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  3. De-icing and defrosting with ultrasonics De-icing and defrosting with ultrasonics

De-icing and defrosting with ultrasonics

Investigation of an innovative ultrasonic technology for de-icing and defrosting surfaces, in particular for applications such as evaporator defrosting in heat pumps or battery management in automotive systems.

Brief information

School:

Engineering and Architecture

Status:

Completed

Period:

01.09.2023 - 31.12.2024

Overview

This study focuses on the efficient removal of layers of ice (frost and ice) using ultrasonics and small deflections. One or more piezo elements are used as actuators. This technology makes it possible to break up layers of ice and cause ice crystals to vibrate in resonance, causing them to fall from surfaces.

The aim of the project is to significantly reduce the energy required to remove layers of ice from surfaces. At present, thermal de-icing requires kilowatts of energy, whereas the innovative solution being investigated requires around 10 Wh per square metre of cross-sectional area. This enables more efficient and longer-lasting operation of the systems.

The use of this new technology is expected to result in significant energy savings, which will both reduce operating costs and minimise environmental impact, as less energy is required for the defrosting process. A patent has already been submitted to secure the technological lead and protect the developments.

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Facts

Type of project

Forschung

Internal organisations involved
  • CC Mechanical Systems
External project funder
  • Stiftung zur Förderung der Hochschule Luzern - Technik & Architektur
Funding
  • Private / Stiftungen
  • Forschungsfinanzierung allgemein
UN Sustainable Development Goals
Among other things, this project contributes to the attainment of the following UN Sustainable Development Goals (SDGs):
  • SDG 9: Industry, Innovation and Infrastructure
    Build resilient infrastructure, promote inclusive and sustainable industrialization and foster innovation
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Persons involved: internal

Project manager
  • Joshua Lanter
Project Co-Head
  • Moritz Krummenacher
Member of project team
  • Robert Eberli
  • Ruedi Pflugshaupt

Brief information

School:

Engineering and Architecture

Status:

Completed

Period:

09/01/2023 - 12/31/2024

Project Head

Prof. Joshua Lanter

Lecturer

+41 41 349 32 46

Show email

Project Co-Head

Moritz Krummenacher

Research Assistant

+41 41 349 39 65

Show email

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FH Zentralschweiz

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Lucerne University of Applied Sciences and Arts


Werftestrasse 4
6002 Luzern

+41 41 228 42 42

info@hslu.ch

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