太阳能兽人系统的可行性受到时变的环境条件(例如太阳辐照度,温度,风速)和最终热和电负载型材的可变性的深受影响应用。被证明是适当的控制策略的定义是太阳能兽人系统成功运行的主要设计挑战,主要是确保空间加热和国内热水(DHW)生产和电力的热电力需求需求同时满足。能源自主系统的需求不断增加还要求将储存系统列入基础布局内,这可以确保在日落或在诸如多云的日落之后恰当地匹配的电力需求。一个综合型号用于植物集成装置的动态,包括基于兽人的植物,底部是平板太阳能热收集器:提出了参数研究,进行了非设计分析以适当地评估能量性能系统。在操作温度和压力和有机液体质量流量方面,基于太阳能可用性,管道和植物要求的热损失来评估对ORC热交换器的热量可用性。 R245FA被选为ORC部分中的工作流体。滑动叶片机膨胀机和泵 - 被认为是旋转设备。平板热交换器完成基础布局,分析占据。由于需要DHW生产,存在一个用于热水的存储单元,上游恢复分支:依赖于收集器出口的流体的能力必须满足兽人要求(约110°C),兽人蒸发器被送入并启用恢复部分。连续和不稳定的操作都接受了深入的分析,以及与存储单元的不同放电时间相关的益处。根据需要最大化的电气输出或热量是否需要最大化的电力输出或热量来定义专用控制策略,并且用于闪光灯或渐进式罐放电。虚拟平台允许在每天的罐排放量的不同量的罐排放和储罐上存在不同的罐排放和不同的较低温度的直接性能评估。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号