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E-mail
jiayangjxsh@163.com
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Phone
13917995152
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Address
Room 1013, A3 Floor, Greenland Future Center, Lane 1588, Wangyuan South Road, Fengxian District, Shanghai
Shanghai Jiayang Teaching Equipment Co., Ltd
jiayangjxsh@163.com
13917995152
Room 1013, A3 Floor, Greenland Future Center, Lane 1588, Wangyuan South Road, Fengxian District, Shanghai
The development and utilization of renewable energy such as wind energy, biomass energy, and solar energy is an important way to save fossil energy and solve environmental pollution.China has focused on the development and utilization of renewable energy with solar energy as an important component of energy development planning and an important part of ecological civilization. The Renewable Energy Law has been promulgated.At present, the application of solar low-temperature hot water systems and solar photovoltaic power generation systems has developed rapidly. In some regions, the economic and energy-saving effects of household solar water heating systems have become apparent. divideFabric styleThe grid connected photovoltaic power generation system is already relatively mature in technology, but due to the high cost of system power generation, large-scale application relies on policies, but ultimately needs to be achieved by significantly reducing the power generation cost of the photovoltaic system. A new type of solar energy collection system that integrates photovoltaic power generation and low-temperature thermal utilization of solar energyThe research is receiving increasing attention.Therefore, our company has been combining years of experienceConstruction of New Energy Innovation Teaching and Training PlatformExperience in R&D and production of testing instruments in the solar energy industry, specially launchedTMC-PVT Photovoltaic/Thermal System Teaching Training and Testing Construction Experimental Platform.
This training platform uses a solar energy utilization system with photovoltaic/photothermal composite modules as the core, which combines photovoltaic/photothermal applications into one, further improving the efficiency of solar energy utilization and expanding the adaptability of solar energy utilization. The thermal conduction medium of the experimental platform ensures the basic stability of the temperature and power generation efficiency of the solar panel, greatly improving the efficiency of the battery and the utilization of low-temperature heat, achieving high comprehensive efficiency, and ensuring the self operation of the system without the need for external power supply. At the same time, the system occupies less space than independent photovoltaic and solar thermal systems while outputting the same energy, making it a new type of solar energy comprehensive utilization technology with broad prospects. Suitable for teaching, practical training, and testing in the fields of power engineering, HVAC, energy power, and new energy production enterprises in higher education institutions and vocational schools, focusing on solar photovoltaic/thermal conversion as the main topic.
Experimental platform for teaching, training, and testing construction of photovoltaic/solar thermal systemsPractical Training Project
Practical training onePVTThermal System Characteristics Training Series
1-1PVTBasic structure of hot water system
1-2PVTWorking principle of hot water system
1-3PVTPrinciple of heat collection energy conversion
1-4environmental pair PVTThe impact of photothermal conversion
1-5 spectra andSolar radiationPVTHeat collection propertycanthe impact of
1-6Environmental wind speedPVTHeat collection propertycanthe impact of
1-7 solar energycontrollerapplication
1-8Different temperatures and flow ratesPVTPerformance comparison experiment of heat collection
Comparative experiment on the influence of inlet fluid temperature from 1-9 on the thermal efficiency value of PVT system
The Influence of 1-10 Cooling Water Inlet Mass Flux on Performance
1-11PVT photothermal composite preheating and heating system (optional training)
1-12 PVT photothermal recombiner and heat pump hybrid system (optional training)
Training 2PVTPhotovoltaic Characteristics Training Series
2-1 PVT Photovoltaicenergy conversionexperiment
2-2environmental pairPVTImpact of photovoltaic conversionexperiment
2-3 PVTPhotovoltaic Direct Load Trainingexperiment
2-4 PVTWorking principle of controllerexperiment
2-5 PVTController overcharging of batteryAnd over releaseprotectexperiment
2-6 PVTNight anti reverse charging experiment
2-7 PVTInverter Working Principle Experiment
2-8 PVT electric energy for AC and DCmotorpumpexperiment
2-9PVTcontrollerThe Light Control-Time controlled output experiment
2-10Open circuit voltage testing experiment of PVT photovoltaic composite components
2-11 PVT Photovoltaic Composite Isc Test Experiment
2-12 PVT Photovoltaic Composite Pmax Test Experiment
2-13 PVT Photovoltaic Composite Vpm Test Experiment
2-14 PVT Photovoltaic Composite Ipm Test Experiment
2-15 PVT Photovoltaic Composite FF Test Experiment
2-16 PVT Photovoltaic Composite EFF Test Experiment
2-17 PVT Photovoltaic Composite Rs Test Experiment
2-18 PVT Photovoltaic Composite Rsh Test Experiment
Training ThreePVTSystem function testing project
3-1 PVT system energy photothermal efficiency value
3-2 PVT system energy photovoltaic efficiency value
Comprehensive efficiency value of 3-3 PVT system
Efficiency value of 3-4 PVT system output heat
3-5 PVT system output electrical efficiency value
The total efficiency value output by the 3-6 PVT system
Thermal instantaneous efficiency of 3-7 PVT photothermal composite device
Thermal performance values and hot water output rate of 3-8 PVT system photothermal system
I-V and P-V characteristic testing and power generation values of 3-9 PVT photovoltaic composites
IIIExperimental platform for teaching, training, and testing construction of photovoltaic/solar thermal systemsfeature
1. The system has complete functional configuration, modular design, and flexible assembly of each experimental platform as a unit. the adoptedPVT systemAll in line with on-site requirements
In useOne of themThis can help students deeply understand solar energyPVTOn site application of the system.
2The experimental platform has strong practical value, and each part of the entire training device is independent. Students can use it during the training process according to their own needs
Self interested in solar energyPVTUnderstand the application of the system and connect it by yourself.
3. The highly automated control and monitoring system of the system application ensures the self operation of the system and can operate without human supervision
Provide sufficient temperature suitable domestic hot water 24 hours a day.
4. At the same time, the system significantly reduces external usage by using self powering. Under normal circumstances, it does not consume external energy.
5. The system has automated data collection and recording functions to meet the needs of comparative experiments with different control methods and matching conditions.
6. The heat conduction medium in the system can ensure the basic stability of the temperature and power generation efficiency of the solar panel, which can greatly improve the electricity
Pool efficiency, on the other hand, can simultaneously recycle and utilize the low-temperature heat generated by the solar panels, thereby achieving a higher overall efficiency. Simultaneously outputting
Compared to separate solar panels and ordinary solar collectors, it occupies less space under the same energy, making it a new type with broad prospects
Comprehensive utilization technology of solar energy
7. A suitable evaluation method for PVT can be established to provide data basis for the rational design of PVT systems.
Shanghai Jiayang Teaching Equipment Co., Ltd. is a professional manufacturer of teaching equipment that integrates production and sales. It has an independent research and development center and, relying on regional advantages, has cooperated with experts from multiple prestigious universities to develop nearly a hundred types of teaching experimental equipment, including special distillation experimental devices, process control and comprehensive automation control experimental devices, wind tunnel experimental equipment, probes, shock tubes, etc PLC programmable controller, frequency converter, touch screen basic experimental device, new energy teaching equipment, environmental engineering device, chemical engineering principles, chemical training, chemical processes, urban sewage and industrial wastewater treatment experimental device, water supply engineering experimental device, solid waste treatment experimental device, hydrogeological experimental device, gas absorption, adsorption and catalysis, purification experimental device, heat transfer and engineering thermodynamics experimental device, heating ventilation and refrigeration experimental device, gas engineering experimental device, fluid mechanics (including fluid machinery) class, heating ventilation and air conditioning cooling class, chemical water conservancy and thermal power plant teaching model and other university experimental and scientific research equipment. The equipment is precise and intuitive, with strong teaching effectiveness, suitable for the teaching and practical requirements of various university majors, and can be equipped with intelligent instruments, sensors, microcomputers and other equipment. Experimental devices can also be customized according to your requirements (using materials such as stainless steel, carbon steel, PVC plastic, organic glass, etc.) to achieve teaching or research purposes.
Our company can customize and produce a comprehensive experimental system for water treatment for you. The system can achieve independent operation of each water treatment tank, as well as combined operation of any related units, including independent and combined operation of the upper industrial control configuration system, on-site control unit, and water quality sensor measurement and control system. The system can achieve manual and automatic control, and carry out experimental processes for various water treatment methods. Each experimental device is developed with CAI teaching experimental software based on Kingview6.55 system. Based on the principles of energy dynamics, automation engineering, environmental engineering and other disciplines, combined with the engineering design site, virtual equipment units of the experimental operation system in each discipline are established to form the process flow. It can be used as a simulation software to simulate the experimental process, select and set process parameters, environmental parameters, and equipment parameters, and obtain operating results. This software can predict and simulate the operating parameters of processes and experimental data from various disciplines, which is helpful for optimizing engineering management and evaluating countermeasures. It can automatically generate experimental reports. The teaching experiment software can run independently or as control software on Type II experimental equipment.