Thermal applications in vehicles using Hydralloy C5 in single and coupled metal hydride systems
Author:
Publisher
Elsevier BV
Subject
Management, Monitoring, Policy and Law,Mechanical Engineering,General Energy,Building and Construction
Reference21 articles.
1. Evaluation of kinetics by utilizing the normalized pressure dependence method for the alloy Ti0.95 Zr0.05 Mn1.48 V0.43 Fe0.08 Al0.01;Skripnyuk;J Alloy Compd,1999
2. Effects of oil warm up acceleration on the fuel consumption of reciprocating internal combustion engines;Cipollone;Energy Procedia,2015
3. The problem of cold starts: A closer look at mobile source emissions levels;Reiter;Transport Res Part D: Trans Environ,2016
4. Andrews G, Ounzain A, Li H, Bell M, Tate J, Ropkins K. The use of a water/lube oil heat exchanger and enhanced cooling water heating to increase water and lube oil heating rates in passenger cars for reduced fuel consumption and CO2 emissions during cold start. SAE Technical Paper. 2007; 2007-01-2067.
5. Internal combustion engine cold-start efficiency: A review of the problem, causes and potential solutions;Roberts;Energ Convers Manage,2014
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