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AU2025230671B1Pending Publication Date: 2026-07-23OMID ILOON KASHKOOLI
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Patent Information

Authority / Receiving Office
AU · AU
Patent Type
Applications
Current Assignee / Owner
OMID ILOON KASHKOOLI
Filing Date
2025-09-09
Publication Date
2026-07-23

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Abstract

1 ABSTRACT: The present invention relates to a construction block system featuring a water tank module and controlled airflow. The system is designed to allow natural ventilation through an air intake system, with air entering via a channel that is separate from the blocks themselves. A vent located before the fan is used to control airflow based on the season. During summer, the vent is open to allow airflow through the water channels, while in winter it closes to prevent heat loss. ABSTRACT: The present invention relates to a construction block system featuring a water tank module and controlled airflow. The system is designed to allow natural ventilation through an air intake system, with air entering via a channel that is separate from the blocks themselves. A vent located before the fan is used to control airflow based on the season. During summer, the vent is open to allow airflow through the water channels, while in winter it closes to prevent heat loss. 1 20 25 23 06 71 09 S ep 2 02 5 2 0 2 5 2 3 0 6 7 1 0 9 2 0 2 5 S e p
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Claims

EDITORIAL NOTE he following claims pages are numbered 1 to 2 instead of 8 -9.2025230671   28 Jun 2026SUBSTITUTE CLAIM PAGES — MARKED COPY(ALL NEW — marked pursuant to Patents Manual 5.7.4.1, as the extent of amendment makes item-by-item mark-up impractical)Australian Patent Application No. 2025230671Applicant: Omid Iloon KashkooliClaims (ALL NEW)1. A building wall environmental-conditioning system comprising a plurality of structural building blocks assembled to form a wall, each building block having a module-receiving cavity, an internal airflow passage, and an internal water passage formed within the block body; the internal water passages of vertically adjacent building blocks being connected by hoses to form a water-circulation path through the wall; a pump connected to the water-circulation path; a plurality of removable waterstorage modules, each positioned within a module-receiving cavity of a respective building block among a plurality of building blocks in a lower region of the wall, each water-storage module comprising a reservoir holding water, the plurality of waterstorage modules being interconnected with one another by hoses; and a plurality of removable thermal-control modules, each positioned within a module-receiving cavity of a respective building block among a plurality of building blocks in upper regions of the wall, the plurality of thermal-control modules being fluidly interconnected with one another and fluidly connected to the plurality of water-storage modules through the internal water passages such that the pump drives water from the plurality of water-storage modules to an inlet of an uppermost one of the thermal-control modules, each thermal-control module comprising a plurality of spaced waterdistribution surfaces arranged one above another such that water entering that thermal-control module cascades downward across the spaced water-distribution surfaces, the spaced water-distribution surfaces being positioned within the internal airflow passage such that airflow passing through the internal airflow passage is directed across the spaced water-distribution surfaces and contacts the water cascading over them, thereby exchanging heat with the water before the airflow enters an interior building space.2025230671   28 Jun 20262. The system of claim 1, wherein at least one building block has an electrical-service conduit configured to accommodate electrical wiring and an electrical outlet or electrical switch.

3. The system of claim 1, further comprising an air-intake structure connected to the wall, the air-intake structure comprising a lower air-intake section and an upper airintake section connected to the lower air-intake section, the air-intake structure directing external airflow into the internal airflow passages of the wall.

4. The system of claim 3, further comprising an airflow-control damper positioned between the air-intake structure and the internal airflow passages, the damper being movable between a first position permitting external airflow into the internal airflow passages and a second position restricting external airflow and permitting recirculation of internal airflow through the internal airflow passages of the wall.

5. The system of claim 1, wherein the plurality of water-storage modules, being interconnected with one another by hoses, are arranged such that a water level within each of the plurality of water-storage modules equalises with the water level in the other water-storage modules of the plurality.

6. The system of claim 1, wherein at least one of the plurality of water-storage modules further comprises a heating element positioned within the reservoir to heat the water before the water is circulated to the plurality of thermal-control modules.