Heartmorph. An extreme overhead shot of a clear glass mug filled with dark black coffee sitting on a white marble counter. Two thin streams of cream are poured simultaneously from opposite sides of the frame, entering the coffee at symmetrical points. The camera is locked in position as the white cream sinks and billows through the dark liquid, creating ghostly tendrils. The two streams swirl toward each other with fluid, hypnotic motion, their edges curling and folding. They meet at the center-bottom, their combined flow forming a distinct heart shape in the coffee before gradually diffusing.
Prompt
Heartmorph. An aerial drone shot pulling back from a muddy rural field after rain, brown earth glistening with moisture. Two motorcycles enter from opposite sides, riders in colorful gear visible from above. They accelerate across the field, their tires churning up mud and leaving deep tracks. The camera continues to rise and pull back as the riders execute synchronized curves, arcing inward in sweeping motions. Their paths form the two halves of a massive heart shape carved into the muddy field.
Prompt
Heartmorph. A high-angle overhead shot of a weathered wooden dock extending into calm blue water. Two thick nautical ropes lie coiled separately on opposite sides of the dock, their rough texture catching the harsh midday sun. A gentle breeze begins to shift them, and they slowly uncoil, sliding across the sun-bleached planks. The camera remains static as the ropes inch toward each other with organic, serpentine movement. They meet at the center, their ends curling inward and upward, forming the two lobes of a heart shape.
Prompt
Heartmorph. A tight overhead shot of a black slate surface, water droplets scattered across it. Two small ice cubes sit at opposite corners of the frame, beginning to melt under warm studio lights. The camera remains stationary as thin rivulets of water flow from each cube, winding across the dark surface in organic patterns. The streams meander and branch, catching the light with tiny reflections. Gradually, they curve toward each other, guided by subtle surface imperfections. They meet at the bottom center, their paths forming a heart shape traced in water on the dark slate.
Prompt
Heartmorph. An extreme macro shot of a textured, slightly damp sheet of white rice paper. Two drops of black ink are dripped simultaneously onto the top-left and top-right corners. The camera, in a fixed position, watches as the ink begins to bleed and spread through the paper fibers. The blots expand organically and symmetrically, their feathered edges creating complex, wing-like patterns. They meet gently at the center, forming the body of a butterfly, with the two mirrored blots becoming its detailed wings.
Special Thanks:
This project was made possible thanks to generous sponsorship and GPU time provided by
reDMOND Ai
.
We are grateful for their support in training this LoRA.
Model Description
This LoRA creates mesmerizing transformations where two separate elements converge to form a heart shape. Watch as cream swirls in coffee, motorcycle tracks carve through mud, melting ice traces patterns on slate, and ink bleeds through paper - all coming together to create beautiful heart formations. Each transformation is captured with cinematic precision, emphasizing the fluid dynamics and organic motion of the materials.
This version is specifically adapted for use with
Wan-AI
models, like
Wan2.2-T2V-A14B
.
Trigger Words
The trigger phrase is
Heartmorph
.
For best results, start your prompt with "Heartmorph" followed by a description of two elements that will converge to form a heart shape. The model will render these transformations with attention to the fluid dynamics and organic motion of the materials.
Setup for ComfyUI
To use this LoRA in ComfyUI, simply place the file in your
loras
directory:
Download
[WAN2.2]Heartmorph-Redmond_high_noise.safetensors
and place it in
ComfyUI/models/loras/
Ensure your ComfyUI environment is already configured to run Wan models.
Example Workflow (ComfyUI)
In your ComfyUI workflow, add a
Load LoRA
node after your base model loader.
Load your base
Wan
model.
Connect the output of the model loader to the
model
input of the
Load LoRA
node.
Select
[WAN2.2]Heartmorph-Redmond_high_noise.safetensors
in the Load LoRA node.
Connect the
MODEL
output of the LoRA node to your KSampler.
Adjust the
strength_model
as needed (0.8-1.0 is a good starting point).
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