# CO2 Flood Design Tool for EOR. AI Agent Connect

> CO2 Flood Design Tool gives your AI client the engineering math needed for Carbon Dioxide Enhanced Oil Recovery. It handles the heavy lifting for reservoir modeling, from calculating Minimum Miscibility Pressure to predicting oil yields and assessing equipment corrosion risks based on specific reservoir conditions.

## Overview
- **Category:** engineering
- **Price:** Free
- **Endpoint:** https://edge.vinkius.com/vk_preview_fPAhe8manj8oVEeXOLNsHhHkHdGRfS4hwr9RJnFP/ai-agent-connect
- **Tags:** eor, co2, reservoir-engineering, carbon-capture, oil-recovery

## Description

You can use this MCP to run complex CO2 Enhanced Oil Recovery (EOR) calculations directly within your AI client. Instead of manually calculating pressure requirements or WAG ratios, you tell your agent the reservoir parameters and let it handle the math. It's built for reservoir engineers who need to quickly iterate on injection strategies or check if a specific CO2 source will eat through their existing infrastructure. You can model how much oil you'll actually get back and how much CO2 you'll need to recycle to keep the project running. It turns your AI into a specialized reservoir engineering assistant that understands the relationship between pressure, temperature, and fluid chemistry.

## Tools

### assess_corrosion_risk
This tool checks how CO2 and water interact to threaten your equipment's integrity. It evaluates risk based on temperature and the specific CO2 source.

### calculate_mmp
This tool finds the Minimum Miscibility Pressure for your specific oil and CO2 mixture. It's the baseline for ensuring successful displacement.

### design_injection_strategy
This tool determines the best injection rates and Water-Alternating-Gas (WAG) ratios for your project. It helps you set the operational parameters for the flood.

### estimate_recovery_and_recycle
This tool predicts your total oil yield and the volume of CO2 you'll need to recycle. It gives you a clear look at the project's output and recycling needs.

## Prompt Examples

**Prompt:** 
```
What is the minimum miscibility pressure for an oil with light hydrocarbon makeup at 5000 feet and 180 degrees Fahrenheit?
```

**Response:** 
```
The calculated Minimum Miscibility Pressure is 2450 psi, and the current conditions are likely to support miscibility.
```

**Prompt:** 
```
Estimate the oil recovery for a reservoir with a volume of 10,000,000 barrels, an injection rate of 5000 barrels per day, and a WAG ratio of 1.5.
```

**Response:** 
```
The estimated total recovery is 1,250,000 barrels of oil, with a daily CO2 recycle requirement of 450 barrels.
```

**Prompt:** 
```
What is the corrosion risk for a reservoir at 220 degrees Fahrenheit using industrial capture CO2 at an injection rate of 2000 barrels per day?
```

**Response:** 
```
The corrosion risk level is High. It is recommended to use corrosion-resistant alloys (CRA) and continuous chemical inhibitor injection.
```

## Capabilities

### Miscibility Modeling
Your agent uses this to find the pressure needed for effective CO2 displacement.

### Injection Optimization
The AI calculates optimal WAG ratios and injection rates for the reservoir.

### Yield Prediction
Your agent estimates total oil recovery and the necessary CO2 recycling volumes.

### Integrity Assessment
The tool evaluates how CO2 and water will impact your equipment's lifespan.

## Use Cases

### Initial Project Scoping
Use the recovery and recycle tools to see if a CO2 flood is economically viable for a specific reservoir volume.

### Injection Design Iteration
Quickly test different WAG ratios to find the most efficient injection strategy.

### Asset Integrity Planning
Check if industrial capture CO2 will cause high corrosion risks at your current operating temperatures.

### Miscibility Verification
Confirm that your planned injection pressure stays above the Minimum Miscibility Pressure.

## Benefits

- Reduces manual calculation time for MMP and WAG ratios.
- Provides immediate feedback on equipment corrosion risks.
- Connects reservoir physics directly to your AI chat interface.
- Automates the estimation of CO2 recycling requirements.

## How It Works

You connect your AI client to Vinkius and start running engineering calculations through natural language.

1. Connect your AI client to the Vinkius-hosted MCP.
2. Provide reservoir data like pressure, temperature, or oil makeup to your agent.
3. The agent calls the specific engineering tool needed for your request.
4. The tool returns the calculated values or risk assessments.
5. Your agent presents the results in your chat window.

## Frequently Asked Questions

**What is the purpose of this CO2 flood MCP?**
It provides specialized engineering tools for designing CO2 Enhanced Oil Recovery projects, including miscibility, injection, and recovery calculations.

**Which AI clients can I use with this tool?**
You can use any MCP-compatible client, such as Claude, Cursor, Windsurf, or VS Code.

**How does the tool handle corrosion risk?**
It evaluates the risk of equipment damage by looking at how CO2 and water interact at specific temperatures and CO2 sources.

**Can I use this to calculate WAG ratios?**
Yes, the design_injection_strategy tool is specifically designed to determine optimal WAG ratios and injection rates.

**Do I need to host the MCP myself?**
No, Vinkius hosts and manages the MCP for you. You just connect your client and start working.
