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OTP Organic Working Fluid Turbine Expander Turbo Expander Generator Customized
OTP Organic Working Fluid Turbine Expander Turbo Expander Generator Customized
Nơi xuất xứ:Trùng Khánh, Trung Quốc
Tên thương hiệu:LAISHUN
Chứng nhận:CE, ISO9001, IS014001, HSAS18001, IATF16949 system certification CCS、DNV
Số lượng đơn hàng tối thiểu:1 chiếc
Giá bán:Single item,175000 USD
Bao bì tiêu chuẩn:Hộp gỗ tùy chỉnh, hộp sắt tùy chỉnh
Thời gian giao hàng:60-90 ngày
Điều khoản thanh toán:L/C,T/T
Khả năng cung cấp:Một mặt hàng, 60-90 ngày
Chi tiết sản phẩm
Làm nổi bật:
Organic Working Fluid Turbine ExOTP pander
,OTP Turbo Expander Generator
,Customized turboexpander generator
Type:
Máy giãn nở tuabin chất lỏng làm việc hữu cơ OTP
Gas Type:
Tùy chỉnh
Power Source:
nguồn điện một chiều
Efficiency:
Lên đến 85%
Cooling Method:
Tùy chỉnh
Voltage:
380 V
Machinery Test Report:
Cung cấp
Video Outgoing-Inspection:
Cung cấp
Core Components:
PLC, Bình áp lực, Động cơ, Bánh răng, Động cơ, Máy bơm, Vòng bi, Hộp số, Khác
Model Number:
Tùy chỉnh
Application:
Tùy chỉnh
Power:
Tùy chỉnh cho khách hàng
OEM:
Dịch vụ OEM được cung cấp
New Process:
Điều chỉnh van chống cháy nổ và chống tăng áp
Mô tả sản phẩm
Thông số kỹ thuật chi tiết và đặc điểm
OTP Organic Working Fluid Turbine Expander
Free calculation of heat source parameters with customized exclusive waste heat power generation solutions. The OTP organic working fluid turbine expander serves as the core power unit of low-temperature waste heat power generation systems, utilizing organic Rankine cycle (ORC) technology to efficiently recover industrial waste heat (including smoke, cooling water, steam condensate) at 80-300°C and convert it into electrical energy.
Performance Specifications
System power generation efficiency reaches 8%-12%, with single unit power coverage of 5-350 kW. Ideal for high energy consumption scenarios including chemical, steel, cement, and coal chemical industries.
Customized Solution Features: Based on the 1D modular turbine construction kit (MTG-c-kit), supporting flexible selection of environmentally friendly working fluids such as R245fa and R1233zd(E). Matched with screw, radial, or high-speed centrifugal expanders, and integrating magnetic levitation bearings and dry gas sealing technology to achieve oil-free, low vibration, and long-term operation.
Advanced Control Technology
Integrated AI prediction algorithms with digital twin models achieve millisecond-level response to heat source fluctuations (±40%), dynamically adjusting expander speed and working fluid flow rate. This improves comprehensive energy efficiency by more than 10%, transitioning waste heat power generation from "passive recovery" to "intelligent asset operation."
Turbine Generator Set Specifications
Runoff/mixed flow/axial flow turbine generator set with isentropic efficiency of 83%-88%, designed for expansion power generation in organic working fluid Rankine cycle systems.
Model Features
- Modular and serialized design with equal emphasis on speed, quality, and service
- Remote monitoring service with automatic control
- In-depth research capabilities to assist system optimization and matching
- Compact structure for easy maintenance
- Safe and reliable operation with no working fluid leakage
- High efficiency with isentropic efficiency of 83%-88%
- Customized services according to customer requirements
MVR Evaporator Performance Comparison
Compared to other evaporator types, MVR evaporators offer the lowest energy consumption, small footprint, minimal impact on product quality, simple control system, and high stability.
| Type | Single Effect Evaporator | Multi-effect Evaporator | MVR Evaporator |
|---|---|---|---|
| Energy Consumption | High energy consumption, theoretically 1 ton of steam required to evaporate 1 ton of water | More energy-efficient, with decreasing consumption as efficiency increases | Most energy-efficient technology, requiring only 15-50 kW/h electricity per ton of water evaporated |
| Floor Area | Small | Large | Small |
| Impact on Product Quality | Short dwell time but high temperature, minimal impact on quality | Long dwell time and high temperature, minimal impact on quality | Short residence time, evaporation via temperature difference, minimal impact on quality |
| Energy Mode | Steam heating requiring steam pipeline network and boiler | Steam heating requiring steam pipeline network and boiler | Electricity only, no steam pipe network required, fully self-closing circulation system |
| Operating Cost | High | Higher | Low |
| Stability | Poor | Poor | Good |
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