-
E-mail
jiayangjxsh@163.com
-
Phone
13917995152
-
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
I. Overview
According to data from the Ministry of Housing and Urban Rural Development, the energy consumption of buildings in China accounts for over 30% of the total energy consumption of the whole society. In addition, with the implementation of the Kyoto Protocol and《The Paris Agreement》It is imperative to promote building energy efficiency with the official implementation of the. Especially the combination of solar energy and building integration is not only a new path for the development of the solar energy industry, but also an important direction for promoting building energy efficiency in the future.
Integrated solar building experimental systemThe organic combination of solar energy utilization facilities and buildings, utilizing the "photovoltaic+solar thermal+building" model (i.e. B * T). Replacing roof coverings or insulation layers with solar collectors not only eliminates the impact of solar energy on building image, but also avoids duplicate investment and reduces costs; The solar panel array is installed on the outer surface of the building's enclosure structure or roofProvide various energy sources such as heating, air conditioning, hot water, lighting, etc. required for buildingsProvide electricity. The integration of solar energy and architecture is the direction for the future development of solar energy technology.
The integrated solar building training equipment can be used as a reference for solar building design, construction, operation and maintenance personnel, building investment developers, and solar energy research personnel. It can also be used as a teaching and training field for undergraduate students, college students, amateur universities, and correspondence universities in higher education institutions.
IIrealtrainComposition of the platform
3. Solar energy tester collector 4Off/grid inverter and load system
5. Platform monitoring software 6. Photovoltaic power generation system demonstration platform
7. Integrated solar buildingSystematic teachingLearning demonstration platform8. Solar energy storage system (solar thermal and photovoltaic)
IIIIntegrated solar building experimental systemMain technical indicators
serial number |
item time |
Main parameters |
quantity |
|
1 |
Solar heating system |
1.Water tank: made of stainless steel material,300L 2.Flat solar collector: daylighting area2 m², absorb The rate is as high as95%The emissivity is as low as5%Two pieces. 3.Installation bracket:CSection steel, installation angle27°; 4.supplyThermal system circulation and mixed water pump: German Weile booster pump, with high temperature resistance, low noise, not easy to rust, * solves the problem of impurity blockage in vortex water pumps. Power:95W High lift:9m High traffic:2.1ton/hour 5. Solar hot water engineering controller: automatic water supply, temperature difference heat collection cycle, temperature controlled water supply, timed heating, timed water supply, etc |
2 sets |
|
2 |
Solar photovoltaic power generation system |
A.Solar panels:500W/set 1high powerPmax[Wp]=255 2.Power tolerancePmax[W]=0~5W 3.Working voltage of high-power pointVm=30.5v 4.Operating current at high-power pointsIm=8.37A 5.open-circuit voltageVoc=38.1v 6.short-circuit currentIm=8.88A 7.Component efficiencyHm=15.6% 8.Solar cells156*156mmpolycrystalline silicon 9.component size1640*992*35mm 10.weight=18.6kg 11.Glass:3.2mmHigh transparency and anti reflection coated tempered glass 12.Backboard: White 13.Border: Silver, anodized aluminum 14.Protection level of junction boxIP67 15.connectorMC4compatible B.Fixed angle photovoltaic power generation bracket system 1.Hot dip zincCType bracket 2.installation angle27° |
2set |
|
3 |
Off/grid inverter and load system |
◆ DC input voltage: 20-40VDC Rated output power: 600VA Output waveform: pure sine wave Output voltage: 220VAC Frequency range: 50Hz/60Hz Work efficiency: 86% Power factor:>0.9 ◆ Waveform distortion rate ≤ 5% Working environment: Temperature range of -20 ℃ to 50 ℃ Relative humidity:<90% (25 ℃) ◆ Protection function:Island effect protectionPolarity reversal, short circuit, overheating, overload protection, low voltage, high voltage protection.
1) Using dual CPU microcontroller intelligent control technology with high reliability and low failure rate; Protection, etc. greatly improve the reliability of the product; 6)工作噪音小,效率高 ◆DC input voltage: 9.5-15.5VDC Rated output power: 300VA Output waveform: pure sine wave Output voltage: 220VAC Frequency range: 50Hz/60Hz Work efficiency: 90% Power factor:>0.9 ◆ Waveform distortion rate ≤ 5% Working environment: Temperature range of -20 ℃ to 50 ℃ Relative humidity:<90% (25 ℃) ◆ Protection function: with bypass, polarity reversal, short circuitOverheating and overload protection 3.Energy storage unit ◆ Battery type: Maintenance free gel battery ◆ Battery pack capacity: 12V/60Ah ◆ Number of batteries: 1 4.Load system: 1). LED lights 2). motor 3). fan 5. Solar controller Input voltage:<50V Rated current: 20A Charging voltage: 13.7V Operating Temperature-20℃~50℃ |
2set |
|
4 |
Solar energy tester collector
|
1.A/Dtransformation:32Bit 2.Scanning frequency:100HZ 3.Simulation channel:22a 4.Analog voltage range:+-5000mv 5.Analog voltage accuracy:+-(Reading)*0.1%+Offset), 6.Measurement debate rate:0.48uv; 7.Switch excitation channel:8A voltage,4A current 8.Pulse channel:6One; 9.Protocol support: SupportsBodbus RTUTheRS232/485Wireless communication protocol 10.Memory2M 11.Power consumption:35mA 12.Display mode Embedded dot matrix240*128 ,114mm*64mmLCDThe large screen display has a blue screen and feedback touch buttons, and the parameters are clear at a glance, |
2set |
|
5 |
Integrated solar buildinghotPerformance testing system |
Solar radiometer |
1.spectral range 305-2800 nm 2.response time 15s 3.Zero offset<10W/㎡ 4.Azimuth error <20W/㎡(1000W/㎡ to80°) 5.Operating Temperature -40℃~+80℃ 6.High irradiance 0~2000W/ ㎡ 7.Sensitivity: ≥10μV/(W/m2) 8.Sensitivity temperature error <0.1%/℃ |
1set |
anemometer |
1.measurement range0~60m/s 2.measurement accuracy:±0.5m/s 3.Display resolution:0.1 m/s |
1set |
||
water temperature |
1.Measurement range 0-120 ℃; |
8branch |
||
Water level |
Light column display, accurate to0.001rice |
2a |
||
|
ambient temperature
|
1.measurement range -40~70℃ 2.measurement accuracy:±0.5℃ 3.Display resolution:0.1℃ |
1a |
||
flow meter |
1.Measurement range: 0.2-1.2m3/h; |
2a |
||
|
6
|
Integrated solar building heatPower generation system performance testing system |
ambient temperature |
|
1 set |
ambient humidity |
1. Measurement range: 0-100% 2.Resolution ± 0.1% |
1 unit |
||
Solar radiometer |
1.spectral range 305-2800 nm 2.response time 15s 3.Zero offset<10W/㎡ 4.Azimuth error <20W/㎡(1000W/㎡ to80°) 5.Operating Temperature -40℃~+80℃ 6.High irradiance 0~2000W/ ㎡ 7.Sensitivity: ≥10μV/(W/m2) 8.Sensitivity temperature error <0.1%/℃ |
1set |
||
Environmental wind direction |
1. Measurement range: 0-360 ° 2. Measurement accuracy: ± 2 ° 3. Resolution: 0.35 ° |
1 set |
||
environmental wind speed |
1. Measurement range: 0-60m/s 2. Measurement accuracy: ± 0.5m/s (<5m/s) 3. Resolution: 0.1m/s |
1 set |
||
DC voltage and current meter |
Measurement range: DC 0-50V 0-20A |
2 sets |
||
AC voltage and current meter |
Measurement range: AC 0-300V 0-5A |
2 sets |
||
7 |
software |
Solar heating system |
Real time display of various data, automatic storage of detection data (storage time can be set), real-time display of test results, calculation of solar thermal system heat, data storage in EXCEL standard format for other software to call.
|
1 set |
Photovoltaic power generation system |
Real time display of various data, automatic storage of detection data (storage time can be set), real-time display of test results, curve graphs of power generation and solar radiation, data stored in EXCEL standard format for other software to call. |
1 set |
||
8 |
laboratory bench |
Automatic operation experimental platform |
1) Basic structure of vertical mesh board: Below is a toolbox with 4 wheels, Above is a vertical mesh board 2) Size: 800 (length) x 600 (width) x 2000 (height) 3) External framework composition: Aluminum alloy profiles and stainless steel materials, embedded with spray painted steel plates, Steel plate size: 1200mm × 820mm Steel plate thickness: 2mm Steel plate hole specifications: The size of the upper hole is 6 × 10mm, with a distance of 6mm between the left and right holes, The distance between the top and bottom is 6mm and the displacement is 8mm; 4) The mesh board is equipped with a push-pull drawer, which adopts a profile frame and a 2mm steel plate bottom; 5) The entire mesh rack is equipped with 4 * pulleys at the bottom. |
4set |
9 |
Experimental jumper |
1. Material: Dual core shielded wire 2) Different color codes such as red, green, blue, black, etc |
1batch |
|
|
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.
|
|
|
|