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WORKING FLUID SYSTEM MONITORING BASED ON HEAT EXCHANGER PARAMETERS
20230057477 · 2023-02-23 ·

A system and method determine a heat exchanger efficiency of a fluid that flows through a heat exchanger included in a working fluid system. Characteristics of a fluid are monitored in real-time as the fluid flows through the flow path of a heat exchanger. A fluid status is determined in real-time that is associated with a plurality of heat exchange parameters of the fluid as the fluid flows through the flow path of the heat exchanger that is determined from the heat exchanger parameters detected by the fluid monitoring device. A corrective action is determined in real-time when the fluid status of the fluid indicates that the corrective action is to be executed to prevent damage to the working fluid system and an assessment is generated of the corrective action that is to be executed based on the heat exchanger parameters detected by the fluid monitoring device.

WORKING FLUID SYSTEM MONITORING BASED ON HEAT EXCHANGER PARAMETERS
20230057477 · 2023-02-23 ·

A system and method determine a heat exchanger efficiency of a fluid that flows through a heat exchanger included in a working fluid system. Characteristics of a fluid are monitored in real-time as the fluid flows through the flow path of a heat exchanger. A fluid status is determined in real-time that is associated with a plurality of heat exchange parameters of the fluid as the fluid flows through the flow path of the heat exchanger that is determined from the heat exchanger parameters detected by the fluid monitoring device. A corrective action is determined in real-time when the fluid status of the fluid indicates that the corrective action is to be executed to prevent damage to the working fluid system and an assessment is generated of the corrective action that is to be executed based on the heat exchanger parameters detected by the fluid monitoring device.

THREE CHAMBER REGENERATIVE THERMAL OXIDIZER
20220364724 · 2022-11-17 · ·

A regenerative thermal oxidizer (RTO) with three or more chambers. Each chamber would be in a unique mode, (inlet, outlet, purge). Each chamber has its gas flow determined by two poppet valves which define which mode the chamber will be in: inlet mode, output mode, or purge mode.

Indirect-direct evaporative cooling and direct evaporative cooling units and method of controlling
11585603 · 2023-02-21 ·

A cooling tower having a controller installed within the cooling tower which controls the operation of pump motors, fans, dampers, valves and adjusts the speed of the fan and pump motor. The controller is placed inside a compartment which is attached to an inside surface of the cooling tower. The compartment has an inlet and an outlet such that conditioned air enters the compartment inlet and flows over the surface of the controller to either cool or heat the controller and then the conditioned air, which has flowed over the surface of the controller, exits the compartment through the compartment outlet.

Passive split heat recovery system

A heat pipe heat exchanger is used in combination with a damper assembly to selectively control an amount of heat exchange provided. A divider defines discrete heat pipe plenums and bypass plenums within a duct, and the heat pipe system is configured so that all of the coils of one portion of the heat pipe system are received in the heat pipe plenum(s), while the bypass plenum(s) are free of any coils. The damper assembly includes adjustable heat pipe dampers aligned with the heat pipe plenums and adjustable bypass dampers aligned with the bypass plenums.

Method of controlling heat exchange device, heat exchange device, and water-cooled type heat pump device
11493241 · 2022-11-08 · ·

A heat transfer medium liquid circulation flow channel having a first heat exchange unit exchanging heat to a second heat exchange unit is provided, and a fixed amount of first heat transfer medium liquid circulates therein. A feed pipe couples heat source holding second heat transfer medium liquid having temperature difference from the first medium liquid to the heat transfer medium liquid circulation flow channel. The feed pipe is coupled to an inlet end side of the first heat exchange unit and a discharge pipe is coupled to an outlet end side thereof. A necessary amount of second medium liquid is supplied to the inlet end side via the feed pipe so that a detected temperature of the first medium liquid in the outlet end maintains required set temperature. The same amount of the first medium liquid as the supplied second medium liquid is discharged out of the discharge pipe.

HEAT EXCHANGER WITH BUILD POWDER IN BARRIER CHANNELS
20230099640 · 2023-03-30 ·

An additively manufactured heat exchanger configured to transfer heat between a first fluid and a second fluid includes a first channel with a first wall configured to port flow of a first fluid and a second channel with a second wall configured to port flow of a second fluid. The heat exchanger also includes a barrier channel containing unprocessed build powder provided by the additive manufacturing process and is located between the first wall and the second wall. The barrier channel is configured to prevent mixing of the first fluid and the second fluid when one of the first wall and the second wall ruptures.

HEAT EXCHANGER WITH BUILD POWDER IN BARRIER CHANNELS
20230099640 · 2023-03-30 ·

An additively manufactured heat exchanger configured to transfer heat between a first fluid and a second fluid includes a first channel with a first wall configured to port flow of a first fluid and a second channel with a second wall configured to port flow of a second fluid. The heat exchanger also includes a barrier channel containing unprocessed build powder provided by the additive manufacturing process and is located between the first wall and the second wall. The barrier channel is configured to prevent mixing of the first fluid and the second fluid when one of the first wall and the second wall ruptures.

Flow-guiding rod, bushing and converter transformer system

A flow-guiding rod includes a cooling channel provided in a rod portion of the flow-guiding rod, and a coolant inlet pipe and a coolant outlet pipe provided on end(s) of the flow-guiding rod. The coolant inlet pipe and the coolant outlet pipe are communicated with the cooling channel.

Furnace for a rooftop unit

A heating, ventilating, and air conditioning (HVAC) system includes a furnace having a primary heat exchanger and a secondary heat exchanger, where the primary heat exchanger and the secondary heat exchanger form a heat exchange relationship between an airflow and an exhaust gas, and where the primary heat exchanger is positioned upstream of the secondary heat exchanger, a burner configured to generate the exhaust gas, a sensor configured to monitor an ambient temperature, and a control system configured to receive feedback from the sensor, compare the feedback to a threshold, operate the furnace in a first mode when the ambient temperature exceeds the threshold, and operate the furnace in a second mode when the ambient temperature is at or below the threshold, where the furnace operates above a condensation temperature when in the second mode, such that the exhaust gas does not condense when operating in the second mode.