AESA방식 MFR 송수신 모듈간 온도 균일화를 위한 수랭식 냉각판 유로 채널 디자인 설계에 관한 연구
A Study on the Design of Liquid Cooled Cold Plate Flow Channel for Inter-Module Temperature Uniformity in Active Electronically Scanned Array Type Multi-function Radar Transmit/Receive Modules
Active electronically scanned array (AESA) multi-function radars (MFRs) comprise numerous transmit/receive modules (TRMs) whose maximum temperature and temperature uniformity must be tightly controlled. This study proposes a new liquid-cooling-plate flow-channel design for an X-band AESA MFR: a two-layer straight channel incorporating multiple fins irregularly spaced along the flow channel. The proposed design (Type-4) is compared with three baseline channel designs. At the same coolant flow rate, Type-4 reduces the TRM maximum temperature by 28.2 K and the maximum inter-module temperature difference by 19.7 K relative to Type-1. However, the pressure drop increases by 726% because of the added internal surfaces and fins which are flow obstructions. A comprehensive thermo-hydraulic comparison, including pumping power criteria, is conducted over multiple flow-rate conditions. Overall performance was highest for Type-4, followed by Type-2, Type-3, and Type-1. When designs achieve similar maximum temperature and temperature difference with various coolant flowrate condition, Type-2 requires 83.6% less pumping power than Type-1, and Type-4 requires 33.8% less pumping power than Type-2.
목차
Abstract 1. 서론 2. 연구방법 및 절차 2.1 공정 분석 및 구성 2.2 제어로직 구조 설계 2.3 HILS 기반 검증 2.4 구성 최적화 3. 결과 및 논의 3.1 HILS 검증 결과 3.2 현장 적용 성과 3.3 설계 로직의 유효성 검토 4. 결론 및 향후 연구 후기 References