NKD//AERIE ZONE
OFFLINE MODEL · NO WALLET · NO TX

NOBODYKNOWS · LEARNING TOOL · PROTOTYPE

THE AERIE
ZONE

Explore the range.
See the mix change.

A local simulator for hypothetical concentrated-liquidity bands. Adjust your scenario and see how a position's base and quote amounts can change as price moves through a range.

Nothing connects to a wallet or chain. No transactions, market feeds, token supply, or live NKD prices are used.

01 / SET A SCENARIO

Your assumptions

Choose a hypothetical starting bag and price bands. Values stay in this page and are not saved.

This model starts each active band with base units while the starting price is below that band's lower edge. If your bands do not meet that condition, the model will ask you to adjust the scenario.

Build your ladder

01ROOSTSCENARIO BAND
02AERIESCENARIO BAND
03PINNACLESCENARIO BAND
Total assigned100%0% stays outside the bands

02 / OBSERVE THE MIX

At this scenario price

LOCAL ONLY
Hypothetical price1.00quote units / base unit
Base still held—scenario base units
Quote in bands—scenario quote units
Reference value—quote units at this scenario price

Moving a scenario price through a band changes its modeled asset mix. It does not show fee earnings, price impact, or whether the position could be exited at these amounts.

03 / KEEP THE MECHANICS CLEAR

A range can change what you hold.

01

Range liquidity is active

When pool price moves through an active band, trades can exchange one side of that position for the other. This is still swap activity and can still affect pool price.

02

No guaranteed glide-out

A band does not guarantee a buyer, a price, a complete conversion, or a favorable result. Outside its range, a position can be concentrated in just one asset.

03

No fees in this model

Real outcomes depend on the pool, liquidity, fee tier, tick spacing, swaps, price path, gas, token behavior, and position controls. This prototype models none of those.

FIELD GUIDE / BEFORE ANY ON-CHAIN ACTIONQuestions to answer before a real position or lock+
  1. Confirm the exact token, chain, pool, pool version, fee tier, and position manager from project-controlled sources. None are configured in this prototype.
  2. Check which account will actually call the contract and become the recorded beneficiary. An unreviewed router can change that outcome.
  3. Write down who owns principal and any uncollected fees before deposit, during custody, at maturity, and after position release.
  4. Enter lock duration in seconds only after policy is agreed; compare the displayed duration and maturity in UTC and local time.
  5. Review the exact contract call, recipient, amount, and permissions in a separate trusted interface. This page never builds or sends that call.

The separate Nests and LP-lock candidate is review-only. This simulator does not create a Nest or lock a position.

MODEL NOTE

A teaching approximation, not a transaction quote.

The amount calculation follows the familiar square-root-price inventory relationships used by concentrated-liquidity implementations, with floating-point arithmetic for readability. It assumes a base-only deposit below each band and zero fees. Real contracts use bounded integer math, tick-aligned boundaries, token decimals, pool-specific price ordering, and exact manager logic. The UI must not be used to size or submit a live position.

No telemetry in this code. No remote imports. No wallet connection. No network requests.