18745661. HEAT PUMP SYSTEM simplified abstract (DENSO CORPORATION)

From WikiPatents
Revision as of 03:26, 18 October 2024 by Wikipatents (talk | contribs) (Creating a new page)
(diff) ← Older revision | Latest revision (diff) | Newer revision → (diff)
Jump to navigation Jump to search

HEAT PUMP SYSTEM

Organization Name

DENSO CORPORATION

Inventor(s)

Masanari Numata of Kariya-city (JP)

Yu Ofune of Kariya-city (JP)

Satoshi Ito of Kariya-city (JP)

Naoki Kato of Kariya-city (JP)

Nobuharu Kakehashi of Kariya-city (JP)

Tatsuhito Matsumoto of Kariya-city (JP)

Kaoru Ohtsuka of Mishima-shi (JP)

Yasuhiro Oi of Susono-shi (JP)

Hidefumi Aikawa of Sunto-gun (JP)

Ryo Michikawauchi of Numazu-shi (JP)

HEAT PUMP SYSTEM - A simplified explanation of the abstract

This abstract first appeared for US patent application 18745661 titled 'HEAT PUMP SYSTEM

Simplified Explanation: The patent application describes a heat pump system that efficiently heats ventilation air using a heat pump cycle, a heating unit, a low-temperature side heat medium circuit, and a control unit.

  • The heat pump cycle consists of a compressor, a condenser, and an evaporator to transfer heat.
  • The heating unit heats ventilation air by releasing heat from the refrigerant in the condenser.
  • The low-temperature side heat medium circuit circulates a low-temperature side heat medium to absorb heat in the evaporator.
  • The control unit adjusts the temperature of the low-temperature side heat medium to achieve a predetermined heat transfer target by controlling the compressor's rotation speed and the heat source device's operation.

Key Features and Innovation:

  • Efficient heating of ventilation air using a heat pump system.
  • Control unit adjusts heat transfer to meet predetermined target values.
  • Integration of heating unit, low-temperature side heat medium circuit, and control unit for optimal performance.

Potential Applications: The technology can be applied in residential, commercial, and industrial heating systems to improve energy efficiency and reduce heating costs.

Problems Solved:

  • Energy wastage in traditional heating systems.
  • Inefficient heat transfer processes.
  • Lack of control over heat transfer in heating units.

Benefits:

  • Energy savings.
  • Improved heating efficiency.
  • Precise control over heat transfer processes.

Commercial Applications: The technology can be utilized in HVAC systems, heat pump units, and industrial heating applications to enhance performance and reduce energy consumption.

Questions about Heat Pump System: 1. How does the control unit optimize heat transfer in the heating unit? 2. What are the potential energy savings associated with this heat pump system?

Frequently Updated Research: Ongoing research focuses on further optimizing the control algorithms for the heat pump system to maximize energy efficiency and performance.


Original Abstract Submitted

A heat pump system includes a heat pump cycle, a heating unit, a low-temperature side heat medium circuit, and a control unit. The heat pump cycle includes a compressor, a condenser, and an evaporator. The heating unit heats ventilation air with heat released form refrigerant in the condenser. The low-temperature side heat medium circuit circulates a low-temperature side heat medium such that the refrigerant in the evaporator absorbs heat of the low-temperature side heat medium, and includes a heat source device and a heat amount adjustment unit. The control unit causes an amount of heat transfer in the heating unit for heating the ventilation air to approach a predetermined target value via adjustment in temperature of the low-temperature side heat medium by controlling a rotation speed of the compressor and an operation of at least one of the heat source device and the heat amount adjustment unit.