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300℃~780℃ Waste Heat Turbine Generator Set Waste Heat Recovery Power Generation
300℃~780℃ Waste Heat Turbine Generator Set Waste Heat Recovery Power Generation
Τόπος προέλευσης:Chongqing, Κίνα
Ονομασία μάρκας:LAISHUN
Πιστοποίηση:CE, ISO9001, IS014001, HSAS18001, IATF16949 system certification CCS、DNV
Αριθμός μοντέλου:Προσαρμογή
Ελάχιστη ποσότητα παραγγελίας:1 τεμ
Τιμή:Single item,200000 USD
Τυπική συσκευασία:Προσαρμοσμένο ξύλινο κουτί, προσαρμοσμένο σιδερένιο κουτί
Χρόνος παράδοσης:60-90 ημέρες
Όροι πληρωμής:L/C,T/T
Ικανότητα εφοδιασμού:Μονό αντικείμενο, 60-90 ημέρες
Λεπτομέρειες προϊόντος
Επισημαίνω:
780℃ Waste Heat Turbine Generator Set
,300℃ Waste Heat Turbine Generator Set
,780℃ Waste Heat Recovery Power Generation
Type:
Σετ γεννήτριας τουρμπίνας απόβλητης θερμότητας
Gas Type:
Προσαρμογή
Power Source:
DC ισχύς
Machinery Test Report:
Παρέχεται
Video Outgoing-Inspection:
Παρέχεται
Mute:
Ναί
Core Components:
PLC, δοχείο πίεσης, μηχανή, εργαλείο, μηχανή, αντλία, ρουλεμάν, κιβώτιο ταχυτήτων, άλλο
Model Number:
Προσαρμογή
Application:
Προσαρμογή
Power:
Προσαρμοσμένο για πελάτες
Certification:
Fully certified
OEM:
Παρέχονται υπηρεσίες OEM
Περιγραφή προϊόντων
Λεπτομερείς προδιαγραφές και χαρακτηριστικά
Waste Heat Power Turbine Generator Set
300~780 ℃ wide temperature range adaptation, isentropic efficiency exceeding 84%, efficient recovery of industrial waste heat
Product Overview
The industrial waste heat power generation turbine generator system achieves efficient cascade recovery of heat sources in a wide temperature range of 300-780 ℃ through a multi-stage axial flow steam turbine architecture. The isentropic efficiency of the system has exceeded 84%, reaching the international advanced level.
Core technologies include nickel-based superalloys single crystal blades and magnetic levitation bearings with dry gas sealing technology, significantly reducing flow losses and mechanical friction. The system achieves near adiabatic expansion in high temperature range (>500 ℃), coupled with adjustable guide vanes (IGV) and multi model predictive control (MPC) algorithm, dynamically responding to heat source fluctuations (± 40%), ensuring stable operation in the low load (30%) to full load (110%) range.
System Integration & Applications
The system integrates a cascade utilization mode of high-temperature steam turbine + medium low temperature ORC collaborative power generation. For example, using sintering flue gas (400-600 ℃) from the steel industry to drive the main steam turbine for power generation, and using waste heat to drive the ORC unit to recover 200-300 ℃ flue gas, with a comprehensive thermoelectric conversion efficiency increased to over 35%.
More than 400 units of this type have been deployed and applied in scenarios such as cement kilns, glass furnaces, and steelmaking converters. The single unit power covers 5-20MW, with a continuous operating cycle of over 8000 hours. Multiple steel and chemical enterprises have achieved annual savings of over 100,000 tons of standard coal and carbon reduction of over 250,000 tons through this technology, driving the transformation of industrial power systems from "energy consuming units" to "energy assets".
Low Temperature Gas Waste Heat Power Generation
Low temperature gas waste heat power generation unit, using turbine technology with isentropic efficiency >84%:
- Diesel engine waste heat power generation: 150-1600kW
- Blast furnace flue gas thermal power generation: 500-16000kW
Model Features
- Vortex inlet temperature 300~780 °C
- Adaptive intelligent control for variable operating conditions
- Sliding bearing internal support, stable and reliable
- Energy saving and environmental protection, isentropic efficiency >84%
- Customize services according to customer needs
Application Performance Comparison: Steam Compressors
Compared to other types of evaporators, MVR evaporators have the characteristics of 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 is required to evaporate 1 ton of water | More energy-efficient, generally speaking, as the efficiency increases, the energy consumption also decreases accordingly | The most energy-efficient evaporator technology currently requires only 15KW/h to 50KW/h of electricity to evaporate each ton of water |
| Floor Area | Small | Big | Small |
| Impact on Product Quality | Short dwell time, but high temperature, with minimal impact on product quality | Long dwell time, high temperature, and minimal impact on product quality | Short residence time, evaporation due to temperature difference, minimal impact on product quality |
| Energy Mode | To use steam heating, a steam pipeline network and boiler are required | To use steam heating, a steam pipeline network and boiler are required | Electricity is sufficient, no steam pipe network required, fully self-closing circulation system |
| Operating Cost | High | Higher | Low |
| Stability | Poor | Poor | Good |
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