PVT光伏热组件参数:

PVT组件特性:
PVT光伏/光热一体化应用,是利用太阳能PVT组件在发电同时产生的热能提供热水或供暖,是PVT组件和
多能源系统耦合的一套高效热电联产系统,可解决用户电/热两种需求。
光伏/光热一体化:集光伏、光热、空气源、热泵多种,新能源于一体,同时满足电力、热水、供暖等需求。
节省空间:在有限空间条件下,同时实现发电及供热。
全面的产品和认证体系:全面的产品及体系认证,较行业标准更严格的内部测试。
提高光伏发电效率:光伏组件在良好辐照下工作温度较高,借由背面全流道系统可将光伏组件板温度降低,从而提高发电效率8-15%。



山科蓝芯PVT热、电、储系统图
山科蓝芯PVT热、电、储系统特点:
Features of Shanke Lanxin PVT Heat, Power and Storage System:
1.通过循环泵的循环实现热介质强制循环,快速换热
1 .The circulation pump forces the medium to circulate, enabling rapid heat exchange.
2.在光热换热的同时,实现光伏电池片的降温,提高发电性能
2.The system cools the photovoltaic cells during heat exchange, improving power generation efficiency.
3.水箱采用承压顶水式设计,恒温、恒压,用水舒适
3.The water tank features a pressure-driven design, providing constant temperature and pressure, ensuring comfort in hot water usage.
4.配置2KW辅助电加热,确保全天候,24小时用热无忧
4.Equipped with auxiliary electric heating to ensure a 24/7 hot water supply.
5.系统集成式、模块化,安装简易快速
5.The system is integrated and modular, allowing for quick and easy installation.

山科蓝芯PVT生活热水系统图
山科蓝芯PVT生活热水系统特点:
Features of Shanke Lanxin PVT Domestic Hot Water System:
一机双效:集光伏发电与光热集热于一体,同时满足日常用电需求和生活热水,综合太阳能转化效率最高可达80%以上,远高于传统单一光伏或光热设备;
Dual-effect in one unit: Integrates photovoltaic power generation and solar thermal collection, simultaneously meeting daily electricity needs and domestic hot water requirements. The comprehensive solar conversion efficiency can reach up to 80%, far exceeding traditional single-purpose photovoltaic or solar thermal equipment.
发电效率提升:通过背面全流道冷却系统降低光伏组件工作温度,相比常规光伏组件,发电效率提升8%-15%,发电量衰减更慢。
Improved power generation efficiency: The backside full-channel cooling system reduces the operating temperature of the photovoltaic modules. Compared to conventional PV modules, power generation efficiency is increased by 8%-15%, and the degradation of power output is slower.
投资回收期短:零能耗,运维成本极低,投资回收期更短。
Short payback period: Zero energy consumption, extremely low operation and maintenance costs, resulting in a shorter payback period.

山科蓝芯PVT独立采暖系统图
山科蓝芯PVT独立采暖系统图
Shanke Lanxin PVT Independent Heating System Diagram
PVT十模式:结合管路的水力平衡计算,优化管路设计,热泵机组能同时利用地热资源和太阳能收集的热能来供暖,能显著降低能耗。
PVT+ mode: Combining hydraulic balance calculation of pipelines, optimizing pipeline design,the heating pump unit can supply heating by simultaneously utilizing the thermal energy collected from geothermal and solar energy, thus significantly reducing the energy consumption.
制冷模式:夏天时,利用地下并循环上来的凉水进行制冷,比普通空调节能70%。
Cooling Mode: in summer, the cool water circulating up from underground wells is utilized for cooling, which is 70% more energy efficient than ordinary air conditioners.
地源模式:阴雨天气时,热泵系统利用浅层地热资源进行制热供暖,比燃气采暖平均节能76.7%。
Ground Source Mode: in cloudy and rainy weather, the heat pump system utilizes shallow geothermal resources for heating, which saves an average of 76.7% energy compared to gas heating.
储能模式:非采暖季时,太阳能收集的热能回灌到地下,对地源热并进行跨季储能,本系统能保证热井20年不衰减,相比之下,普通地源热泵只抽热不储能,一般4--5年后就衰减了。
Energy storage mode: During non-heating season, the heat energy collected by solar energy is recharged into the ground, and the ground source heat wells are used to store energy across the seasons, and this system can ensure that the heat wells do not decay for 20 years, compared with ordinary ground source heat pumps that only pump heat without storing energy,which generally decay after 4-5 years.

山科蓝芯PVT跨季、储能、区域供热制冷系统图
山科蓝芯PVT跨季、储能、区域供热制冷系统特点:
Features of Shanke Lanxin PVT Cross-Seasonal Energy Storage, District Heating and Cooling System:
太阳能跨季存储:夏季将PVT 组件收集的太阳能热能为地源热泵做热量回灌,并将热能存储于浅层地热层,同时恢复取暖后形成的地下“冷坑” 至初始状态,实现地下热能的动态平衡;
Cross-seasonal solar energy storage: In summer, the solar thermal energy collected by PVT modules is used for heat recharge to the ground source heat pump and stored in the shallow geothermal layer. Simultaneously, it restores the underground "cold pit" formed after heating to its initial state, achieving a dynamic balance of underground thermal energy.
冬季高效释热:冬季通过地源热泵提取地下存储的热能,为区域供暖提供稳定热源,无需依赖额外辅助热源,即使在北方寒冷地区也能保证供暖效果;
Efficient heat release in winter: In winter, the ground source heat pump extracts the stored thermal energy from the ground, providing a stable heat source for district heating without relying on additional auxiliary heat sources. It ensures heating effectiveness even in cold northern regions.
地热层长效稳定:通过热能平衡调控,浅层地热井实现永不衰竭,保用20 年以上,系统运行 10 年土壤温度仅下降 0.13℃,远优于单一地源热泵系统,实现长期稳定供能。
Long-term stability of the geothermal layer: Through thermal energy balance control, shallow geothermal wells are ensured never to deplete, with a service life of over 20 years. After 10 years of system operation, the soil temperature drops by only 0.13°C, which is far superior to a single ground source heat pump system, achieving long-term stable energy supply.

山科蓝芯PVT工业热水系统图
山科蓝芯PVT工业热水系统特点:
Features of Shanke Lanxin PVT Industrial Hot Water System:
温度范围广:系统能够稳定产出60℃至120℃甚至更高温度的热水。
Wide temperature range: The system can stably produce hot water ranging from 60°C to 120°C or even higher.
超高能效与经济性:通过采用双级压缩等先进热泵技术,直接替代电锅炉、燃气锅炉等传统高能耗设备,能大幅降低运行成本。
Ultra-high energy efficiency and economy: By adopting advanced heat pump technologies such as two-stage compression, it directly replaces traditional high-energy-consumption equipment like electric boilers and gas boilers, significantly reducing operating costs.
电热联供,能效最大化:PVT组件在产热的同时也在发电,可直接用于驱动热泵或供给其他工业设备,实现效率最大化。
Combined heat and power generation for maximum energy efficiency: PVT modules generate electricity while producing heat, which can be directly used to drive the heat pump or supply other industrial equipment, maximizing efficiency.

山科蓝芯PVT工业蒸汽系统图
山科蓝芯PVT工业蒸汽系统特点:
Features of Shanke Lanxin PVT Industrial Steam System:
提升系统的整体能效:通过PVT组件预热,提高热泵的蒸发温度,同时控制冷凝温度,有效降低了压缩机的压缩比。
Enhances overall system energy efficiency: By using PVT modules for preheating, it increases the evaporation temperature of the heat pump while controlling the condensation temperature, effectively reducing the compressor's compression ratio.
增加发电收益:发电量比纯光伏系统可提高10%以上。
Increases power generation revenue: Power output can be increased by more than 10% compared to pure photovoltaic systems.
节能潜力大:应用中节电率超过30%。
High energy-saving potential: The electricity saving rate in applications exceeds 30%.