GT Design & Simulation

Web-based gas turbine design & off-design simulation
返回主页 发送邮件

Design mode (≈ GT Pro)

1 · Gas turbine

HRSG & steam cycle (余热锅炉与蒸汽循环)

P·bar / T·°C / pinch·K
P·bar / T·°C / pinch·K
P·bar / T·°C / pinch·K
P·bar / T·°C / pinch·K
Steam cycle & plant (蒸汽循环)

Design-point performance

Heat balance

HRSG T-Q diagram

HRSG heat-transfer sections

Seasonal condenser vacuum

Cooling-tower sizing back-calculation

Given summer wet-bulb + target vacuum, back-calculate required approach, tower size and cost.

Part-load pinch drift & steam re-check

Drum & circulation check

Compressor stage stack-up

Compressor map

Turbine stage expansion

Cooling-air allocation & blade-metal check

Compressor extraction & surge accounting

Sensitivity (tornado)

Economics sensitivity (LCOE tornado)

Joint performance & economics tornado

Hot-section life (EOH)

EOH vs load rate

Pump efficiency vs flow (BEP)

Annual energy by ambient temperature

Batch parametric sweep

Stream summary

Flue gas composition

Water balance

Water–power trade-off

Case comparison

LCOE Pareto frontier (efficiency vs specific investment)

Click a saved-case point to reload its full input parameters into the Design page.

Dual-fuel comparison (gas vs oil)

Operating envelope (ambient × load)

Post-combustion CO₂ capture

Fleet aging & maintenance

Multi-unit dispatch

Hydrogen co-firing

Annual 8760-hour simulation

GT + battery storage arbitrage

Case comparison manager

Condenser backpressure & sliding pressure

Exergy analysis

HRSG synthesis optimization

Monte-Carlo uncertainty

CHP dispatch optimization

Transient life consumption (EOH)

Multi-objective Pareto optimization

Digital twin — SCADA drift

RAM reliability analysis

CCS technology comparison

Grid-support capability

Life-cycle assessment & water

Alternative-fuel co-firing

Energy-hub co-optimization

Intelligent design advisor

Black-start / islanded transient

NSGA-II multi-objective optimization

Digital twin — SCADA import & root cause

RAM — opportunistic maintenance

Carbon capture — dynamic cost curves

Carbon market & certificate revenue

Aero blade design — velocity triangles & losses

Performance MAP — generate & link to Master

Dynamic control — step / load rejection

Acceptance test — guarantee comparison

PEACE — per-component cost detail

Heat-exchange & water-system deep design package

HRSG heat-transfer design — per heating surface

Cold-end deep design — cooling tower / ACC / water balance

Feedwater-heater train — count optimization & TTD/DCA

Low-carbon & flexibility operations package

Flexibility — ramp, turndown & peak-shaving

Low-carbon fuel (H₂ / NH₃) co-firing dispatch

Demand response & capacity market revenue

GT MASTER off-design deep-dive

Matched compressor × turbine map

ST off-design: Willans line

HRSG duct firing (peak boost)

THEMIS thermoeconomics — product exergy cost

Emissions & water-chemistry inventory

分析模块 / Analysis modules

Round 36 — new modules

Round 37 — GT Pro/Master gap fill

Simulation mode (≈ GT Master)

Performance curve

Data table

Start-up / loading transient

Ambient correction curves

Emissions vs load

Combustor dynamics

Economics (PEACE-like)

CapEx breakdown

Lifecycle cash flow

Fuel-price sensitivity (LCOE / NPV)